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JP7295079B2 - Physical quantity measuring device - Google Patents

Physical quantity measuring device Download PDF

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Publication number
JP7295079B2
JP7295079B2 JP2020176653A JP2020176653A JP7295079B2 JP 7295079 B2 JP7295079 B2 JP 7295079B2 JP 2020176653 A JP2020176653 A JP 2020176653A JP 2020176653 A JP2020176653 A JP 2020176653A JP 7295079 B2 JP7295079 B2 JP 7295079B2
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Prior art keywords
cap member
engaging
insertion hole
engaging portion
shaft
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JP2021156870A (en
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信亮 川瀬
悠里 簀河原
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Nagano Keiki Co Ltd
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Nagano Keiki Co Ltd
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Priority to KR1020210035658A priority Critical patent/KR20210120857A/en
Priority to US17/208,122 priority patent/US11513021B2/en
Priority to EP21164498.4A priority patent/EP3885730B1/en
Priority to CN202110317677.8A priority patent/CN113447195A/en
Priority to TW110111027A priority patent/TW202204864A/en
Publication of JP2021156870A publication Critical patent/JP2021156870A/en
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    • GPHYSICS
    • G01MEASURING; TESTING
    • G01LMEASURING FORCE, STRESS, TORQUE, WORK, MECHANICAL POWER, MECHANICAL EFFICIENCY, OR FLUID PRESSURE
    • G01L19/00Details of, or accessories for, apparatus for measuring steady or quasi-steady pressure of a fluent medium insofar as such details or accessories are not special to particular types of pressure gauges
    • G01L19/14Housings
    • G01L19/148Details about the circuit board integration, e.g. integrated with the diaphragm surface or encapsulation
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01LMEASURING FORCE, STRESS, TORQUE, WORK, MECHANICAL POWER, MECHANICAL EFFICIENCY, OR FLUID PRESSURE
    • G01L19/00Details of, or accessories for, apparatus for measuring steady or quasi-steady pressure of a fluent medium insofar as such details or accessories are not special to particular types of pressure gauges
    • G01L19/0061Electrical connection means
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01LMEASURING FORCE, STRESS, TORQUE, WORK, MECHANICAL POWER, MECHANICAL EFFICIENCY, OR FLUID PRESSURE
    • G01L19/00Details of, or accessories for, apparatus for measuring steady or quasi-steady pressure of a fluent medium insofar as such details or accessories are not special to particular types of pressure gauges
    • G01L19/14Housings
    • G01L19/147Details about the mounting of the sensor to support or covering means
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01LMEASURING FORCE, STRESS, TORQUE, WORK, MECHANICAL POWER, MECHANICAL EFFICIENCY, OR FLUID PRESSURE
    • G01L7/00Measuring the steady or quasi-steady pressure of a fluid or a fluent solid material by mechanical or fluid pressure-sensitive elements
    • G01L7/02Measuring the steady or quasi-steady pressure of a fluid or a fluent solid material by mechanical or fluid pressure-sensitive elements in the form of elastically-deformable gauges
    • G01L7/08Measuring the steady or quasi-steady pressure of a fluid or a fluent solid material by mechanical or fluid pressure-sensitive elements in the form of elastically-deformable gauges of the flexible-diaphragm type

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Chemical & Material Sciences (AREA)
  • Analytical Chemistry (AREA)
  • Measuring Fluid Pressure (AREA)

Description

本発明は、物理量測定装置に関する。 The present invention relates to a physical quantity measuring device.

回路基板に設けられた電子回路部を調整する電子調整部が内蔵された物理量測定装置が知られている(例えば、特許文献1など)。
特許文献1では、筒状のケースの開口端に取り付けられた蓋部材に、電子調整部を調整する際に使用される操作孔を設けることで、ケースから蓋部材を取り外さなくても、電子調整部の操作を可能にしている。
2. Description of the Related Art A physical quantity measuring device having a built-in electronic adjustment section for adjusting an electronic circuit section provided on a circuit board is known (for example, Japanese Unexamined Patent Application Publication No. 2002-100000).
In Japanese Patent Laid-Open No. 2004-100003, a lid member attached to the open end of a cylindrical case is provided with an operation hole used for adjusting an electronic adjustment unit, so that electronic adjustment can be performed without removing the lid member from the case. It allows the operation of parts.

また、特許文献1では、操作孔を通して水などがケース内に浸入してしまうことを防ぐために、操作孔を閉塞するキャップ部材が着脱可能に取りけられている。そして、このようなキャップ部材を紛失してしまうことを防止するために、キャップ部材には紛失防止部材の一端が接続されている。 Further, in Patent Document 1, in order to prevent water or the like from entering the case through the operation hole, a cap member that closes the operation hole is detachably attached. In order to prevent the cap member from being lost, one end of a loss prevention member is connected to the cap member.

特開2015-184259号公報JP 2015-184259 A

特許文献1では、紛失防止部材の一端をキャップ部材に接続させ、他端を蓋部材に係合させてから、蓋部材をケースに取り付ける必要がある。そうすると、ケースに蓋部材を取り付けた状態で、紛失防止部材の一端が接続されたキャップ部材を取り付けることができない。そのため、ケースを組み立てた後に紛失防止部材が損傷した場合に、ケースを分解しないと紛失防止部材を交換できないので、補修作業が煩雑になるといった問題があった。 In Patent Document 1, it is necessary to connect one end of the loss prevention member to the cap member and engage the other end to the lid member before attaching the lid member to the case. In this case, the cap member to which one end of the loss prevention member is connected cannot be attached while the lid member is attached to the case. Therefore, if the loss prevention member is damaged after the case is assembled, the loss prevention member cannot be replaced unless the case is disassembled, which complicates the repair work.

本発明は、補修作業を容易にすることができる物理量測定装置を提供することにある。 An object of the present invention is to provide a physical quantity measuring device capable of facilitating repair work.

本発明の物理量測定装置は、周面部に貫通孔が設けられた筒状ケースと、前記筒状ケースに収容され、物理量を検出するセンサモジュールと、前記センサモジュールが取り付けられ、前記筒状ケースの一方の開口を覆うように配置される継手と、前記筒状ケースの他方の開口を覆うように配置される蓋部材と、前記センサモジュールで検出された信号を受信する電子回路部および前記電子回路部を調整する電子調整部を有し、前記筒状ケースに収容される回路基板と、前記貫通孔を覆うように取り付けられるキャップ部材と、前記貫通孔と前記キャップ部材との間を封止する封止部材と、を備え、前記電子調整部は、前記貫通孔に対応する位置に配置される被操作部を有し、前記蓋部材は、前記回路基板を支持する回路基板支持部と、前記キャップ部材が着脱可能に取り付けられる被取付部とを有し、前記キャップ部材は、前記筒状ケースの外側に配置され前記貫通孔を覆うキャップ部材本体部と、前記キャップ部材本体部の底面から延設されたキャップ部材軸部と、前記キャップ部材軸部の先端から前記キャップ部材軸部の径方向に延設されたキャップ部材係合部と、を有し、前記封止部材は、環状に設けられ前記キャップ部材軸部を囲うように配置される封止部材本体部と、前記封止部材本体部から延設された線状部材と、前記線状部材の先端に設けられた封止部材係合部と、を有し、前記被取付部には、前記キャップ部材軸部が挿通可能に構成された軸部挿通孔と、前記キャップ部材係合部が挿通可能に構成され前記軸部挿通孔と連続する係合部挿通孔と、前記線状部材が配置され前記軸部挿通孔と連続する溝部とが設けられ、前記キャップ部材は、第1姿勢と第2姿勢とに回動可能に前記被取付部に軸支され、前記第1姿勢において前記キャップ部材係合部が前記係合部挿通孔と挿通可能とされ、前記第2姿勢において前記キャップ部材係合部が前記被取付部と係合し、前記第1姿勢において、前記線状部材は、前記キャップ部材係合部よりも、前記キャップ部材軸部の方向から見て前記第1姿勢から前記第2姿勢へと回転する回転方向側に配置されていることを特徴とする。 A physical quantity measuring device of the present invention includes a cylindrical case having a through hole provided in a peripheral surface portion, a sensor module that is housed in the cylindrical case and detects a physical quantity, and the sensor module is attached to the cylindrical case. A joint arranged to cover one opening, a cover member arranged to cover the other opening of the cylindrical case, an electronic circuit section for receiving a signal detected by the sensor module, and the electronic circuit. a circuit board accommodated in the cylindrical case; a cap member attached so as to cover the through hole; and sealing between the through hole and the cap member. a sealing member, wherein the electronic adjusting section has an operated section arranged at a position corresponding to the through hole; the lid member includes a circuit board supporting section that supports the circuit board; A cap member has an attached portion to which a cap member is detachably attached, and the cap member includes a cap member main body portion arranged outside the cylindrical case and covering the through hole, and a bottom surface of the cap member main body portion. and a cap member engaging portion extending from the tip of the cap member shaft in a radial direction of the cap member shaft, wherein the sealing member is provided in an annular shape. a sealing member main body disposed so as to surround the cap member shaft; a linear member extending from the sealing member main body; and a sealing member engagement provided at a tip of the linear member. The attached portion includes a shaft portion insertion hole through which the cap member shaft portion can be inserted, and the shaft portion insertion hole through which the cap member engaging portion can be inserted. and a groove portion in which the linear member is arranged and which is continuous with the shaft portion insertion hole. The cap member engaging portion can be inserted into the engaging portion insertion hole in the first posture, and the cap member engaging portion is engaged with the attached portion in the second posture. In the first posture, the linear member is located on the side of the cap member engaging portion in the rotational direction of rotation from the first posture to the second posture when viewed from the direction of the cap member shaft portion. It is characterized in that it is arranged in

本発明では、キャップ部材は、筒状ケースの外側に配置され貫通孔を覆うキャップ部材本体部と、キャップ部材本体部の底面から延設されたキャップ部材軸部と、キャップ部材軸部の先端からキャップ部材軸部の径方向に延設されたキャップ部材係合部と、を有する。また、封止部材は、環状に設けられキャップ部材軸部を囲うように配置される封止部材本体部と、封止部材本体部から延設された線状部材と、線状部材の先端に設けられた封止部材係合部と、を有する。そして、キャップ部材が着脱可能に取り付けられる被取付部には、キャップ部材軸部が挿通可能に構成された軸部挿通孔と、キャップ部材係合部が挿通可能に構成され前記軸部挿通孔と連続する係合部挿通孔と、線状部材が配置される溝部とが設けられる。これにより、キャップ部材は、第1姿勢においてキャップ部材係合部が係合部挿通孔と挿通可能とされ、第2姿勢においてキャップ部材係合部が被取付部と係合するので、被取付部に着脱可能に取り付けられる。
ここで、第1姿勢において、線状部材は、キャップ部材係合部よりも、キャップ部材軸部の軸方向から見て第1姿勢から第2姿勢へと回転する回転方向側に配置されている。そのため、キャップ部材を第1姿勢にした状態で、キャップ部材軸部と線状部材とを軸部挿通孔に挿通させ、その後、キャップ部材を第1姿勢から第2姿勢へと回転させると、線状部材はキャップ部材係合部に付勢されて、キャップ部材と同じ方向に回転する。そうすると、線状部材は回転方向に移動しながら被取付部の溝部に導かれるので、線状部材を溝部に配置することができる。そのため、筒状ケースを組み立ててから、キャップ部材を取り付ける場合にも、キャップ部材の紛失を防止する線状部材を、筒状ケース内に配置される被取付部に取り付けることができる。したがって、仮に、筒状ケースを組み立てた後に、線状部材が損傷してしまったとしても、線状部材を有する封止部材を容易に交換することができる。
In the present invention, the cap member comprises: a cap member main body portion arranged outside the cylindrical case and covering the through hole; a cap member shaft portion extending from the bottom surface of the cap member main body portion; a cap member engaging portion extending radially of the cap member shaft. The sealing member includes a sealing member main body provided in an annular shape and arranged so as to surround the cap member shaft, a linear member extending from the sealing member main body, and a tip of the linear member. and a sealing member engagement portion provided. The attached portion to which the cap member is detachably attached includes a shaft portion insertion hole through which the cap member shaft portion can be inserted, and the shaft portion insertion hole through which the cap member engaging portion can be inserted. A continuous engaging portion insertion hole and a groove portion in which the linear member is arranged are provided. As a result, the cap member engaging portion can be inserted into the engaging portion insertion hole in the first posture, and the cap member engaging portion engages with the attached portion in the second posture. can be detachably attached to the
Here, in the first posture, the linear member is arranged on the side of the cap member engaging portion in the rotational direction of rotation from the first posture to the second posture when viewed from the axial direction of the cap member shaft portion. . Therefore, when the cap member shaft portion and the linear member are inserted into the shaft portion insertion hole with the cap member in the first posture, and then the cap member is rotated from the first posture to the second posture, The shaped member is urged by the cap member engaging portion to rotate in the same direction as the cap member. Then, since the linear member is guided to the groove of the attached portion while moving in the rotational direction, the linear member can be arranged in the groove. Therefore, even when the cap member is attached after the tubular case is assembled, the linear member that prevents the loss of the cap member can be attached to the attached portion arranged in the tubular case. Therefore, even if the linear member is damaged after the tubular case is assembled, the sealing member having the linear member can be easily replaced.

本発明の物理量測定装置は、周面部に貫通孔が設けられた筒状ケースと、前記筒状ケースに収容され、物理量を検出するセンサモジュールと、前記センサモジュールが取り付けられ、前記筒状ケースの一方の開口を覆うように配置される継手と、前記筒状ケースの他方の開口を覆うように配置される蓋部材と、前記センサモジュールで検出された信号を受信する電子回路部および前記電子回路部を調整する電子調整部を有し、前記筒状ケースに収容される回路基板と、前記貫通孔を覆うように取り付けられるキャップ部材と、前記貫通孔と前記キャップ部材との間を封止する封止部材と、を備え、前記電子調整部は、前記貫通孔に対応する位置に配置される被操作部を有し、前記蓋部材は、前記回路基板を支持する回路基板支持部と、前記キャップ部材が着脱可能に取り付けられる被取付部とを有し、前記キャップ部材は、前記筒状ケースの外側に配置され前記貫通孔を覆うキャップ部材本体部と、前記キャップ部材本体部の底面から延設されたキャップ部材軸部と、前記キャップ部材軸部の先端から前記キャップ部材軸部の径方向に延設されたキャップ部材係合部と、を有し、前記封止部材は、環状に設けられ前記キャップ部材軸部を囲うように配置される封止部材本体部と、前記封止部材本体部から延設された線状部材と、前記線状部材の先端に設けられ前記線状部材と交差する方向に沿って配置された封止部材係合軸部と、を有し、前記被取付部には、前記キャップ部材軸部が挿通可能に構成された軸部挿通孔と、前記キャップ部材係合部が挿通可能に構成され前記軸部挿通孔と連続する係合部挿通孔と、前記線状部材が配置され前記封止部材係合軸部が挿通可能な係合軸部挿通孔とが設けられ、前記キャップ部材は、第1姿勢と第2姿勢とに回動可能に前記被取付部に軸支され、前記第1姿勢において前記キャップ部材係合部が前記係合部挿通孔と挿通可能とされ、前記第2姿勢において前記キャップ部材係合部が前記被取付部と係合することを特徴とする。 A physical quantity measuring device of the present invention includes a cylindrical case having a through hole provided in a peripheral surface portion, a sensor module that is housed in the cylindrical case and detects a physical quantity, and the sensor module is attached to the cylindrical case. A joint arranged to cover one opening, a cover member arranged to cover the other opening of the cylindrical case, an electronic circuit section for receiving a signal detected by the sensor module, and the electronic circuit. a circuit board accommodated in the cylindrical case; a cap member attached so as to cover the through hole; and sealing between the through hole and the cap member. a sealing member, wherein the electronic adjusting section has an operated section arranged at a position corresponding to the through hole; the lid member includes a circuit board supporting section that supports the circuit board; A cap member has an attached portion to which a cap member is detachably attached, and the cap member includes a cap member main body portion arranged outside the cylindrical case and covering the through hole, and a bottom surface of the cap member main body portion. and a cap member engaging portion extending from the tip of the cap member shaft in a radial direction of the cap member shaft, wherein the sealing member is provided in an annular shape. a sealing member main body disposed so as to surround the cap member shaft; a linear member extending from the sealing member main body; and a linear member provided at a tip of the linear member. a sealing member engaging shaft portion arranged along an intersecting direction, wherein the mounting portion includes a shaft portion insertion hole through which the cap member shaft portion can be inserted; and the cap member. an engaging portion insertion hole configured so that an engaging portion can be inserted thereinto and which is continuous with the shaft portion insertion hole; and an engaging shaft portion insertion hole in which the linear member is arranged and through which the sealing member engaging shaft portion can be inserted; is provided, and the cap member is pivotally supported by the mounting portion so as to be rotatable between a first posture and a second posture, and in the first posture, the cap member engaging portion engages the engaging portion insertion hole. It is characterized in that the cap member engaging portion engages with the attached portion in the second posture.

本発明では、キャップ部材は、筒状ケースの外側に配置され貫通孔を覆うキャップ部材本体部と、キャップ部材本体部の底面から延設されたキャップ部材軸部と、キャップ部材軸部の先端からキャップ部材軸部の径方向に延設されたキャップ部材係合部と、を有する。また、封止部材は、環状に設けられキャップ部材軸部を囲うように配置される封止部材本体部と、封止部材本体部から延設された線状部材と、線状部材の先端に設けられ線状部材と交差する方向に沿って配置された封止部材係合軸部と、を有する。そして、キャップ部材が着脱可能に取り付けられる被取付部には、キャップ部材軸部が挿通可能に構成された軸部挿通孔と、キャップ部材係合部が挿通可能に構成され軸部挿通孔と連続する係合部挿通孔と、線状部材が配置され封止部材係合軸部が挿通可能な係合軸部挿通孔とが設けられる。これにより、キャップ部材は、第1姿勢においてキャップ部材係合部が係合部挿通孔と挿通可能とされ、第2姿勢においてキャップ部材係合部が被取付部と係合するので、被取付部に着脱可能に取り付けられる。 In the present invention, the cap member comprises: a cap member main body portion arranged outside the cylindrical case and covering the through hole; a cap member shaft portion extending from the bottom surface of the cap member main body portion; a cap member engaging portion extending radially of the cap member shaft. The sealing member includes a sealing member main body provided in an annular shape and arranged so as to surround the cap member shaft, a linear member extending from the sealing member main body, and a tip of the linear member. and a sealing member engaging shaft portion arranged along a direction intersecting with the linear member provided. The attached portion to which the cap member is detachably attached includes a shaft portion insertion hole through which the cap member shaft portion can be inserted, and a shaft portion insertion hole through which the cap member engaging portion can be inserted. and an engagement shaft insertion hole through which the linear member is arranged and the sealing member engagement shaft can be inserted. As a result, the cap member engaging portion can be inserted into the engaging portion insertion hole in the first posture, and the cap member engaging portion engages with the attached portion in the second posture. can be detachably attached to the

ここで、被取付部には、封止部材係合軸部が挿通可能な係合軸部挿通孔が設けられている。そのため、先ず、封止部材係合軸部を係合軸部挿通孔に挿通させ、その後、線状部材を係合軸部挿通孔に配置するようにすれば、封止部材を被取付部に取り付けることができる。この際、線状部材と封止部材係合軸部とは交差しているので、線状部材を係合軸部挿通孔に配置した後は、封止部材係合軸部と被取付部とは係合する。すなわち、封止部材を取り外す方向に線状部材を引っ張っても、被取付部から封止部材係合軸部は簡単に抜けない。そのため、キャップ部材を取り付けた状態で、封止部材を上記の手順で被取付部に取り付ければ、キャップ部材の紛失を防止することができる。
すなわち、筒状ケースを組み立ててから、キャップ部材を取り付ける場合にも、キャップ部材の紛失を防止する線状部材を、筒状ケース内に配置される被取付部に取り付けることができる。したがって、仮に、筒状ケースを組み立てた後に、線状部材が損傷してしまったとしても、線状部材を有する封止部材を容易に交換することができる。
Here, the attached portion is provided with an engaging shaft portion insertion hole through which the sealing member engaging shaft portion can be inserted. Therefore, by first inserting the sealing member engaging shaft portion into the engaging shaft portion insertion hole and then arranging the linear member in the engaging shaft portion insertion hole, the sealing member can be attached to the mounting portion. can be installed. At this time, since the linear member and the sealing member engaging shaft portion intersect, after the linear member is arranged in the engaging shaft portion insertion hole, the sealing member engaging shaft portion and the mounted portion are separated from each other. engages. That is, even if the linear member is pulled in the direction of removing the sealing member, the sealing member engaging shaft portion cannot be easily removed from the attached portion. Therefore, if the sealing member is attached to the attached portion according to the procedure described above with the cap member attached, loss of the cap member can be prevented.
That is, even when the cap member is attached after the cylindrical case is assembled, the linear member that prevents the loss of the cap member can be attached to the attached portion arranged in the cylindrical case. Therefore, even if the linear member is damaged after the tubular case is assembled, the sealing member having the linear member can be easily replaced.

本発明の物理量測定装置において、前記封止部材係合軸部の一方の端部には、先端に向かうにしたがって径が小さくなる突出部が形成され、前記封止部材係合軸部の他方の端部には、軸方向に沿って凹部が形成されていることが望ましい。
この構成では、封止部材係合軸部の凹部にドライバー等の工具を挿入させ、その状態で、封止部材係合軸部の突出部を係合軸部挿通孔に挿通させることができる。そのため、封止部材係合軸部を係合軸部挿通孔に挿通させる作業を容易にすることができる。
In the physical quantity measuring device of the present invention, a projecting portion whose diameter decreases toward the tip is formed at one end of the sealing member engaging shaft portion, and the other end of the sealing member engaging shaft portion It is desirable that a concave portion be formed along the axial direction in the end portion.
With this configuration, a tool such as a screwdriver can be inserted into the concave portion of the sealing member engaging shaft portion, and in this state, the protruding portion of the sealing member engaging shaft portion can be inserted into the engaging shaft portion insertion hole. Therefore, the operation of inserting the sealing member engaging shaft portion into the engaging shaft portion insertion hole can be facilitated.

本発明の物理量測定装置において、前記被取付部には、前記貫通孔に向かって突出し、前記貫通孔と係合する係合凸部が設けられることが好ましい。
この構成では、被取付部の係合凸部を貫通孔に係合させることができるので、貫通孔に対して被取付部を容易に位置決めすることができる。そのため、物理量測定装置の組立を容易にすることができる。
In the physical quantity measuring device of the present invention, it is preferable that the attached portion is provided with an engaging convex portion that protrudes toward the through hole and engages with the through hole.
With this configuration, the engagement protrusion of the attached portion can be engaged with the through hole, so that the attached portion can be easily positioned with respect to the through hole. Therefore, it is possible to facilitate the assembly of the physical quantity measuring device.

本発明の物理量測定装置において、前記キャップ部材係合部は、第1係合部と、前記キャップ部材軸部を挟んで前記第1係合部とは反対側に設けられ前記第1係合部と大きさが異なる第2係合部とを有し、前記係合部挿通孔は、前記第1係合部に対応する第1係合部挿通孔と、前記軸部挿通孔を挟んで前記第1係合部挿通孔とは反対側に設けられ前記第2係合部に対応する第2係合部挿通孔と、を有することが好ましい。
この構成では、キャップ部材係合部は、第1係合部および第2係合部を有するので、第2姿勢において被取付部に確実に係合させることができる。そのため、第2姿勢において、キャップ部材が被取付部から脱落してしまうことを抑制することができる。
In the physical quantity measuring device of the present invention, the cap member engaging portion is provided on a side opposite to the first engaging portion with respect to the first engaging portion and the cap member shaft portion. and a second engaging portion having a different size, and the engaging portion insertion hole includes a first engaging portion insertion hole corresponding to the first engaging portion and a shaft portion insertion hole sandwiching the It is preferable to have a second engaging portion insertion hole provided on the opposite side of the first engaging portion insertion hole and corresponding to the second engaging portion.
In this configuration, since the cap member engaging portion has the first engaging portion and the second engaging portion, it can be reliably engaged with the attached portion in the second posture. Therefore, in the second posture, it is possible to prevent the cap member from falling off from the attached portion.

本発明の物理量測定装置において、前記キャップ部材本体部は五角形状に形成されることが好ましい。
この構成では、キャップ部材本体部は五角形状なので、ユーザーは、キャップ部材が第1姿勢であるか、または、第2姿勢であるかを容易に認識することができる。
In the physical quantity measuring device of the present invention, it is preferable that the cap member main body is formed in a pentagonal shape.
In this configuration, since the cap member main body has a pentagonal shape, the user can easily recognize whether the cap member is in the first posture or the second posture.

本発明の第1実施形態に係る物理量測定装置の概略を示す斜視図。BRIEF DESCRIPTION OF THE DRAWINGS The perspective view which shows the outline of the physical-quantity measuring apparatus which concerns on 1st Embodiment of this invention. 前記実施形態の物理量測定装置の概略を示す分解斜視図。FIG. 2 is an exploded perspective view showing an outline of the physical quantity measuring device of the embodiment; 蓋部材の概略を示す正面図。The front view which shows the outline of a cover member. キャップ部材および封止部材の概略を示す斜視図。The perspective view which shows the outline of a cap member and a sealing member. キャップ部材および封止部材の取付工程を示す図。The figure which shows the attachment process of a cap member and a sealing member. キャップ部材および封止部材の取付工程を示す図。The figure which shows the attachment process of a cap member and a sealing member. キャップ部材および封止部材の取付工程を示す図。The figure which shows the attachment process of a cap member and a sealing member. 封止部材の取付状態を示す図。The figure which shows the attachment state of a sealing member. 第2実施形態の蓋部材の概略を示す正面図。The front view which shows the outline of the cover member of 2nd Embodiment. 第2実施形態の封止部材の概略を示す斜視図。The perspective view which shows the outline of the sealing member of 2nd Embodiment. キャップ部材および封止部材の取付工程を示す図。The figure which shows the attachment process of a cap member and a sealing member. キャップ部材および封止部材の取付工程を示す図。The figure which shows the attachment process of a cap member and a sealing member. キャップ部材および封止部材の取付工程を示す図。The figure which shows the attachment process of a cap member and a sealing member. キャップ部材および封止部材の取付工程を示す図。The figure which shows the attachment process of a cap member and a sealing member. 封止部材の取付状態を示す図。The figure which shows the attachment state of a sealing member.

[第1実施形態]
本発明の第1実施形態を図面に基づいて説明する。
図1は、本実施形態の物理量測定装置1の概略を示す斜視図であり、図2は、物理量測定装置1の概略を示す分解斜視図である。なお、本実施形態の物理量測定装置1は、被測定流体の圧力を測定可能に構成されている。
図1、図2に示すように、物理量測定装置1は、筒状ケース2と、継手3と、センサモジュール4と、蓋部材5と、回路基板6と、信号伝達部材7と、保持部材8と、キャップ部材9と、封止部材10とを備えている。
[First embodiment]
A first embodiment of the present invention will be described with reference to the drawings.
FIG. 1 is a perspective view showing an outline of a physical quantity measuring device 1 of this embodiment, and FIG. 2 is an exploded perspective view showing an outline of the physical quantity measuring device 1. As shown in FIG. The physical quantity measuring device 1 of this embodiment is configured to be able to measure the pressure of the fluid to be measured.
As shown in FIGS. 1 and 2, the physical quantity measuring device 1 includes a tubular case 2, a joint 3, a sensor module 4, a lid member 5, a circuit board 6, a signal transmission member 7, and a holding member 8. , a cap member 9 and a sealing member 10 .

[筒状ケース2]
筒状ケース2は、円筒状に形成された金属製の部材であり、中心軸Rに沿った方向の一方に第1開口21が形成され、他方に第2開口22が形成されている。
また、筒状ケース2の周面には、筒状ケース2の一部が窪んで形成された凹部23が設けられている。そして、筒状ケース2の凹部23の底面に貫通孔24が形成されている。すなわち、貫通孔24は、筒状ケース2の周面部に設けられている。
さらに、第2開口22側には、蓋部材5を嵌合するための嵌合リング25が設けられている。そして、嵌合リング25の内側には、段差部26が形成されている。
[Cylindrical case 2]
The cylindrical case 2 is a metal member formed in a cylindrical shape, and has a first opening 21 formed in one direction along the central axis R and a second opening 22 formed in the other direction.
A recess 23 formed by recessing a part of the cylindrical case 2 is provided on the peripheral surface of the cylindrical case 2 . A through hole 24 is formed in the bottom surface of the concave portion 23 of the cylindrical case 2 . That is, the through hole 24 is provided in the peripheral surface portion of the tubular case 2 .
Further, a fitting ring 25 for fitting the lid member 5 is provided on the second opening 22 side. A step portion 26 is formed inside the fitting ring 25 .

[継手3]
継手3は、金属製の部材であり、筒状ケース2の第1開口21を覆うように配置される。本実施形態では、継手3は、筒状ケース2の第1開口21側の端部に溶接されて接合されている。なお、継手3と筒状ケース2とは溶接により接合されることに限定されず、例えば、継手3は筒状ケース2に螺合されて取り付けられていてもよい。
継手3には、被測定流体を導入する導入孔(図示略)が形成されている。また、継手3の一端部は、中心から径方向に延びて形成されスパナ等の工具と係合する工具係合部31とされ、他端部は、図示略の被取付箇所に螺合される雄ねじ部32とされている。なお、継手3の他端部は雄ねじ部32とされることに限られず、例えば、雌ねじ部とされていてもよい。さらに、継手3の他端部は、被取付箇所に溶接により取り付けられるように構成されていてもよい。
[Joint 3]
The joint 3 is a member made of metal and arranged so as to cover the first opening 21 of the cylindrical case 2 . In this embodiment, the joint 3 is welded and joined to the end of the tubular case 2 on the first opening 21 side. Note that the joint 3 and the cylindrical case 2 are not limited to being joined by welding, and for example, the joint 3 may be attached to the cylindrical case 2 by being screwed together.
The joint 3 is formed with an introduction hole (not shown) for introducing the fluid to be measured. One end of the joint 3 is formed as a tool engaging portion 31 that extends radially from the center and engages with a tool such as a wrench, and the other end is screwed to a mounting portion (not shown). A male screw portion 32 is provided. The other end of the joint 3 is not limited to being the male threaded portion 32, and may be, for example, a female threaded portion. Furthermore, the other end portion of the joint 3 may be configured to be attached to the attachment location by welding.

[センサモジュール4]
センサモジュール4は、継手3の一端部側に取り付けられる筒体部41と、当該筒体部41の一端側に一体に形成されるダイアフラム42とを有する。
ダイアフラム42には図示しない歪みゲージが形成されており、この歪みゲージによって、導入孔から導入された被測定流体の圧力を検出するようにされている。そして、センサモジュール4は、検出した圧力に応じて、検出信号を後述する電子回路部62に出力するように構成されている。
なお、センサモジュール4はダイアフラム42を有するものに限定されるわけではなく、例えば、所謂MEMS(Micro Electro Mechanical System)センサであってもよく、被測定流体の圧力を検出可能に構成されていればよい。
[Sensor module 4]
The sensor module 4 has a cylindrical body portion 41 attached to one end side of the joint 3 and a diaphragm 42 integrally formed on the one end side of the cylindrical body portion 41 .
A strain gauge (not shown) is formed on the diaphragm 42, and this strain gauge detects the pressure of the fluid to be measured introduced from the introduction hole. The sensor module 4 is configured to output a detection signal to an electronic circuit section 62, which will be described later, according to the detected pressure.
The sensor module 4 is not limited to one having the diaphragm 42. For example, a so-called MEMS (Micro Electro Mechanical System) sensor may be used as long as it is configured to detect the pressure of the fluid to be measured. good.

[蓋部材5]
図3は、蓋部材5の概略を示す正面図である。
図1~図3に示すように、蓋部材5は、樹脂製の所謂コネクタタイプの部材であり、蓋本体51と、筒状部52と、回路基板支持部53と、被取付部54とを備える。
[Lid member 5]
FIG. 3 is a front view showing an outline of the lid member 5. FIG.
As shown in FIGS. 1 to 3, the lid member 5 is a so-called connector-type member made of resin, and includes a lid body 51, a cylindrical portion 52, a circuit board support portion 53, and a mounting portion 54. Prepare.

蓋本体51は円板状に形成されており、前述の嵌合リング25がかしめられることで、筒状ケース2に取り付けられている。また、蓋本体51の底面には、筒状部52と連通する図示略の連通孔が設けられている。
筒状部52は、内周面が信号伝達部材7を収容する取付孔521とされている。また、筒状部52の外周面は雄ねじ部とされている。
The lid main body 51 is formed in a disc shape, and is attached to the tubular case 2 by crimping the above-described fitting ring 25 . A communication hole (not shown) that communicates with the cylindrical portion 52 is provided in the bottom surface of the lid body 51 .
The cylindrical portion 52 has a mounting hole 521 that accommodates the signal transmission member 7 on the inner peripheral surface thereof. Further, the outer peripheral surface of the tubular portion 52 is formed as a male thread portion.

回路基板支持部53は、回路基板6を支持する部材であり、蓋本体51から突出して設けられている。本実施形態では、回路基板支持部53は、一対の第1支持部531および第2支持部532を有する。そして、回路基板支持部53は、第1支持部531と第2支持部532により、回路基板6を挟持することで、回路基板6を支持している。 The circuit board support portion 53 is a member that supports the circuit board 6 and is provided so as to protrude from the lid body 51 . In this embodiment, the circuit board support portion 53 has a pair of first support portion 531 and second support portion 532 . The circuit board supporting portion 53 supports the circuit board 6 by sandwiching the circuit board 6 between the first supporting portion 531 and the second supporting portion 532 .

被取付部54は、キャップ部材9が着脱可能に取り付けられる部材である。本実施形態では、被取付部54は、被取付部本体541と、連結部542と、係合凸部543とを有する。
被取付部本体541は、平板状に設けられており、連結部542により第1支持部531および第2支持部532に連結されて支持されている。そして、被取付部本体541には、軸部挿通孔541Aと、第1係合部挿通孔541Bと、第2係合部挿通孔541Cと、溝部541Dと、被係合部541E(図5参照)とが形成されている。
係合凸部543は、被取付部本体541から筒状ケース2の貫通孔24に向かって突出して設けられている。そして、本実施形態では、係合凸部543は、貫通孔24に挿入されて係合している。これにより、蓋部材5が筒状ケース2に対して位置決めされている。
The attached portion 54 is a member to which the cap member 9 is detachably attached. In this embodiment, the attached portion 54 has an attached portion main body 541 , a connecting portion 542 , and an engaging convex portion 543 .
The attached portion main body 541 is provided in a flat plate shape, and is connected to and supported by the first support portion 531 and the second support portion 532 by a connecting portion 542 . The attached portion main body 541 includes a shaft portion insertion hole 541A, a first engagement portion insertion hole 541B, a second engagement portion insertion hole 541C, a groove portion 541D, and an engaged portion 541E (see FIG. 5). ) are formed.
The engaging convex portion 543 is provided so as to protrude from the attached portion main body 541 toward the through hole 24 of the cylindrical case 2 . And in this embodiment, the engaging convex part 543 is inserted in the through-hole 24, and is engaged. Thereby, the lid member 5 is positioned with respect to the tubular case 2 .

軸部挿通孔541Aは、後述するキャップ部材9のキャップ部材軸部92が挿通可能とされている。
第1係合部挿通孔541Bは、軸部挿通孔541Aと連続して設けられている。そして、第1係合部挿通孔541Bは、後述するキャップ部材9の第1係合部931に対応した形状に形成されており、第1係合部931が挿通可能とされている。
第2係合部挿通孔541Cは、軸部挿通孔541Aを挟んで第1係合部挿通孔541Bとは反対側に、軸部挿通孔541Aと連続して設けられている。そして、第2係合部挿通孔541Cは、後述するキャップ部材9の第2係合部932に対応した形状に形成されており、第2係合部932が挿通可能とされている。なお、第1係合部挿通孔541Bおよび第2係合部挿通孔541Cは、軸部挿通孔541Aと連続する本開示の係合部挿通孔を構成する。
A cap member shaft portion 92 of the cap member 9, which will be described later, can be inserted through the shaft portion insertion hole 541A.
The first engaging portion insertion hole 541B is provided continuously with the shaft portion insertion hole 541A. The first engaging portion insertion hole 541B is formed in a shape corresponding to the first engaging portion 931 of the cap member 9, which will be described later, so that the first engaging portion 931 can be inserted therethrough.
The second engaging portion insertion hole 541C is provided continuously with the shaft portion insertion hole 541A on the opposite side of the shaft portion insertion hole 541A from the first engagement portion insertion hole 541B. The second engaging portion insertion hole 541C is formed in a shape corresponding to the second engaging portion 932 of the cap member 9, which will be described later, so that the second engaging portion 932 can be inserted therethrough. The first engaging portion insertion hole 541B and the second engaging portion insertion hole 541C constitute an engaging portion insertion hole of the present disclosure that is continuous with the shaft portion insertion hole 541A.

溝部541Dは、軸部挿通孔541Aに連続して設けられている。本実施形態では、溝部541Dは、軸部挿通孔541Aの第1係合部挿通孔541Bよりの位置と連通するように形成されている。そして、溝部541Dには、後述する封止部材10の線状部材102が配置される。
被係合部541E(図5参照)は、第1係合部931と係合可能に形成されている。被係合部541Eの詳細については、後述する。
なお、被取付部54に対するキャップ部材9および封止部材10の取付方法の詳細については、後述する。
The groove portion 541D is provided continuously with the shaft portion insertion hole 541A. In this embodiment, the groove portion 541D is formed so as to communicate with the position of the shaft portion insertion hole 541A from the first engaging portion insertion hole 541B. A linear member 102 of the sealing member 10, which will be described later, is arranged in the groove portion 541D.
The engaged portion 541E (see FIG. 5) is formed to be engageable with the first engaging portion 931. As shown in FIG. Details of the engaged portion 541E will be described later.
Details of how to attach the cap member 9 and the sealing member 10 to the attached portion 54 will be described later.

[回路基板6]
回路基板6は、基板本体61と、電子回路部62と、電子調整部63とを有する。
基板本体61は、筒状ケース2の中心軸Rに沿った方向が長手方向とされる平面矩形状の板部材であり、その正面には図示しない配線パターンが形成されている。本実施形態では、基板本体61は、互いに平行に配置された第1基板611と第2基板612とを備え、これらの第1基板611と第2基板612との間は連結体613で連結されている。そして、第1基板611および第2基板612は、前述した蓋部材5の回路基板支持部53に挟持されることにより、蓋部材5に支持されている。
また、本実施形態では、第2基板612に係止孔612Aが2箇所に形成されている。そして、当該係止孔612Aに後述する保持部材8の係止片部82が挿入されることにより、回路基板6は保持部材8によって保持されている。
なお、基板本体61は、上記構成に限定されるものではなく、例えば、基板本体61は1枚の基板から構成されていてもよく、あるいは、3枚以上の基板から構成されていてもよい。
[Circuit board 6]
The circuit board 6 has a board body 61 , an electronic circuit section 62 and an electronic adjustment section 63 .
The substrate main body 61 is a planar rectangular plate member whose longitudinal direction is along the central axis R of the cylindrical case 2, and a wiring pattern (not shown) is formed on the front surface thereof. In this embodiment, the substrate body 61 includes a first substrate 611 and a second substrate 612 that are arranged parallel to each other, and the first substrate 611 and the second substrate 612 are connected by a connector 613. ing. The first substrate 611 and the second substrate 612 are supported by the lid member 5 by being sandwiched between the circuit substrate support portions 53 of the lid member 5 described above.
Further, in this embodiment, the second substrate 612 is formed with two locking holes 612A. The circuit board 6 is held by the holding member 8 by inserting a locking piece portion 82 of the holding member 8, which will be described later, into the locking hole 612A.
The board body 61 is not limited to the above configuration. For example, the board body 61 may be composed of one board, or may be composed of three or more boards.

電子回路部62は、センサモジュール4からの検出信号を受信するものであり、第1基板611に設けられている。そして、センサモジュール4の歪みゲージと電子回路部62とは図示しない電線等で電気的に接続されている。 The electronic circuit section 62 receives a detection signal from the sensor module 4 and is provided on the first substrate 611 . The strain gauges of the sensor module 4 and the electronic circuit section 62 are electrically connected by wires or the like (not shown).

電子調整部63は、電子回路部62を調整するものであり、筒状ケース2の周面に対向するように第1基板611に設けられている。
本実施形態では、電子調整部63は、トリマとして機能する被操作部631を有する。そして、被操作部631は、筒状ケース2の貫通孔24に対応する位置に設けられている。これにより、キャップ部材9を取り外して貫通孔24を露出させれば、貫通孔24からドライバー等を挿入して被操作部631を操作することができる。
The electronic adjustment section 63 adjusts the electronic circuit section 62 and is provided on the first substrate 611 so as to face the peripheral surface of the tubular case 2 .
In this embodiment, the electronic adjustment section 63 has an operated section 631 that functions as a trimmer. The operated portion 631 is provided at a position corresponding to the through hole 24 of the tubular case 2 . Accordingly, when the cap member 9 is removed to expose the through hole 24 , the operated portion 631 can be operated by inserting a screwdriver or the like through the through hole 24 .

[信号伝達部材7]
信号伝達部材7は、円筒部材71と、円筒部材71に設けられた複数のターミナル端子72とを有する。ターミナル端子72は図示しない電線等によって回路基板6に電気的に接続されている。
[Signal transmission member 7]
The signal transmission member 7 has a cylindrical member 71 and a plurality of terminal terminals 72 provided on the cylindrical member 71 . The terminal terminals 72 are electrically connected to the circuit board 6 by wires or the like (not shown).

[保持部材8]
保持部材8は、回路基板6を保持するための金属製の部材である。本実施形態では、保持部材8は、平面部81と、係止片部82とを有する。そして、平面部81は、第1板部81Aと、第2板部81Bとを有する。
[Holding member 8]
The holding member 8 is a metal member for holding the circuit board 6 . In this embodiment, the holding member 8 has a flat portion 81 and a locking piece portion 82 . The plane portion 81 has a first plate portion 81A and a second plate portion 81B.

第1板部81Aは、筒状ケース2の段差部26と蓋部材5の蓋本体51との間に挟持されるものであり、その外形形状は嵌合リング25の内周面に対応する。
第1板部81Aの円弧を構成する外面とは反対側の直線部は、回路基板支持部53の側面に当接する。これにより、保持部材8が蓋部材5に対して位置決めされる。
The first plate portion 81A is sandwiched between the stepped portion 26 of the cylindrical case 2 and the lid body 51 of the lid member 5, and its outer shape corresponds to the inner peripheral surface of the fitting ring 25. As shown in FIG.
A linear portion opposite to the outer surface forming the arc of the first plate portion 81</b>A contacts the side surface of the circuit board support portion 53 . Thereby, the holding member 8 is positioned with respect to the lid member 5 .

第2板部81Bは、第1板部81Aに一体に形成され、一対の第1支持部531および第2支持部532の間で、かつ、蓋本体51と回路基板6との間に挿通される。そして、第2板部81Bには、窓部81Cが形成されている。窓部81Cは、ターミナル端子72と回路基板6とを電気的に接続するための電線等を挿通するためのスペースである。 The second plate portion 81B is formed integrally with the first plate portion 81A, and is inserted between the pair of the first support portion 531 and the second support portion 532 and between the lid body 51 and the circuit board 6. be. A window portion 81C is formed in the second plate portion 81B. The window portion 81</b>C is a space for inserting an electric wire or the like for electrically connecting the terminal terminal 72 and the circuit board 6 .

係止片部82は、第1板部81Aに一体に形成されている。本実施形態では、係止片部82は2個設けられている。そして、前述したように、係止片部82は、回路基板6の係止孔612Aにそれぞれ挿入されており、係止片部82と係止孔612Aとは、図示略の半田により固定されている。これにより、保持部材8は回路基板6を保持している。 The locking piece portion 82 is formed integrally with the first plate portion 81A. In this embodiment, two locking pieces 82 are provided. As described above, the locking pieces 82 are respectively inserted into the locking holes 612A of the circuit board 6, and the locking pieces 82 and the locking holes 612A are fixed by soldering (not shown). there is Thereby, the holding member 8 holds the circuit board 6 .

[キャップ部材9]
図4は、キャップ部材9および封止部材10の概略を示す斜視図である。
図1~図4に示すように、キャップ部材9は、樹脂製であり、貫通孔24を覆うように取り付けられている。本実施形態では、キャップ部材9は、前述したように、蓋部材5の被取付部54に着脱自在に取り付けられている。また、キャップ部材9は、キャップ部材本体部91と、キャップ部材軸部92と、キャップ部材係合部93とを有する。
[Cap member 9]
FIG. 4 is a perspective view showing an outline of the cap member 9 and the sealing member 10. FIG.
As shown in FIGS. 1 to 4, the cap member 9 is made of resin and attached so as to cover the through hole 24 . In this embodiment, the cap member 9 is detachably attached to the attached portion 54 of the lid member 5 as described above. Also, the cap member 9 has a cap member body portion 91 , a cap member shaft portion 92 and a cap member engaging portion 93 .

キャップ部材本体部91は、筒状ケース2の貫通孔24を覆うように、筒状ケース2の外側に配置されている。より具体的には、キャップ部材本体部91は、筒状ケース2の凹部23に配置されている。
また、本実施形態では、キャップ部材本体部91は、頂点91Aを有する五角形状に形成され、筒状ケース2に対向する底面91Bと、底面91Bとは反対側に設けられた表面91Cとを有している。
The cap member body portion 91 is arranged outside the tubular case 2 so as to cover the through hole 24 of the tubular case 2 . More specifically, the cap member body portion 91 is arranged in the concave portion 23 of the tubular case 2 .
In this embodiment, the cap member main body 91 is formed in a pentagonal shape having an apex 91A, and has a bottom surface 91B facing the cylindrical case 2 and a surface 91C provided on the opposite side of the bottom surface 91B. are doing.

キャップ部材軸部92は、キャップ部材本体部91の底面91Bから、キャップ部材本体部91と一体に延設されている。そして、キャップ部材軸部92は、前述したように、被取付部54の軸部挿通孔541Aに挿通可能に構成されている。 The cap member shaft portion 92 extends integrally with the cap member main body portion 91 from the bottom surface 91B of the cap member main body portion 91 . As described above, the cap member shaft portion 92 is configured to be able to be inserted into the shaft portion insertion hole 541A of the attached portion 54 .

キャップ部材係合部93は、キャップ部材軸部92の先端からキャップ部材軸部92の径方向に延設されている。本実施形態では、キャップ部材係合部93は、第1係合部931と、第2係合部932とを有する。
第1係合部931は、キャップ部材軸部92から四角柱状に延設されており、前述した第1係合部挿通孔541Bに挿通可能とされている。すなわち、第1係合部931は、第1係合部挿通孔541Bよりも、やや小さく形成されている。
The cap member engaging portion 93 extends from the tip of the cap member shaft portion 92 in the radial direction of the cap member shaft portion 92 . In this embodiment, the cap member engaging portion 93 has a first engaging portion 931 and a second engaging portion 932 .
The first engaging portion 931 extends in a quadrangular prism shape from the cap member shaft portion 92 and can be inserted into the above-described first engaging portion insertion hole 541B. That is, the first engaging portion 931 is formed slightly smaller than the first engaging portion insertion hole 541B.

第2係合部932は、キャップ部材軸部92を挟んで第1係合部931とは反対側に設けられている。そして、本実施形態では、第2係合部932は、キャップ部材軸部92から四角柱状に延設され、前述した第2係合部挿通孔541Cに挿通可能とされている。すなわち、第2係合部932は、第2係合部挿通孔541Cよりも、やや小さく形成されている。
また、本実施形態では、第2係合部932は、第1係合部931よりも一回り大きくなるように形成されている。すなわち、第1係合部931と第2係合部932とは、大きさが異なっている。
The second engaging portion 932 is provided on the side opposite to the first engaging portion 931 with the cap member shaft portion 92 interposed therebetween. In this embodiment, the second engaging portion 932 extends from the cap member shaft portion 92 in the shape of a quadrangular prism, and can be inserted into the above-described second engaging portion insertion hole 541C. That is, the second engaging portion 932 is formed slightly smaller than the second engaging portion insertion hole 541C.
Moreover, in the present embodiment, the second engaging portion 932 is formed to be one size larger than the first engaging portion 931 . That is, the first engaging portion 931 and the second engaging portion 932 are different in size.

ここで、本実施形態では、キャップ部材本体部91の頂点91Aが上向きに突出する場合、つまり、鉛直方向に突出する場合、第1係合部931および第2係合部932は、キャップ部材軸部92に対して水平方向に延びて、第1係合部挿通孔541Bおよび第2係合部挿通孔541Cにそれぞれ挿通可能とされる。すなわち、キャップ部材本体部91の頂点91Aが鉛直方向に突出する場合、キャップ部材9を蓋部材5の被取付部54に取り付けたり、キャップ部材9を蓋部材5の被取付部54から取り外したりすることができる。
また、キャップ部材本体部91の頂点91Aが横向きに突出する場合、つまり、水平方向に突出する場合、第1係合部931および第2係合部932は、キャップ部材軸部92に対して鉛直方向に延びて、蓋部材5の被取付部54に係合する。すなわち、キャップ部材本体部91の頂点91Aが水平方向に突出する場合、キャップ部材9を蓋部材5の被取付部54から取り外すことができない。
なお、頂点91Aが鉛直方向に突出するキャップ部材9の姿勢は本発明の第1姿勢の一例であり、頂点91Aが水平方向に突出するキャップ部材9の姿勢は本発明の第2姿勢の一例である。
Here, in the present embodiment, when the apex 91A of the cap member main body portion 91 protrudes upward, that is, when it protrudes in the vertical direction, the first engaging portion 931 and the second engaging portion 932 are aligned with the cap member axis. It extends in the horizontal direction with respect to the portion 92 and can be inserted through the first engaging portion insertion hole 541B and the second engaging portion insertion hole 541C. That is, when the vertex 91A of the cap member main body portion 91 protrudes in the vertical direction, the cap member 9 is attached to the attached portion 54 of the lid member 5, or the cap member 9 is removed from the attached portion 54 of the lid member 5. be able to.
Further, when the apex 91A of the cap member main body portion 91 protrudes sideways, that is, when it protrudes in the horizontal direction, the first engaging portion 931 and the second engaging portion 932 are perpendicular to the cap member shaft portion 92. direction and engages with the attached portion 54 of the lid member 5 . That is, when the vertex 91A of the cap member main body portion 91 protrudes in the horizontal direction, the cap member 9 cannot be removed from the attached portion 54 of the lid member 5 .
The posture of the cap member 9 in which the vertex 91A protrudes vertically is an example of the first posture of the present invention, and the posture of the cap member 9 in which the vertex 91A protrudes in the horizontal direction is an example of the second posture of the present invention. be.

[封止部材10]
封止部材10は、筒状ケース2の貫通孔24と、キャップ部材9のキャップ部材本体部91との間を封止する部材である。また、封止部材10は、ゴムや弾性を有する合成樹脂にて形成されており、キャップ部材9に取り付けられている。本実施形態では、封止部材10は、封止部材本体部101と、線状部材102と、封止部材係合部103とを有する。
[Sealing member 10]
The sealing member 10 is a member that seals between the through hole 24 of the cylindrical case 2 and the cap member main body portion 91 of the cap member 9 . The sealing member 10 is made of rubber or synthetic resin having elasticity, and is attached to the cap member 9 . In this embodiment, the sealing member 10 has a sealing member body portion 101 , a linear member 102 and a sealing member engaging portion 103 .

封止部材本体部101は、円環状に設けられ、キャップ部材軸部92を囲うように配置されている。そして、本実施形態では、封止部材本体部101には、筒状ケース2に向かって突出する突出部101Aが縁部に沿って形成されている。封止部材本体部101は、キャップ部材本体部91と筒状ケース2との間に配置された際に、当該突出部101Aが弾性変形することで、キャップ部材本体部91と貫通孔24との間を封止する。 The sealing member body portion 101 is provided in an annular shape and arranged so as to surround the cap member shaft portion 92 . In this embodiment, the sealing member main body 101 is formed with a protruding portion 101A protruding toward the cylindrical case 2 along the edge. When the sealing member main body 101 is arranged between the cap member main body 91 and the cylindrical case 2, the projecting part 101A is elastically deformed, so that the cap member main body 91 and the through hole 24 are separated. Seal the space.

線状部材102は、キャップ部材本体部91から筒状ケース2側に棒状に延設されている。そして、線状部材102は、前述した被取付部本体541の溝部541Dに挿通される。
封止部材係合部103は、線状部材102の先端に設けられている。本実施形態では、封止部材係合部103は、略半球状に形成されている。
The linear member 102 extends like a rod from the cap member main body 91 toward the cylindrical case 2 . Then, the linear member 102 is inserted through the groove portion 541D of the attached portion main body 541 described above.
The sealing member engaging portion 103 is provided at the tip of the linear member 102 . In this embodiment, the sealing member engaging portion 103 is formed in a substantially hemispherical shape.

[キャップ部材9および封止部材10の取付方法]
次に、キャップ部材9および封止部材10の取付方法について説明する。
図5~図7は、キャップ部材9および封止部材10の取付工程を示す図である。なお、図5~図7では、分かりやすくするために、筒状ケース2や回路基板6等を省略して示している。また、図5~図7では、図3とは反対側の方向から蓋部材5を見ている。
[Method for Attaching Cap Member 9 and Sealing Member 10]
Next, a method for attaching the cap member 9 and the sealing member 10 will be described.
5 to 7 are diagrams showing the process of attaching the cap member 9 and the sealing member 10. FIG. 5 to 7, the tubular case 2, the circuit board 6, etc. are omitted for the sake of clarity. 5 to 7, the lid member 5 is viewed from the direction opposite to that in FIG.

先ず、筒状ケース2を組み立てる。つまり、キャップ部材9および封止部材10を除いて、物理量測定装置1を組み立てる。そして、図5に示すように、キャップ部材本体部91を頂点91Aが鉛直方向に突出するように向け、この状態で、キャップ部材軸部92、第1係合部931、第2係合部932を、それぞれ軸部挿通孔541A、第1係合部挿通孔541B、第2係合部挿通孔541Cに挿通させる。
さらに、線状部材102および封止部材係合部103を軸部挿通孔541Aに挿通させる。すなわち、キャップ部材軸部92の軸方向から見て、線状部材102および封止部材係合部103が第2係合部932よりも反時計回り方向側に位置するように、封止部材10をキャップ部材9に取り付けておく。
First, the cylindrical case 2 is assembled. That is, the physical quantity measuring device 1 is assembled except for the cap member 9 and the sealing member 10 . Then, as shown in FIG. 5, the cap member main body portion 91 is directed so that the vertex 91A protrudes in the vertical direction, and in this state, the cap member shaft portion 92, the first engaging portion 931, and the second engaging portion 932 are engaged. are inserted through the shaft portion insertion hole 541A, the first engagement portion insertion hole 541B, and the second engagement portion insertion hole 541C, respectively.
Further, the linear member 102 and the sealing member engaging portion 103 are inserted through the shaft portion insertion hole 541A. That is, when viewed from the axial direction of the cap member shaft portion 92, the sealing member 10 is arranged such that the linear member 102 and the sealing member engaging portion 103 are located on the counterclockwise side of the second engaging portion 932. is attached to the cap member 9.

次に、図6に示すように、キャップ部材軸部92を回転中心にして、キャップ部材9を反時計回り方向に回転させる。そうすると、線状部材102および封止部材係合部103は、第2係合部932に付勢されて、反時計回り方向に移動する。なお、反時計回り方向は、本発明の回転方向の一例である。 Next, as shown in FIG. 6, the cap member 9 is rotated counterclockwise around the cap member shaft portion 92 as the center of rotation. Then, the linear member 102 and the sealing member engaging portion 103 are biased by the second engaging portion 932 and move counterclockwise. Note that the counterclockwise direction is an example of the rotation direction of the present invention.

そして、図7に示すように、キャップ部材9をさらに反時計回り方向に回転させると、キャップ部材本体部91の頂点91Aが水平方向に向いた状態で、第1係合部931が被係合部541Eに係合する。これにより、キャップ部材9の反時計回り方向の回転が規制される。そして、前述したように、この状態において、第1係合部931および第2係合部932は被取付部54に係合する。そのため、この状態では、キャップ部材9は、被取付部54から脱落することはない。すなわち、キャップ部材9は、頂点91Aが鉛直方向に突出する姿勢と水平方向に突出する姿勢とに回動可能に被取付部54に軸支される。 Then, as shown in FIG. 7, when the cap member 9 is further rotated counterclockwise, the first engaging portion 931 is engaged with the vertex 91A of the cap member main body portion 91 facing the horizontal direction. It engages with portion 541E. This restricts the counterclockwise rotation of the cap member 9 . Then, as described above, in this state, the first engaging portion 931 and the second engaging portion 932 are engaged with the attached portion 54 . Therefore, in this state, the cap member 9 does not drop off from the attached portion 54 . That is, the cap member 9 is pivotally supported by the attached portion 54 so as to be rotatable between a posture in which the vertex 91A protrudes in the vertical direction and a posture in which the vertex 91A protrudes in the horizontal direction.

また、図7に示すように、第1係合部931が被係合部541Eに係合するまでキャップ部材9を反時計回り方向に回転させると、線状部材102は第2係合部932に付勢されて溝部541Dに配置される。これにより、封止部材10が被取付部54に取り付けられる。このように、本実施形態では、筒状ケース2が組み立てられた状態で、キャップ部材9および封止部材10を取り付けることができる。
そして、この状態でキャップ部材9を時計回り方向に回転させても、線状部材102は溝部541Dに配置されており、第1係合部931および第2係合部932によって付勢されることはない。つまり、頂点91Aが鉛直方向に突出する姿勢と水平方向に突出する姿勢とにキャップ部材9を回動させても、封止部材10が被取付部54から外れてしまうことはない。
Further, as shown in FIG. 7, when the cap member 9 is rotated counterclockwise until the first engaging portion 931 engages the engaged portion 541E, the linear member 102 moves toward the second engaging portion 932. is placed in the groove portion 541D. Thereby, the sealing member 10 is attached to the attached portion 54 . Thus, in this embodiment, the cap member 9 and the sealing member 10 can be attached while the cylindrical case 2 is assembled.
Even if the cap member 9 is rotated clockwise in this state, the linear member 102 is arranged in the groove portion 541D and is biased by the first engaging portion 931 and the second engaging portion 932. no. In other words, the sealing member 10 does not come off from the attached portion 54 even when the cap member 9 is rotated between the posture in which the apex 91A protrudes in the vertical direction and the posture in which the vertex 91A protrudes in the horizontal direction.

図8は、封止部材10の取付状態を示す図である。
図8に示すように、頂点91Aが鉛直方向に突出する姿勢にキャップ部材9を回転させると、第1係合部931および第2係合部932を被取付部54から取り外すことができる。この状態において、線状部材102は溝部541Dに配置されているので、封止部材係合部103は被取付部54に係合する。これにより、キャップ部材9を被取付部54から取り外した状態でも、封止部材10が被取付部54から外れることはない。そのため、キャップ部材9を取り外した際に、封止部材10が取り付けられているキャップ部材9を紛失してしまうことを防ぐことができる。
なお、本実施形態では、キャップ部材本体部91は頂点91Aを有する五角形状に形成されることから、第1係合部931および第2係合部932の向きを容易に認識することができる。すなわち、ユーザーは、キャップ部材本体部91の向きを確認することにより、キャップ部材9が着脱可能であるか否かを容易に認識することができる。
FIG. 8 is a diagram showing the mounting state of the sealing member 10. As shown in FIG.
As shown in FIG. 8, the first engaging portion 931 and the second engaging portion 932 can be removed from the attached portion 54 by rotating the cap member 9 to a posture in which the apex 91A protrudes in the vertical direction. In this state, since the linear member 102 is arranged in the groove portion 541D, the sealing member engaging portion 103 is engaged with the attached portion 54. As shown in FIG. Accordingly, even when the cap member 9 is removed from the attached portion 54 , the sealing member 10 does not come off from the attached portion 54 . Therefore, when the cap member 9 is removed, it is possible to prevent the cap member 9 to which the sealing member 10 is attached from being lost.
In this embodiment, since the cap member main body portion 91 is formed in a pentagonal shape having an apex 91A, the directions of the first engaging portion 931 and the second engaging portion 932 can be easily recognized. In other words, the user can easily recognize whether or not the cap member 9 is detachable by checking the orientation of the cap member main body portion 91 .

以上のような本実施形態では、次の効果を奏することができる。
(1)本実施形態では、キャップ部材9は、筒状ケース2の外側に配置され貫通孔24を覆うキャップ部材本体部91と、キャップ部材本体部91の底面91Bから延設されたキャップ部材軸部92と、キャップ部材軸部92の先端からキャップ部材軸部92の径方向に延設された第1係合部931および第2係合部932とを有する。また、封止部材10は、円環状に設けられキャップ部材軸部92を囲うように配置される封止部材本体部101と、封止部材本体部101から延設された線状部材102と、線状部材102の先端に設けられた封止部材係合部103と、を有する。そして、キャップ部材9が着脱可能に取り付けられる被取付部54には、キャップ部材軸部92が挿通可能に構成された軸部挿通孔541Aと、第1係合部931が挿通可能に構成され軸部挿通孔541Aと連続する第1係合部挿通孔541Bと、第2係合部932が挿通可能に構成され軸部挿通孔541Aと連続する第2係合部挿通孔541Cと、線状部材102が配置される溝部541Dとが設けられる。これにより、キャップ部材9は、頂点91Aが鉛直方向に突出する姿勢において、第1係合部931および第2係合部932が、それぞれ第1係合部挿通孔541Bおよび第2係合部挿通孔541Cと挿通可能とされる。さらに、キャップ部材9は、頂点91Aが水平方向に突出する姿勢、つまり、第2姿勢において第1係合部931および第2係合部932が被取付部54と係合する。そのため、キャップ部材9は、被取付部54に着脱可能に取り付けられる。
ここで、頂点91Aが鉛直方向に突出する姿勢、つまり、第1姿勢において、線状部材102は、第2係合部932よりも、キャップ部材軸部92の軸方向から見て、反時計回り方向側に配置されている。そのため、キャップ部材9を頂点91Aが鉛直方向に突出する姿勢にした状態で、キャップ部材軸部92と線状部材102とを軸部挿通孔541Aに挿通させ、その後、キャップ部材9を反時計回り方向に回転させると、線状部材102は第2係合部932に付勢されて、反時計回り方向に回転する。そうすると、線状部材102は反時計回り方向に移動しながら被取付部54の溝部541Dに導かれるので、線状部材102を溝部541Dに配置することができる。そのため、筒状ケース2を組み立ててから、キャップ部材9を取り付ける場合にも、キャップ部材9の紛失を防止する線状部材102を、筒状ケース2内に配置される被取付部54に取り付けることができる。したがって、仮に、筒状ケース2を組み立てた後に、線状部材102が損傷してしまったとしても、線状部材102を有する封止部材10を容易に交換することができる。
The following effects can be obtained in this embodiment as described above.
(1) In the present embodiment, the cap member 9 includes a cap member main body portion 91 arranged outside the cylindrical case 2 and covering the through hole 24, and a cap member shaft extending from the bottom surface 91B of the cap member main body portion 91. and a first engaging portion 931 and a second engaging portion 932 extending from the tip of the cap member shaft portion 92 in the radial direction of the cap member shaft portion 92 . Further, the sealing member 10 includes a sealing member main body portion 101 provided in an annular shape and arranged so as to surround the cap member shaft portion 92, a linear member 102 extending from the sealing member main body portion 101, and a sealing member engaging portion 103 provided at the tip of the linear member 102 . The attached portion 54 to which the cap member 9 is detachably attached has a shaft portion insertion hole 541A through which the cap member shaft portion 92 can be inserted, and a shaft portion insertion hole 541A through which the first engaging portion 931 can be inserted. a first engagement portion insertion hole 541B continuous with the shaft portion insertion hole 541A; a second engagement portion insertion hole 541C configured so that the second engagement portion 932 can be inserted and continuous with the shaft portion insertion hole 541A; A groove portion 541D in which 102 is arranged is provided. As a result, the first engaging portion 931 and the second engaging portion 932 are inserted through the first engaging portion insertion hole 541B and the second engaging portion insertion hole 541B, respectively. It can be inserted through the hole 541C. Furthermore, the first engaging portion 931 and the second engaging portion 932 of the cap member 9 are engaged with the attached portion 54 in the posture in which the apex 91A protrudes in the horizontal direction, that is, in the second posture. Therefore, the cap member 9 is detachably attached to the attached portion 54 .
Here, in the posture in which the apex 91A protrudes in the vertical direction, that is, in the first posture, the linear member 102 rotates more counterclockwise than the second engaging portion 932 when viewed from the axial direction of the cap member shaft portion 92. placed on the direction side. For this reason, the cap member shaft portion 92 and the linear member 102 are inserted into the shaft portion insertion hole 541A in a state in which the apex 91A of the cap member 9 protrudes vertically, and then the cap member 9 is rotated counterclockwise. When rotated in the direction, the linear member 102 is urged by the second engaging portion 932 to rotate counterclockwise. Then, the linear member 102 is guided to the groove portion 541D of the attached portion 54 while moving counterclockwise, so that the linear member 102 can be arranged in the groove portion 541D. Therefore, even when the cap member 9 is attached after the cylindrical case 2 is assembled, the linear member 102 that prevents the loss of the cap member 9 should be attached to the attached portion 54 arranged inside the cylindrical case 2 . can be done. Therefore, even if the linear member 102 is damaged after the tubular case 2 is assembled, the sealing member 10 having the linear member 102 can be easily replaced.

(2)本実施形態では、被取付部54の係合凸部543を貫通孔24に係合させることができるので、貫通孔24に対して被取付部54を容易に位置決めすることができる。そのため、物理量測定装置1の組立を容易にすることができる。 (2) In the present embodiment, since the engaging protrusions 543 of the attached portion 54 can be engaged with the through holes 24 , the attached portion 54 can be easily positioned with respect to the through holes 24 . Therefore, assembly of the physical quantity measuring device 1 can be facilitated.

(3)本実施形態では、キャップ部材係合部93は、第1係合部931および第2係合部932を有するので、被取付部54に確実に係合させることができる。そのため、キャップ部材9が被取付部54から脱落してしまうことを抑制することができる。 (3) In the present embodiment, since the cap member engaging portion 93 has the first engaging portion 931 and the second engaging portion 932, it can be reliably engaged with the attached portion . Therefore, it is possible to prevent the cap member 9 from falling off from the attached portion 54 .

(4)本実施形態では、キャップ部材本体部91は五角形状なので、ユーザーは、キャップ部材9が第1姿勢であるか、または、第2姿勢であるかを容易に認識することができる。 (4) In the present embodiment, the cap member body 91 has a pentagonal shape, so the user can easily recognize whether the cap member 9 is in the first posture or the second posture.

[第2実施形態]
次に、本発明の第2実施形態について図面に基づいて説明する。
第2実施形態では、封止部材10Aは、線状部材106Aの先端に設けられ線状部材106Aと交差する方向に沿って配置された封止部材係合軸部107Aを有し、被取付部54Aには、当該封止部材係合軸部107Aを挿通可能な係合軸部挿通孔541Jが形成される点で第1実施形態と異なる。なお、第2実施形態において、第1実施形態と同一または同様の構成には同一符号を付して、説明を省略する。
[Second embodiment]
Next, a second embodiment of the invention will be described with reference to the drawings.
In the second embodiment, the sealing member 10A has a sealing member engaging shaft portion 107A provided at the tip of the linear member 106A and arranged along the direction intersecting the linear member 106A. 54A differs from the first embodiment in that an engagement shaft insertion hole 541J through which the sealing member engagement shaft 107A can be inserted is formed. In addition, in 2nd Embodiment, the same code|symbol is attached|subjected to the same or similar structure as 1st Embodiment, and description is abbreviate|omitted.

[蓋部材5A]
図9は、本実施形態の蓋部材5Aの概略を示す正面図である。
図9に示すように、蓋部材5Aは、前述した第1実施形態の蓋部材5と同様に樹脂製の所謂コネクタタイプの部材であり、蓋本体51Aと、筒状部52Aと、回路基板支持部53Aと、被取付部54Aとを備える。
なお、蓋本体51Aと、筒状部52Aと、回路基板支持部53Aとは、前述した第1実施形態の蓋本体51と、筒状部52と、回路基板支持部53と同様であるため、詳細な説明は割愛する。
[Lid member 5A]
FIG. 9 is a front view showing an outline of the lid member 5A of this embodiment.
As shown in FIG. 9, the lid member 5A is a so-called connector-type member made of resin like the lid member 5 of the first embodiment described above, and includes a lid body 51A, a cylindrical portion 52A, and a circuit board support. It has a portion 53A and an attached portion 54A.
Note that the lid body 51A, the cylindrical portion 52A, and the circuit board support portion 53A are the same as the lid body 51, the cylindrical portion 52, and the circuit board support portion 53 of the first embodiment described above. A detailed explanation is omitted.

被取付部54Aは、前述した第1実施形態の被取付部54と同様に、キャップ部材9が着脱可能に取り付けられる部材である。本実施形態では、被取付部54Aは、被取付部本体541Fと、連結部542Aと、係合凸部543Aとを有する。連結部542Aおよび係合凸部543Aは、前述した第1実施形態の連結部542および係合凸部543と同様であるため、詳細な説明は割愛する。
被取付部本体541Fは、平板状に設けられており、連結部542Aにより第1支持部531Aおよび第2支持部532Aに連結されて支持されている。そして、被取付部本体541Fには、軸部挿通孔541Gと、第1係合部挿通孔541Hと、第2係合部挿通孔541Iと、係合軸部挿通孔541Jとが形成されている。なお、前述した第1実施形態と同様に、被取付部本体541Fには、前述した第1実施形態と同様に、被係合部541E(図13参照)が形成されている。
The attached portion 54A is a member to which the cap member 9 is detachably attached, similar to the attached portion 54 of the first embodiment. In this embodiment, the attached portion 54A has an attached portion main body 541F, a connecting portion 542A, and an engaging protrusion 543A. Since the connecting portion 542A and the engaging convex portion 543A are the same as the connecting portion 542 and the engaging convex portion 543 of the first embodiment described above, detailed description thereof will be omitted.
The attached portion main body 541F is provided in a flat plate shape, and is connected to and supported by the first support portion 531A and the second support portion 532A by a connecting portion 542A. A shaft portion insertion hole 541G, a first engagement portion insertion hole 541H, a second engagement portion insertion hole 541I, and an engagement shaft portion insertion hole 541J are formed in the attached portion main body 541F. . As in the first embodiment described above, an engaged portion 541E (see FIG. 13) is formed in the attached portion main body 541F in the same manner as in the first embodiment described above.

軸部挿通孔541Gは、前述した第1実施形態と同様に、キャップ部材9のキャップ部材軸部92が挿通可能とされている。
第1係合部挿通孔541Hは、軸部挿通孔541Gと連続して設けられている。そして、第1係合部挿通孔541Hは、キャップ部材9の第1係合部931に対応した形状に形成されており、第1係合部931が挿通可能とされている。
第2係合部挿通孔541Iは、軸部挿通孔541Gを挟んで第1係合部挿通孔541Hとは反対側に、軸部挿通孔541Gと連続して設けられている。そして、第2係合部挿通孔541Iは、キャップ部材9の第2係合部932に対応した形状に形成されており、第2係合部932が挿通可能とされている。なお、第1係合部挿通孔541Hおよび第2係合部挿通孔541Iは、軸部挿通孔541Gと連続する本開示の係合部挿通孔を構成する。
The cap member shaft portion 92 of the cap member 9 can be inserted through the shaft portion insertion hole 541G as in the first embodiment described above.
The first engaging portion insertion hole 541H is provided continuously with the shaft portion insertion hole 541G. The first engaging portion insertion hole 541H is formed in a shape corresponding to the first engaging portion 931 of the cap member 9 so that the first engaging portion 931 can be inserted therethrough.
The second engaging portion insertion hole 541I is formed continuously with the shaft portion insertion hole 541G on the opposite side of the shaft portion insertion hole 541G from the first engagement portion insertion hole 541H. The second engaging portion insertion hole 541I is formed in a shape corresponding to the second engaging portion 932 of the cap member 9 so that the second engaging portion 932 can be inserted therethrough. The first engaging portion insertion hole 541H and the second engaging portion insertion hole 541I constitute an engaging portion insertion hole of the present disclosure that is continuous with the shaft portion insertion hole 541G.

係合軸部挿通孔541Jは、軸部挿通孔541Gとは独立して、すなわち、軸部挿通孔541Gと連続しないように設けられている。そして、係合軸部挿通孔541Jは、後述する封止部材10Aの線状部材106Aが配置可能とされ、封止部材係合軸部107Aが挿通可能とされている。
なお、被取付部54Aに対するキャップ部材9および封止部材10Aの取付方法の詳細については、後述する。
The engaging shaft insertion hole 541J is provided independently of the shaft insertion hole 541G, that is, not connected to the shaft insertion hole 541G. A linear member 106A of a sealing member 10A, which will be described later, can be arranged in the engagement shaft portion insertion hole 541J, and a sealing member engagement shaft portion 107A can be inserted therethrough.
Details of how to attach the cap member 9 and the sealing member 10A to the attached portion 54A will be described later.

[封止部材10A]
図10は、本実施形態の封止部材10Aの概略を示す正面図である。
図10に示すように、封止部材10Aは、前述した第1実施形態の封止部材10と同様に、筒状ケース2の貫通孔24と、キャップ部材9のキャップ部材本体部91との間を封止する部材である。また、封止部材10Aは、ゴムや弾性を有する合成樹脂にて形成されており、キャップ部材9に取り付けられている。本実施形態では、封止部材10Aは、封止部材本体部104Aと、線状部材106Aと、封止部材係合軸部107Aとを有する。
[Sealing member 10A]
FIG. 10 is a front view schematically showing the sealing member 10A of this embodiment.
As shown in FIG. 10, the sealing member 10A has a gap between the through hole 24 of the cylindrical case 2 and the cap member body 91 of the cap member 9, like the sealing member 10 of the first embodiment described above. It is a member that seals the The sealing member 10A is made of rubber or synthetic resin having elasticity, and is attached to the cap member 9. As shown in FIG. In this embodiment, the sealing member 10A has a sealing member body portion 104A, a linear member 106A, and a sealing member engaging shaft portion 107A.

封止部材本体部104Aは、円環状に設けられ、キャップ部材軸部92を囲うように配置されている。そして、本実施形態では、封止部材本体部104Aには、筒状ケース2に向かって突出する突出部105Aが縁部に沿って形成されている。封止部材本体部104Aは、キャップ部材本体部91と筒状ケース2との間に配置された際に、当該突出部105Aが弾性変形することで、キャップ部材本体部91と貫通孔24との間を封止する。 The sealing member main body portion 104A is provided in an annular shape and arranged so as to surround the cap member shaft portion 92 . In this embodiment, the sealing member main body 104A is formed with a protruding portion 105A protruding toward the cylindrical case 2 along the edge. When the sealing member main body portion 104A is arranged between the cap member main body portion 91 and the cylindrical case 2, the projecting portion 105A is elastically deformed, so that the cap member main body portion 91 and the through hole 24 are separated. Seal the space.

線状部材106Aは、キャップ部材本体部91から筒状ケース2側に棒状に延設されている。そして、線状部材106Aは、前述した被取付部本体541Fの係合軸部挿通孔541Jに配置される。
封止部材係合軸部107Aは、線状部材106Aの先端に設けられ、線状部材106Aと直交する方向に延設されている。すなわち、線状部材106Aと封止部材係合軸部107Aとで、T字状とされている。本実施形態では、封止部材係合軸部107Aには、突出部108Aと、凹部109Aとが形成されている。
The linear member 106A extends like a rod from the cap member main body 91 toward the tubular case 2 side. The linear member 106A is arranged in the engaging shaft portion insertion hole 541J of the attached portion main body 541F described above.
The sealing member engaging shaft portion 107A is provided at the tip of the linear member 106A and extends in a direction orthogonal to the linear member 106A. That is, the linear member 106A and the sealing member engaging shaft portion 107A form a T shape. In this embodiment, a protrusion 108A and a recess 109A are formed in the sealing member engagement shaft 107A.

突出部108Aは、封止部材係合軸部107Aの一方の端部に設けられており、先端に向かうにしたがって径が小さくなるように形成されている。すなわち、突出部108Aは、円錐状とされている。
凹部109Aは、封止部材係合軸部107Aの他方の端部において、封止部材係合軸部107Aの軸方向に沿って形成されている。そして、凹部109Aは、ドライバー等の工具を挿入可能とされている。
The projecting portion 108A is provided at one end of the sealing member engaging shaft portion 107A, and is formed so that the diameter decreases toward the tip. That is, the projecting portion 108A is conical.
The recess 109A is formed along the axial direction of the sealing member engaging shaft portion 107A at the other end of the sealing member engaging shaft portion 107A. A tool such as a screwdriver can be inserted into the recess 109A.

[キャップ部材9および封止部材10Aの取付方法]
次に、キャップ部材9および封止部材10Aの取付方法について説明する。
図11~図14は、キャップ部材9および封止部材10Aの取付工程を示す図である。なお、図11~図14では、分かりやすくするために、筒状ケース2や回路基板6等を省略して示している。また、図13、図14では、図9とは反対側の方向から蓋部材5Aを見ている。
[How to attach cap member 9 and sealing member 10A]
Next, a method for attaching the cap member 9 and the sealing member 10A will be described.
11 to 14 are diagrams showing the process of attaching the cap member 9 and the sealing member 10A. 11 to 14, the cylindrical case 2, the circuit board 6, etc. are omitted for the sake of clarity. 13 and 14, the lid member 5A is viewed from the direction opposite to that in FIG.

先ず、前述した第1実施形態と同様に、筒状ケース2を組み立てる。そして、図11に示すように、キャップ部材本体部91を頂点91Aが鉛直方向に突出するように向け、この状態で、封止部材係合軸部107Aの突出部108Aを、係合軸部挿通孔541Jに対応する位置に配置する。 First, the tubular case 2 is assembled in the same manner as in the first embodiment described above. Then, as shown in FIG. 11, the cap member main body portion 91 is directed so that the apex 91A protrudes in the vertical direction, and in this state, the protrusion portion 108A of the sealing member engagement shaft portion 107A is inserted into the engagement shaft portion. It is arranged at a position corresponding to the hole 541J.

次に、図12に示すように、突出部108Aを先頭にして、封止部材係合軸部107Aを係合軸部挿通孔541Jに挿通させる。この際、封止部材係合軸部107Aの凹部109Aにドライバー等の工具を挿入させ、その状態で、突出部108Aを係合軸部挿通孔541Jに挿通させる。これにより、封止部材係合軸部107Aを係合軸部挿通孔541Jに容易に挿通させることができる。 Next, as shown in FIG. 12, the sealing member engaging shaft portion 107A is inserted into the engaging shaft portion insertion hole 541J with the projecting portion 108A leading. At this time, a tool such as a screwdriver is inserted into the concave portion 109A of the sealing member engaging shaft portion 107A, and in this state, the projecting portion 108A is inserted into the engaging shaft portion insertion hole 541J. Thereby, the sealing member engaging shaft portion 107A can be easily inserted into the engaging shaft portion insertion hole 541J.

次に図13に示すように、キャップ部材軸部92、第1係合部931、第2係合部932を、それぞれ軸部挿通孔541G、第1係合部挿通孔541H、第2係合部挿通孔541Iに挿通させる。 Next, as shown in FIG. 13, the cap member shaft portion 92, the first engaging portion 931, and the second engaging portion 932 are inserted into the shaft portion insertion hole 541G, the first engaging portion insertion hole 541H, and the second engaging portion, respectively. is inserted through the partial insertion hole 541I.

次に、図14に示すように、キャップ部材軸部92を回転中心にして、キャップ部材9を反時計回り方向に回転させる。そうすると、キャップ部材本体部91の頂点91Aが水平方向に向いた状態で、第1係合部931が被係合部541Eに係合する。これにより、キャップ部材9の反時計回り方向の回転が規制される。そして、前述した第1実施形態と同様に、この状態において、第1係合部931および第2係合部932は被取付部54Aに係合する。そのため、この状態では、キャップ部材9は、被取付部54Aから脱落することはない。すなわち、キャップ部材9は、頂点91Aが鉛直方向に突出する姿勢と水平方向に突出する姿勢とに回動可能に被取付部54Aに軸支される。
このように、本実施形態では、筒状ケース2が組み立てられた状態で、キャップ部材9および封止部材10Aを取り付けることができる。
Next, as shown in FIG. 14, the cap member 9 is rotated counterclockwise around the cap member shaft portion 92 as the center of rotation. Then, the first engaging portion 931 is engaged with the engaged portion 541E with the vertex 91A of the cap member main body portion 91 facing in the horizontal direction. This restricts the counterclockwise rotation of the cap member 9 . In this state, the first engaging portion 931 and the second engaging portion 932 are engaged with the attached portion 54A, similarly to the first embodiment described above. Therefore, in this state, the cap member 9 does not come off from the attached portion 54A. That is, the cap member 9 is rotatably supported by the attached portion 54A so that the vertex 91A protrudes vertically and horizontally.
Thus, in this embodiment, the cap member 9 and the sealing member 10A can be attached while the cylindrical case 2 is assembled.

図15は、封止部材10Aの取付状態を示す図である。
図15に示すように、頂点91Aが鉛直方向に突出する姿勢にキャップ部材9を回転させると、第1係合部931および第2係合部932を被取付部54Aから取り外すことができる。この状態において、線状部材106Aは係合軸部挿通孔541Jに配置されているので、封止部材係合軸部107Aは被取付部54Aに係合する。これにより、キャップ部材9を被取付部54Aから取り外した状態でも、封止部材10Aが被取付部54Aから外れることはない。そのため、キャップ部材9を取り外した際に、封止部材10Aが取り付けられているキャップ部材9を紛失してしまうことを防ぐことができる。
FIG. 15 is a diagram showing the mounting state of the sealing member 10A.
As shown in FIG. 15, when the cap member 9 is rotated to a posture in which the vertex 91A protrudes vertically, the first engaging portion 931 and the second engaging portion 932 can be removed from the attached portion 54A. In this state, since the linear member 106A is arranged in the engaging shaft portion insertion hole 541J, the sealing member engaging shaft portion 107A engages with the attached portion 54A. Accordingly, even when the cap member 9 is removed from the attached portion 54A, the sealing member 10A does not come off from the attached portion 54A. Therefore, when the cap member 9 is removed, it is possible to prevent the cap member 9 to which the sealing member 10A is attached from being lost.

以上のような本実施形態では、次の効果を奏することができる。
(5)本実施形態では、キャップ部材9は、筒状ケース2の外側に配置され貫通孔24を覆うキャップ部材本体部91と、キャップ部材本体部91の底面91Bから延設されたキャップ部材軸部92と、キャップ部材軸部92の先端からキャップ部材軸部92の径方向に延設された第1係合部931および第2係合部932とを有する。また、封止部材10Aは、環状に設けられキャップ部材軸部92を囲うように配置される封止部材本体部104Aと、封止部材本体部104Aから延設された線状部材106Aと、線状部材106Aの先端に設けられ線状部材106Aと直交する方向に沿って配置された封止部材係合軸部107Aと、を有する。そして、キャップ部材9が着脱可能に取り付けられる被取付部54Aには、キャップ部材軸部92が挿通可能に構成された軸部挿通孔541Gと、第1係合部931が挿通可能に構成され軸部挿通孔541Gと連続する第1係合部挿通孔541Hと、第2係合部932が挿通可能に構成され軸部挿通孔541Gと連続する第2係合部挿通孔541Iと、線状部材106Aが配置され封止部材係合軸部107Aが挿通可能な係合軸部挿通孔541Jとが設けられる。これにより、キャップ部材9は、頂点91Aが鉛直方向に突出する姿勢、つまり、第1姿勢においてキャップ部材係合部93が軸部挿通孔541Gと挿通可能とされる。さらに、キャップ部材9は、頂点91Aが水平方向に突出する姿勢、つまり、第2姿勢において第1係合部931および第2係合部932が被取付部54Aと係合する。すなわち、キャップ部材9は、被取付部54Aに着脱可能に取り付けられる。
ここで、被取付部54Aには、封止部材係合軸部107Aが挿通可能な係合軸部挿通孔541Jが設けられている。そのため、先ず、封止部材係合軸部107Aを係合軸部挿通孔541Jに挿通させ、その後、線状部材106Aを係合軸部挿通孔541Jに配置するようにすれば、封止部材10Aを被取付部54Aに取り付けることができる。この際、線状部材106Aと封止部材係合軸部107Aとは直交しているので、線状部材106Aを係合軸部挿通孔541Jに配置した後は、封止部材係合軸部107Aと被取付部54Aとは係合する。すなわち、封止部材10Aを取り外す方向に線状部材106Aを引っ張っても、被取付部54Aから封止部材係合軸部107Aは簡単に抜けない。そのため、キャップ部材9を取り付けた状態で、封止部材10Aを上記の手順で被取付部54Aに取り付ければ、キャップ部材9の紛失を防止することができる。
すなわち、筒状ケース2を組み立ててから、キャップ部材9を取り付ける場合にも、キャップ部材9の紛失を防止する線状部材106Aを、筒状ケース2内に配置される被取付部54Aに取り付けることができる。したがって、仮に、筒状ケース2を組み立てた後に、線状部材106Aが損傷してしまったとしても、線状部材106Aを有する封止部材10Aを容易に交換することができる。
The following effects can be obtained in this embodiment as described above.
(5) In the present embodiment, the cap member 9 includes a cap member main body portion 91 arranged outside the cylindrical case 2 and covering the through hole 24, and a cap member shaft extending from the bottom surface 91B of the cap member main body portion 91. and a first engaging portion 931 and a second engaging portion 932 extending from the tip of the cap member shaft portion 92 in the radial direction of the cap member shaft portion 92 . The sealing member 10A includes a sealing member main body portion 104A which is provided in an annular shape and is arranged so as to surround the cap member shaft portion 92, a linear member 106A which extends from the sealing member main body portion 104A, and a wire member. and a sealing member engaging shaft portion 107A provided at the tip of the shaped member 106A and arranged along a direction orthogonal to the linear member 106A. The attached portion 54A to which the cap member 9 is detachably attached has a shaft portion insertion hole 541G through which the cap member shaft portion 92 can be inserted, and a shaft portion insertion hole 541G through which the first engaging portion 931 can be inserted. A first engaging portion insertion hole 541H continuous with the shaft portion insertion hole 541G, a second engaging portion insertion hole 541I configured so that the second engaging portion 932 can be inserted and continuous with the shaft portion insertion hole 541G, and a linear member 106A is arranged and an engagement shaft portion insertion hole 541J through which the sealing member engagement shaft portion 107A can be inserted is provided. As a result, the cap member engaging portion 93 can be inserted into the shaft portion insertion hole 541G in the posture in which the apex 91A of the cap member 9 protrudes in the vertical direction, that is, in the first posture. Furthermore, the first engaging portion 931 and the second engaging portion 932 of the cap member 9 engage with the attached portion 54A in the posture in which the vertex 91A protrudes in the horizontal direction, that is, in the second posture. That is, the cap member 9 is detachably attached to the attached portion 54A.
Here, the attached portion 54A is provided with an engaging shaft portion insertion hole 541J through which the sealing member engaging shaft portion 107A can be inserted. Therefore, first, the sealing member engaging shaft portion 107A is inserted into the engaging shaft portion insertion hole 541J, and then the linear member 106A is arranged in the engaging shaft portion insertion hole 541J. can be attached to the attached portion 54A. At this time, since the linear member 106A and the sealing member engaging shaft portion 107A are perpendicular to each other, after the linear member 106A is arranged in the engaging shaft portion insertion hole 541J, the sealing member engaging shaft portion 107A and the attached portion 54A are engaged. That is, even if the linear member 106A is pulled in the direction of removing the sealing member 10A, the sealing member engaging shaft portion 107A cannot be easily removed from the attached portion 54A. Therefore, if the sealing member 10A is attached to the attached portion 54A according to the procedure described above with the cap member 9 attached, the loss of the cap member 9 can be prevented.
That is, even when the cap member 9 is attached after the tubular case 2 is assembled, the linear member 106A that prevents the loss of the cap member 9 can be attached to the attached portion 54A arranged inside the tubular case 2. can be done. Therefore, even if the linear member 106A is damaged after the tubular case 2 is assembled, the sealing member 10A having the linear member 106A can be easily replaced.

(6)本実施形態では、封止部材係合軸部107Aの凹部109Aにドライバー等の工具を挿入させ、その状態で、封止部材係合軸部107Aの突出部108Aを係合軸部挿通孔541Jに挿通させることができる。そのため、封止部材係合軸部107Aを係合軸部挿通孔541Jに挿通させる作業を容易にすることができる。 (6) In this embodiment, a tool such as a screwdriver is inserted into the concave portion 109A of the sealing member engaging shaft portion 107A, and in this state, the projecting portion 108A of the sealing member engaging shaft portion 107A is inserted into the engaging shaft portion. It can be inserted through the hole 541J. Therefore, the operation of inserting the sealing member engaging shaft portion 107A into the engaging shaft portion insertion hole 541J can be facilitated.

[変形例]
なお、本発明は前述の実施形態に限定されるものではなく、本発明の目的を達成できる範囲での変形、改良等は本発明に含まれるものである。
前記各実施形態では、筒状ケース2は円筒状に形成されていたが、これに限定されるものではない。例えば、筒状ケースは、多角筒状に形成されていてもよい。
[Modification]
It should be noted that the present invention is not limited to the above-described embodiments, and includes modifications, improvements, etc. within the scope of achieving the object of the present invention.
In each of the embodiments described above, the tubular case 2 is formed in a cylindrical shape, but is not limited to this. For example, the tubular case may be formed in a polygonal tubular shape.

前記各実施形態では、筒状ケース2、継手3、保持部材8は金属製であったが、これに限定されるものではなく、例えば、これらは樹脂から形成されていてもよい。 In each of the above embodiments, the cylindrical case 2, the joint 3, and the holding member 8 are made of metal, but they are not limited to this, and may be made of resin, for example.

前記各実施形態では、キャップ部材9は、頂点91Aが鉛直方向に突出する姿勢から、頂点91Aが水平方向に突出する姿勢に、キャップ部材軸部92の軸方向から見て反時計回り方向に回転可能に構成されていたが、これに限定されない。例えば、キャップ部材9は、頂点91Aが鉛直方向に突出する姿勢から、頂点91Aが水平方向に突出する姿勢に、キャップ部材軸部92の軸方向から見て時計回り方向に回転可能に構成されていればよい。 In each of the above-described embodiments, the cap member 9 rotates counterclockwise when viewed from the axial direction of the cap member shaft portion 92 from the posture in which the vertex 91A protrudes vertically to the posture in which the vertex 91A protrudes in the horizontal direction. Although it was configured to be possible, it is not limited to this. For example, the cap member 9 is configured to be rotatable clockwise when viewed from the axial direction of the cap member shaft portion 92 from an attitude in which the vertex 91A protrudes vertically to an attitude in which the vertex 91A protrudes in the horizontal direction. All you have to do is

前記各実施形態では、キャップ部材本体部91は、頂点91Aを有する五角形状に形成されていたが、これに限定されない。例えば、キャップ部材本体部は、四角形状や三角形状に形成されていてもよい。さらに、キャップ部材本体部に、第1係合部および第2係合部の向きが分かる目印が付されていても良い。 In each of the above-described embodiments, the cap member body portion 91 is formed in a pentagonal shape having an apex 91A, but is not limited to this. For example, the cap member main body may be formed in a square shape or a triangular shape. Further, the cap member main body may be provided with a mark indicating the orientation of the first engaging portion and the second engaging portion.

前記各実施形態では、第1係合部931と第2係合部932とは異なる大きさとされていたが、これに限定されない。例えば、第1係合部と第2係合部とは同じ大きさとされていてもよい。 In each of the embodiments described above, the first engaging portion 931 and the second engaging portion 932 have different sizes, but the present invention is not limited to this. For example, the first engaging portion and the second engaging portion may have the same size.

前記各実施形態では、被取付部54,54Aには、貫通孔24に向かって突出し、貫通孔24と係合する係合凸部543,543Aが設けられていたが、これに限定されない。例えば、被取付部に係合凸部が設けられない場合も、本発明に含まれる。 In each of the above-described embodiments, the mounting portions 54 and 54A are provided with the engaging projections 543 and 543A that protrude toward the through hole 24 and engage with the through hole 24, but the present invention is not limited to this. For example, the present invention includes a case where the attached portion is not provided with the engaging protrusion.

前記第1実施形態では、封止部材係合部103は、略半球状に形成されていたが、これに限定されない。例えば、封止部材係合部は、板状に形成されていてもよく、被取付部と係合可能に形成されていればよい。 In the first embodiment, the sealing member engaging portion 103 is formed in a substantially hemispherical shape, but is not limited to this. For example, the sealing member engaging portion may be formed in a plate shape as long as it can be engaged with the attached portion.

前記第2実施形態では、封止部材係合軸部107Aは、線状部材106Aの先端において、線状部材106Aと直交する方向に沿って設けられていたが、これに限定されない。封止部材係合軸部は、線状部材と交差する方向に沿って設けられていればよく、線状部材を係合軸部挿通孔に配置した際に、被取付部と係合可能に構成されていればよい。 In the second embodiment, the sealing member engaging shaft portion 107A is provided along the direction orthogonal to the linear member 106A at the distal end of the linear member 106A, but the present invention is not limited to this. The sealing member engaging shaft portion may be provided along a direction intersecting the linear member, and when the linear member is arranged in the engaging shaft portion insertion hole, the sealing member engaging shaft portion can be engaged with the mounted portion. It just needs to be configured.

前記実施形態では、物理量測定装置1は被測定流体の圧力を測定可能に構成されていたが、これに限定されるものではなく、例えば、差圧や温度を測定可能に構成されていてもよい。 In the above embodiment, the physical quantity measuring device 1 is configured to be able to measure the pressure of the fluid to be measured, but is not limited to this, and may be configured to be capable of measuring differential pressure or temperature, for example. .

1…物理量測定装置、2…筒状ケース、3…継手、4…センサモジュール、5,5A…蓋部材、6…回路基板、7…信号伝達部材、8…保持部材、9…キャップ部材、10,10A…封止部材、21…第1開口、22…第2開口、23…凹部、24…貫通孔、25…嵌合リング、26…段差部、31…工具係合部、32…雄ねじ部、41…筒体部、42…ダイアフラム、51,51A…蓋本体、52,52A…筒状部、53,53A…回路基板支持部、54,54A…被取付部、61…基板本体、62…電子回路部、63…電子調整部、71…円筒部材、72…ターミナル端子、81…平面部、81A…第1板部、81B…第2板部、81C…窓部、82…係止片部、91…キャップ部材本体部、91A…頂点、91B…底面、91C…表面、92…キャップ部材軸部、93…キャップ部材係合部、101,104A…封止部材本体部、101A,105A…突出部、102,106A…線状部材、103…封止部材係合部、107A…封止部材係合軸部、108A…突出部、109A…凹部、521…取付孔、531,531A…第1支持部、532,532A…第2支持部、541,541F…被取付部本体、541A,541G…軸部挿通孔、541B,541H…第1係合部挿通孔、541C,541I…第2係合部挿通孔、541D…溝部、541E…被係合部、541J…係合軸部挿通孔、542,542A…連結部、543,543A…係合凸部、611…第1基板、612…第2基板、612A…係止孔、631…被操作部、931…第1係合部、932…第2係合部。 DESCRIPTION OF SYMBOLS 1... Physical quantity measuring apparatus 2... Cylindrical case 3... Joint 4... Sensor module 5, 5A... Lid member 6... Circuit board 7... Signal transmission member 8... Holding member 9... Cap member 10 , 10A...sealing member, 21...first opening, 22...second opening, 23...recessed portion, 24...through hole, 25...fitting ring, 26...stepped portion, 31...tool engaging portion, 32...male screw portion , 41... Cylindrical part 42... Diaphragm 51, 51A... Lid main body 52, 52A... Cylindrical part 53, 53A... Circuit board supporting part 54, 54A... Attached part 61... Substrate main body 62... Electronic circuit portion 63 Electronic adjustment portion 71 Cylindrical member 72 Terminal terminal 81 Plane portion 81A First plate portion 81B Second plate portion 81C Window portion 82 Locking piece portion , 91... Cap member main body portion 91A... Vertex 91B... Bottom surface 91C... Surface 92... Cap member shaft portion 93... Cap member engaging portion 101, 104A... Sealing member main body portion 101A, 105A... Projection Part 102, 106A Linear member 103 Sealing member engaging portion 107A Sealing member engaging shaft 108A Protruding portion 109A Recess 521 Mounting hole 531, 531A First support Part 532, 532A... Second support part 541, 541F... Attached part main body 541A, 541G... Shaft insertion hole 541B, 541H... First engagement part insertion hole 541C, 541I... Second engagement part Insertion hole 541D Groove 541E Engaged portion 541J Engagement shaft portion insertion hole 542, 542A Connection portion 543, 543A Engagement protrusion 611 First substrate 612 Second substrate , 612A... locking hole, 631... operated portion, 931... first engaging portion, 932... second engaging portion.

Claims (6)

周面部に貫通孔が設けられた筒状ケースと、
前記筒状ケースに収容され、物理量を検出するセンサモジュールと、
前記センサモジュールが取り付けられ、前記筒状ケースの一方の開口を覆うように配置される継手と、
前記筒状ケースの他方の開口を覆うように配置される蓋部材と、
前記センサモジュールで検出された信号を受信する電子回路部および前記電子回路部を調整する電子調整部を有し、前記筒状ケースに収容される回路基板と、
前記貫通孔を覆うように取り付けられるキャップ部材と、
前記貫通孔と前記キャップ部材との間を封止する封止部材と、を備え、
前記電子調整部は、前記貫通孔に対応する位置に配置される被操作部を有し、
前記蓋部材は、前記回路基板を支持する回路基板支持部と、前記キャップ部材が着脱可能に取り付けられる被取付部とを有し、
前記キャップ部材は、前記筒状ケースの外側に配置され前記貫通孔を覆うキャップ部材本体部と、前記キャップ部材本体部の底面から延設されたキャップ部材軸部と、前記キャップ部材軸部の先端から前記キャップ部材軸部の径方向に延設されたキャップ部材係合部と、を有し、
前記封止部材は、環状に設けられ前記キャップ部材軸部を囲うように配置される封止部材本体部と、前記封止部材本体部から延設された線状部材と、前記線状部材の先端に設けられた封止部材係合部と、を有し、
前記被取付部には、前記キャップ部材軸部が挿通可能に構成された軸部挿通孔と、前記キャップ部材係合部が挿通可能に構成され前記軸部挿通孔と連続する係合部挿通孔と、前記線状部材が配置され前記軸部挿通孔と連続する溝部とが設けられ、
前記キャップ部材は、第1姿勢と第2姿勢とに回動可能に前記被取付部に軸支され、前記第1姿勢において前記キャップ部材係合部が前記係合部挿通孔と挿通可能とされ、前記第2姿勢において前記キャップ部材係合部が前記被取付部と係合し、
前記第1姿勢において、前記線状部材は、前記キャップ部材係合部よりも、前記キャップ部材軸部の方向から見て前記第1姿勢から前記第2姿勢へと回転する回転方向側に配置されている
ことを特徴とする物理量測定装置。
a cylindrical case having a through hole in the peripheral surface;
a sensor module that is housed in the tubular case and detects a physical quantity;
a joint to which the sensor module is attached and arranged so as to cover one opening of the cylindrical case;
a lid member arranged to cover the other opening of the cylindrical case;
a circuit board housed in the tubular case, the circuit board having an electronic circuit unit for receiving a signal detected by the sensor module and an electronic adjustment unit for adjusting the electronic circuit unit;
a cap member attached to cover the through hole;
a sealing member that seals between the through hole and the cap member;
The electronic adjustment section has an operated section arranged at a position corresponding to the through hole,
The lid member has a circuit board supporting portion that supports the circuit board and an attached portion to which the cap member is detachably attached,
The cap member includes a cap member main body portion arranged outside the cylindrical case and covering the through hole, a cap member shaft portion extending from a bottom surface of the cap member main body portion, and a tip end of the cap member shaft portion. a cap member engaging portion extending in the radial direction of the cap member shaft portion from
The sealing member includes a sealing member main body provided in an annular shape and arranged so as to surround the cap member shaft, a linear member extending from the sealing member main body, and the linear member. and a sealing member engaging portion provided at the tip,
The mounting portion includes a shaft insertion hole through which the cap member shaft can be inserted, and an engaging portion insertion hole through which the cap member engaging portion can be inserted and which is continuous with the shaft insertion hole. and a groove portion in which the linear member is arranged and which is continuous with the shaft portion insertion hole,
The cap member is rotatably supported by the mounting portion in a first posture and a second posture, and the cap member engaging portion can be inserted through the engaging portion insertion hole in the first posture. , the cap member engaging portion engages with the attached portion in the second posture;
In the first posture, the linear member is arranged on the side of the cap member engaging portion in the rotational direction of rotation from the first posture to the second posture when viewed from the direction of the cap member shaft portion. A physical quantity measuring device characterized by:
周面部に貫通孔が設けられた筒状ケースと、
前記筒状ケースに収容され、物理量を検出するセンサモジュールと、
前記センサモジュールが取り付けられ、前記筒状ケースの一方の開口を覆うように配置される継手と、
前記筒状ケースの他方の開口を覆うように配置される蓋部材と、
前記センサモジュールで検出された信号を受信する電子回路部および前記電子回路部を調整する電子調整部を有し、前記筒状ケースに収容される回路基板と、
前記貫通孔を覆うように取り付けられるキャップ部材と、
前記貫通孔と前記キャップ部材との間を封止する封止部材と、を備え、
前記電子調整部は、前記貫通孔に対応する位置に配置される被操作部を有し、
前記蓋部材は、前記回路基板を支持する回路基板支持部と、前記キャップ部材が着脱可能に取り付けられる被取付部とを有し、
前記キャップ部材は、前記筒状ケースの外側に配置され前記貫通孔を覆うキャップ部材本体部と、前記キャップ部材本体部の底面から延設されたキャップ部材軸部と、前記キャップ部材軸部の先端から前記キャップ部材軸部の径方向に延設されたキャップ部材係合部と、を有し、
前記封止部材は、環状に設けられ前記キャップ部材軸部を囲うように配置される封止部材本体部と、前記封止部材本体部から延設された線状部材と、前記線状部材の先端に設けられ前記線状部材と交差する方向に沿って配置された封止部材係合軸部と、を有し、
前記被取付部には、前記キャップ部材軸部が挿通可能に構成された軸部挿通孔と、前記キャップ部材係合部が挿通可能に構成され前記軸部挿通孔と連続する係合部挿通孔と、前記線状部材が配置され前記封止部材係合軸部が挿通可能な係合軸部挿通孔とが設けられ、
前記キャップ部材は、第1姿勢と第2姿勢とに回動可能に前記被取付部に軸支され、前記第1姿勢において前記キャップ部材係合部が前記係合部挿通孔と挿通可能とされ、前記第2姿勢において前記キャップ部材係合部が前記被取付部と係合する
ことを特徴とする物理量測定装置。
a cylindrical case having a through hole in the peripheral surface;
a sensor module that is housed in the tubular case and detects a physical quantity;
a joint to which the sensor module is attached and arranged so as to cover one opening of the cylindrical case;
a lid member arranged to cover the other opening of the cylindrical case;
a circuit board housed in the tubular case, the circuit board having an electronic circuit unit for receiving a signal detected by the sensor module and an electronic adjustment unit for adjusting the electronic circuit unit;
a cap member attached to cover the through hole;
a sealing member that seals between the through hole and the cap member;
The electronic adjustment section has an operated section arranged at a position corresponding to the through hole,
The lid member has a circuit board supporting portion that supports the circuit board and an attached portion to which the cap member is detachably attached,
The cap member includes a cap member main body portion arranged outside the cylindrical case and covering the through hole, a cap member shaft portion extending from a bottom surface of the cap member main body portion, and a tip end of the cap member shaft portion. a cap member engaging portion extending in the radial direction of the cap member shaft portion from
The sealing member includes a sealing member main body provided in an annular shape and arranged so as to surround the cap member shaft, a linear member extending from the sealing member main body, and the linear member. a sealing member engaging shaft portion provided at the tip and arranged along a direction intersecting with the linear member;
The mounting portion includes a shaft insertion hole through which the cap member shaft can be inserted, and an engaging portion insertion hole through which the cap member engaging portion can be inserted and which is continuous with the shaft insertion hole. and an engaging shaft portion insertion hole through which the linear member is arranged and through which the sealing member engaging shaft portion can be inserted,
The cap member is rotatably supported by the mounting portion in a first posture and a second posture, and the cap member engaging portion can be inserted through the engaging portion insertion hole in the first posture. , the physical quantity measuring device, wherein the cap member engaging portion engages with the attached portion in the second posture.
請求項2に記載の物理量測定装置において、
前記封止部材係合軸部の一方の端部には、先端に向かうにしたがって径が小さくなる突出部が形成され、
前記封止部材係合軸部の他方の端部には、軸方向に沿って凹部が形成されている
ことを特徴とする物理量測定装置。
In the physical quantity measuring device according to claim 2,
At one end of the sealing member engaging shaft portion, a projecting portion whose diameter decreases toward the tip is formed,
A physical quantity measuring device, wherein a concave portion is formed in the other end portion of the sealing member engaging shaft portion along the axial direction.
請求項1から請求項3のいずれか一項に記載の物理量測定装置において、
前記被取付部には、前記貫通孔に向かって突出し、前記貫通孔と係合する係合凸部が設けられる
ことを特徴とする物理量測定装置。
In the physical quantity measuring device according to any one of claims 1 to 3,
The physical quantity measuring device, wherein the attached portion is provided with an engaging convex portion that protrudes toward the through hole and engages with the through hole.
請求項1から請求項4のいずれか一項に記載の物理量測定装置において、
前記キャップ部材係合部は、第1係合部と、前記キャップ部材軸部を挟んで前記第1係合部とは反対側に設けられ前記第1係合部と大きさが異なる第2係合部とを有し、
前記係合部挿通孔は、前記第1係合部に対応する第1係合部挿通孔と、前記軸部挿通孔を挟んで前記第1係合部挿通孔とは反対側に設けられ前記第2係合部に対応する第2係合部挿通孔と、を有する
ことを特徴とする物理量測定装置。
In the physical quantity measuring device according to any one of claims 1 to 4,
The cap member engaging portion includes a first engaging portion and a second engaging portion provided on the opposite side of the cap member shaft portion from the first engaging portion and having a size different from that of the first engaging portion. having a joint and
The engaging portion insertion hole is provided on a side opposite to the first engaging portion insertion hole with the first engagement portion insertion hole corresponding to the first engagement portion and the shaft portion insertion hole interposed therebetween. and a second engaging portion insertion hole corresponding to the second engaging portion.
請求項1から請求項5のいずれか一項に記載の物理量測定装置において、
前記キャップ部材本体部は五角形状に形成される
ことを特徴とする物理量測定装置。
In the physical quantity measuring device according to any one of claims 1 to 5,
A physical quantity measuring device, wherein the cap member main body is formed in a pentagonal shape.
JP2020176653A 2020-03-26 2020-10-21 Physical quantity measuring device Active JP7295079B2 (en)

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KR1020210035658A KR20210120857A (en) 2020-03-26 2021-03-19 Physical quantity measuring device
US17/208,122 US11513021B2 (en) 2020-03-26 2021-03-22 Physical quantity measuring device with improved cap sealing
EP21164498.4A EP3885730B1 (en) 2020-03-26 2021-03-24 Physical quantity measuring device
CN202110317677.8A CN113447195A (en) 2020-03-26 2021-03-25 Physical quantity measuring device
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JP2015184259A (en) 2014-03-26 2015-10-22 長野計器株式会社 Physical quantity measurement device and manufacturing method of the same

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JP6841794B2 (en) * 2018-06-26 2021-03-10 長野計器株式会社 Physical quantity measuring device and manufacturing method of physical quantity measuring device

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JP2000121474A (en) 1998-10-20 2000-04-28 Hitachi Ltd Fitting construction for sensor for car and semiconductor pressure sensor
JP2010519524A (en) 2007-02-23 2010-06-03 ローベルト ボツシユ ゲゼルシヤフト ミツト ベシユレンクテル ハフツング Accident sensor
US20130033841A1 (en) 2011-08-01 2013-02-07 Honeywell International Inc. Protective cover for pressure sensor assemblies
JP2015184259A (en) 2014-03-26 2015-10-22 長野計器株式会社 Physical quantity measurement device and manufacturing method of the same

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