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JP2012199109A - Electromagnetic switching device - Google Patents

Electromagnetic switching device Download PDF

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JP2012199109A
JP2012199109A JP2011063219A JP2011063219A JP2012199109A JP 2012199109 A JP2012199109 A JP 2012199109A JP 2011063219 A JP2011063219 A JP 2011063219A JP 2011063219 A JP2011063219 A JP 2011063219A JP 2012199109 A JP2012199109 A JP 2012199109A
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contact
movable
movable contact
fixed
shaft
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Sumihisa Fukuda
純久 福田
Katsuya Konama
克哉 粉間
Yoji Ikeda
陽司 池田
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Panasonic Corp
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Panasonic Corp
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Abstract

PROBLEM TO BE SOLVED: To provide an electromagnetic switching device capable of downsizing and suppressing occurence of noise due to vibration of a movable contactor.SOLUTION: The electromagnetic switching device includes a contact device 1 having the movable contactor 4 on which a pair of fix contacts 3a, 3a and a movable contact 4a countering each of the fix contacts 3a are provided on one surface side thereof and a movable shaft 5 holding the movable contactor 4 while being inserted in an insertion hole 4c of the movable contactor 4, an electromagnet device 2, connected to the movable shaft 5, which causes the movable contactor 4 to be moved so that the fix contact 3a and the movable contact 4a come in and out of contact with each other, and a vibration suppression part 8 suppressing vibration of the movable contactor 4 by causing the movable contactor 4 and a shaft 5a of the movable shaft 5 to contact with each other.

Description

本発明は、電磁石装置の動作により開閉する接点装置を備えた電磁開閉装置に関するものである。   The present invention relates to an electromagnetic switching device including a contact device that opens and closes by an operation of an electromagnet device.

従来から、励磁用巻線を有した電磁石装置と電磁石装置の動作に連動して開閉する接点装置とを備えた電磁開閉装置が知られている(特許文献1,2)。   2. Description of the Related Art Conventionally, an electromagnetic switching device including an electromagnet device having an exciting winding and a contact device that opens and closes in conjunction with the operation of the electromagnet device is known (Patent Documents 1 and 2).

特許文献1の電磁開閉装置10は、図7に示すように、一対の固定接点3a,3aと、一表面側において各固定接点3aの各々に対向して配置される可動接点(図示されていない)を有する可動接触子4と、可動接触子4の固定接点3a側への駆動に用いられる可動軸5とを有する接点装置1を備えている。また、電磁開閉装置10は、励磁用巻線2aへの通電に伴い生ずる電磁力により可動軸5を介して可動接触子4を移動させる可動鉄芯25を駆動させ固定接点3a,3aと上記可動接点とを接離させる電磁石装置2を備えている。   As shown in FIG. 7, the electromagnetic switching device 10 of Patent Document 1 includes a pair of fixed contacts 3a and 3a and movable contacts (not shown) arranged to face each of the fixed contacts 3a on one surface side. ) And a movable shaft 5 used for driving the movable contact 4 to the fixed contact 3a side. Further, the electromagnetic switching device 10 drives the movable iron core 25 that moves the movable contact 4 via the movable shaft 5 by the electromagnetic force generated when the excitation winding 2a is energized to drive the fixed contacts 3a, 3a and the movable contacts. An electromagnet device 2 for contacting and separating the contact is provided.

なお、電磁開閉装置10は、可動接触子4を固定接点3a側に付勢する接圧ばね6と、可動接触子4を固定接点3a側から離れる方向に付勢する復帰ばね27とを備えている。また、電磁開閉装置10は、可動接触子4を収容する収容ケース7と継鉄板26Aとガイド筒28と連結体38とで囲まれた空間を気密空間となるようにそれぞれを接合している。   The electromagnetic switching device 10 includes a contact pressure spring 6 that biases the movable contact 4 toward the fixed contact 3a, and a return spring 27 that biases the movable contact 4 in a direction away from the fixed contact 3a. Yes. Further, the electromagnetic switching device 10 is joined so that the space surrounded by the housing case 7 that houses the movable contact 4, the yoke plate 26 </ b> A, the guide tube 28, and the coupling body 38 becomes an airtight space.

電磁石装置2は、励磁用巻線2aが巻装されたコイルボビン21と、コイルボビン21を包囲する継鉄26とを備えている。継鉄26は、コイルボビン21の上端面側に当接する継鉄板26Aと、コイルボビン21の下端面側を当接させる継鉄部26Bとを備えている。   The electromagnet device 2 includes a coil bobbin 21 around which the excitation winding 2 a is wound, and a yoke 26 surrounding the coil bobbin 21. The yoke 26 includes a yoke plate 26 </ b> A that contacts the upper end surface side of the coil bobbin 21 and a yoke portion 26 </ b> B that contacts the lower end surface side of the coil bobbin 21.

特許文献1の電磁開閉装置10では、可動鉄芯25の駆動により可動鉄芯25が固定鉄芯24に衝突する際、衝突の衝撃が固定鉄芯24を固定するキャップ45および継鉄板26Aに伝播されることを低減する緩衝部材61を設けることで異音の発生を低減できる、としている。   In the electromagnetic switch 10 of Patent Document 1, when the movable iron core 25 collides with the fixed iron core 24 by driving the movable iron core 25, the impact of the collision propagates to the cap 45 and the yoke plate 26A that fix the fixed iron core 24. The generation of abnormal noise can be reduced by providing the buffer member 61 that reduces the occurrence of noise.

ところで、上述の電磁開閉装置10では、一対の固定接点3a,3aと上記可動接点とが当接した場合、一対の固定接点3a,3aと上記可動接点側とが2点接触となる。この場合、電磁開閉装置10の可動接触子4は、固定接点3aが当接した2つの接触部を通る直線の軸回りに揺動する振動が生ずる場合がある。そして、電磁開閉装置10は、可動接触子4の振動により、異音が発生する恐れがある。   In the electromagnetic switching device 10 described above, when the pair of fixed contacts 3a, 3a and the movable contact come into contact with each other, the pair of fixed contacts 3a, 3a and the movable contact side are in a two-point contact. In this case, the movable contact 4 of the electromagnetic switching device 10 may be oscillated around a straight axis passing through two contact portions with which the fixed contact 3a is in contact. The electromagnetic switching device 10 may generate noise due to the vibration of the movable contact 4.

特許文献2の電磁開閉装置10では、図8に示すように、励磁用巻線2aへの通電により可動鉄芯25が固定鉄芯24側に移動して、接圧ばね6のばね力により固定接点3aと可動接点4aとが当接し、可動接触子4と可動接触子4に当接する可動軸5側とが離れるように構成されている。特許文献2の電磁開閉装置10は、一対の固定接点3a,3aと固定接点3aの各々に対向して配置される可動接点4aとを有する可動接触子4を備えている。また、電磁開閉装置10では、固定接点3aと可動接点4aとの2点接触に加えて、所定位置に固定された固定側当接部材3tと、固定接点3aと可動接点4aとが当接している際に固定側当接部材3tに当接する可動接触子4に設けられた移動側当接部材4tとを備えている。   In the electromagnetic switching device 10 of Patent Document 2, as shown in FIG. 8, the movable iron core 25 moves to the fixed iron core 24 side by energizing the exciting winding 2 a and is fixed by the spring force of the contact pressure spring 6. The contact 3a and the movable contact 4a are in contact with each other, and the movable contact 4 and the movable shaft 5 in contact with the movable contact 4 are separated from each other. The electromagnetic switching device 10 of Patent Document 2 includes a movable contact 4 having a pair of fixed contacts 3a, 3a and a movable contact 4a disposed to face each of the fixed contacts 3a. Further, in the electromagnetic switching device 10, in addition to the two-point contact between the fixed contact 3a and the movable contact 4a, the fixed contact member 3t fixed at a predetermined position, the fixed contact 3a and the movable contact 4a contact each other. And a movable contact member 4t provided on the movable contact 4 that contacts the fixed contact member 3t.

特許文献2の電磁開閉装置10は、一対の固定接点3aと可動接点4aとが当接する2つの接触部の間からずれた位置に固定側当接部材3tと移動側当接部材4tとを設けることにより、3点接触として可動接触子4の揺動が防止される、としている。   The electromagnetic switching device 10 of Patent Document 2 is provided with a fixed contact member 3t and a moving contact member 4t at a position shifted from between two contact portions where the pair of fixed contacts 3a and the movable contact 4a contact. Thus, the swing of the movable contact 4 is prevented as a three-point contact.

特開2007−287525号公報JP 2007-287525 A 特開2010−257923号公報JP 2010-257923 A

しかしながら、特許文献2の電磁開閉装置10では、固定接点3aと可動接点4aとの当接時に、2つの上記接触部の間からずれた位置に固定側当接部材3tと移動側当接部材4tとを設けた3組目の接触部を必要とする。そのため、電磁開閉装置10は、可動接触子4を固定接点3a側へ付勢する接圧ばね6による押圧力の分散による接触抵抗の増大や固定接点3aと可動接点4aとの間の接触圧が不均一になる恐れがある。また、特許文献2の電磁開閉装置10は、3組目の接触部を形成するために可動接触子4および固定接点3a側の各々に余分なスペースを確保する必要があり、形状や構造が複雑で小型化するのが難しい、という問題がある。   However, in the electromagnetic switching device 10 of Patent Document 2, when the fixed contact 3a and the movable contact 4a are in contact with each other, the fixed contact member 3t and the movable contact member 4t are located at positions shifted from between the two contact portions. Need a third set of contact portions. Therefore, the electromagnetic switching device 10 increases the contact resistance due to the dispersion of the pressing force by the contact pressure spring 6 that biases the movable contact 4 toward the fixed contact 3a, and the contact pressure between the fixed contact 3a and the movable contact 4a. There is a risk of non-uniformity. Further, the electromagnetic switching device 10 of Patent Document 2 needs to secure an extra space on each of the movable contact 4 and the fixed contact 3a side in order to form the third set of contact portions, and the shape and structure are complicated. There is a problem that it is difficult to reduce the size.

本発明は上記事由に鑑みて為されたものであり、その目的は、小型化が可能で、可動接触子の振動に伴う異音の発生を抑制することが可能な電磁開閉装置を提供することにある。   The present invention has been made in view of the above-mentioned reasons, and an object thereof is to provide an electromagnetic switching device that can be reduced in size and can suppress the generation of abnormal noise due to vibration of a movable contact. It is in.

本発明の電磁開閉装置は、一対の固定接点と該固定接点の各々に対向する可動接点が一表面側に設けられた可動接触子と該可動接触子の挿通孔に挿通され上記可動接触子を保持する可動軸とを有する接点装置と、上記可動軸と連結され上記可動接触子を移動させて上記固定接点と上記可動接点とを各々に接離させる電磁石装置と、上記可動軸の軸部と上記可動接触子とを当接させて上記可動接触子の振動を抑制する振動抑制部を備えることを特徴とする。   The electromagnetic switching device according to the present invention includes a pair of fixed contacts and a movable contact facing each of the fixed contacts, the movable contact provided on one surface side, and the movable contact inserted through the insertion hole of the movable contact. A contact device having a movable shaft to be held; an electromagnet device connected to the movable shaft to move the movable contact to bring the fixed contact and the movable contact into and away from each other; and a shaft portion of the movable shaft; A vibration suppression unit that suppresses vibration of the movable contact by contacting the movable contact is provided.

この電磁開閉装置において、上記振動抑制部は、上記挿通孔における周部において上記可動接触子の厚み方向に突出する突出部であることが好ましい。   In this electromagnetic switching device, it is preferable that the vibration suppressing portion is a protruding portion that protrudes in the thickness direction of the movable contact at a peripheral portion of the insertion hole.

この電磁開閉装置において、上記振動抑制部は、上記可動接触子の厚み方向において軸径を変化させた上記軸部であることが好ましい。   In this electromagnetic switching device, it is preferable that the vibration suppressing portion is the shaft portion whose shaft diameter is changed in the thickness direction of the movable contact.

本発明の電磁開閉装置においては、小型化が可能で、可動接触子の振動に伴う異音の発生を抑制することが可能となる。   In the electromagnetic switching device of the present invention, it is possible to reduce the size, and it is possible to suppress the generation of abnormal noise accompanying the vibration of the movable contact.

実施形態1の電磁開閉装置の断面図である。It is sectional drawing of the electromagnetic switching device of Embodiment 1. FIG. 同上の電磁開閉装置の要部を示し、(a)は断面図、(b)は上面図である。The principal part of an electromagnetic switch apparatus same as the above is shown, (a) is sectional drawing, (b) is a top view. 同上の電磁開閉装置の要部の分解斜視図である。It is a disassembled perspective view of the principal part of an electromagnetic switch apparatus same as the above. 同上の電磁開閉装置の分解斜視図である。It is a disassembled perspective view of an electromagnetic switching device same as the above. 実施形態2の電磁開閉装置の要部の断面図である。It is sectional drawing of the principal part of the electromagnetic switching device of Embodiment 2. 実施形態3の電磁開閉装置の要部の断面図である。It is sectional drawing of the principal part of the electromagnetic switching device of Embodiment 3. 従来例の電磁開閉装置の概略断面図である。It is a schematic sectional drawing of the electromagnetic switching device of a prior art example. 従来例の別の電磁開閉装置を示し、(a)は縦断面図、(b)は(a)のAA断面図、(c)は(b)の要部を示す上面図である。The other electromagnetic switchgear of a prior art example is shown, (a) is a longitudinal cross-sectional view, (b) is AA sectional drawing of (a), (c) is a top view which shows the principal part of (b).

(実施形態1)
本実施形態の電磁開閉装置10について、図1〜図4を参照しながら説明する。
(Embodiment 1)
The electromagnetic switching device 10 of this embodiment is demonstrated referring FIGS. 1-4.

電磁開閉装置10は、図1に示すように、一対の固定接点3a,3aと固定接点3aの各々に対向する可動接点4aが一表面側に設けられた可動接触子4と該可動接触子4の挿通孔4cに挿通され可動接触子4を保持する可動軸5とを有する接点装置1を備えている。また、電磁開閉装置10は、可動軸5と連結され可動接触子4を移動させて固定接点3aと可動接点4aとを各々に接離させる電磁石装置2を備えている。特に、電磁開閉装置10は、可動軸5の軸部5aと可動接触子4とを当接させて可動接触子4の振動を抑制する振動抑制部8を備えている。以下、各図の紙面の上下左右を上下左右として、各構成をより詳細に説明する。   As shown in FIG. 1, the electromagnetic switching device 10 includes a pair of fixed contacts 3 a, 3 a and a movable contact 4 provided with a movable contact 4 a facing each of the fixed contacts 3 a on one surface side, and the movable contact 4. A contact device 1 having a movable shaft 5 that is inserted into the insertion hole 4c and holds the movable contact 4 is provided. The electromagnetic switching device 10 includes an electromagnet device 2 that is connected to the movable shaft 5 and moves the movable contact 4 to contact and separate the fixed contact 3a and the movable contact 4a from each other. In particular, the electromagnetic switching device 10 includes a vibration suppressing unit 8 that suppresses vibration of the movable contact 4 by bringing the shaft 5 a of the movable shaft 5 into contact with the movable contact 4. In the following, each configuration will be described in more detail with the upper, lower, left, and right sides of each drawing as the top, bottom, left, and right.

本実施形態の電磁開閉装置10は、中空箱型の外ケース11内に、接点装置1と電磁石装置2とを一体に組み合わせて収納している。   The electromagnetic switching device 10 of the present embodiment accommodates the contact device 1 and the electromagnet device 2 in an integral combination in a hollow box-type outer case 11.

電磁石装置2は、励磁用巻線2aと励磁用巻線2aにより生じる磁束を通す材料(たとえば、ケイ素鋼、パーマロイやフェライトなど)からなる固定鉄芯24とを備えた固定部2bと、固定鉄芯24に突き合わされて配置される可動部2cとを備えている。固定部2bは、励磁用巻線2aが巻装された円筒状の合成樹脂材料からなるコイルボビン21と、コイルボビン21を包囲する磁性金属材料(たとえば、鉄)からなる継鉄26と、コイルボビン21の内部に配置される円柱状の固定鉄芯24とを備えている。可動部2cは、コイルボビン21の内部において、コイルボビン21の口軸方向(図1の上下方向)に固定鉄芯24と並んで配置される円柱状の可動鉄芯25を備えている。   The electromagnet device 2 includes a fixed portion 2b including an excitation winding 2a and a fixed iron core 24 made of a material (for example, silicon steel, permalloy, ferrite, etc.) through which magnetic flux generated by the excitation winding 2a passes. And a movable portion 2c disposed so as to face the core 24. The fixed portion 2b includes a coil bobbin 21 made of a cylindrical synthetic resin material around which the excitation winding 2a is wound, a yoke 26 made of a magnetic metal material (for example, iron) surrounding the coil bobbin 21, and a coil bobbin 21 A columnar fixed iron core 24 disposed inside is provided. The movable portion 2 c includes a columnar movable iron core 25 that is arranged alongside the fixed iron core 24 in the mouth axis direction of the coil bobbin 21 (up and down direction in FIG. 1) inside the coil bobbin 21.

可動鉄芯25は、固定鉄芯24と同様に、励磁用巻線2aにより生ずる磁束を通す材料(たとえば、ケイ素鋼、パーマロイやフェライトなど)により形成している。電磁石装置2は、継鉄26、固定鉄芯24および可動鉄芯25が、励磁用巻線2aにより生じる磁束を通す磁路を形成する。なお、コイルボビン21は、励磁用巻線2aが巻回される円筒部21cと、円筒部21cの両端部から外方に突出する鍔部21a,21bとを有している。   Similar to the fixed iron core 24, the movable iron core 25 is made of a material (for example, silicon steel, permalloy, ferrite, or the like) through which the magnetic flux generated by the exciting winding 2a passes. In the electromagnet device 2, the yoke 26, the fixed iron core 24, and the movable iron core 25 form a magnetic path through which the magnetic flux generated by the exciting winding 2a passes. The coil bobbin 21 has a cylindrical portion 21c around which the exciting winding 2a is wound, and flanges 21a and 21b that protrude outward from both ends of the cylindrical portion 21c.

また、電磁石装置2は、励磁用巻線2aの両端がコイルボビン21の鍔部21aに設けられる一対の端子部121,121と各々電気的に接続している(図4(b)を参照)。また、各端子部121は、リード線122を介してコイル端子23と各々電気的に接続している(図4(c)を参照)。コイル端子23は、導電性材料(たとえば、銅や鉄など)により形成され、半田などによりリード線122と電気的に接続される基部23aと、基部23aから略垂直に延設される端子部23bとを備えている。   The electromagnet device 2 has both ends of the excitation winding 2a electrically connected to a pair of terminal portions 121 and 121 provided on the flange portion 21a of the coil bobbin 21 (see FIG. 4B). Each terminal portion 121 is electrically connected to the coil terminal 23 via a lead wire 122 (see FIG. 4C). The coil terminal 23 is formed of a conductive material (for example, copper or iron), and a base portion 23a that is electrically connected to the lead wire 122 by solder or the like, and a terminal portion 23b that extends substantially vertically from the base portion 23a. And.

電磁開閉装置10における継鉄26は、コイルボビン21の上端面側に当接する矩形板状の継鉄板26A(図3を参照)と、コイルボビン21の下端面側を当接させるC字形状の継鉄部26B(図4(b)を参照)とで構成している。なお、継鉄部26Bは、1枚の板を折曲加工することにより連続一体に形成することができる。   The yoke 26 in the electromagnetic switching device 10 is a rectangular plate-shaped yoke plate 26 </ b> A (see FIG. 3) that abuts on the upper end surface side of the coil bobbin 21 and a C-shaped yoke that abuts the lower end surface side of the coil bobbin 21. 26B (see FIG. 4B). In addition, the yoke part 26B can be formed continuously and integrally by bending one plate.

さらに、電磁石装置2の固定部2bは、固定鉄芯24および可動鉄芯25とコイルボビン21との間に、非磁性材料からなり上端に開口部28cが形成された有底円筒状のガイド筒28を備えている(図3を参照)。ガイド筒28は、円筒部28bと、円筒部28bの上端に設けられた鍔部28aとを備えている。電磁石装置2は、コイルボビン21の円筒部21cの内側に設けられたガイド筒28の内部に、固定鉄芯24と可動鉄芯25とを収納している。なお、固定鉄芯24は、ガイド筒28の円筒部28bにおいて、ガイド筒28の開口部28c側に配置している。   Further, the fixed portion 2b of the electromagnet device 2 includes a bottomed cylindrical guide tube 28 made of a nonmagnetic material and having an opening 28c at the upper end between the fixed iron core 24 and the movable iron core 25 and the coil bobbin 21. (See FIG. 3). The guide tube 28 includes a cylindrical portion 28b and a flange portion 28a provided at the upper end of the cylindrical portion 28b. The electromagnet device 2 houses a fixed iron core 24 and a movable iron core 25 inside a guide cylinder 28 provided inside the cylindrical portion 21 c of the coil bobbin 21. The fixed iron core 24 is disposed on the opening 28c side of the guide tube 28 in the cylindrical portion 28b of the guide tube 28.

さらに、固定鉄芯24および可動鉄芯25は、それぞれ外径がガイド筒28の内径よりも若干小さい円柱状に形成している。また、可動鉄芯25は、ガイド筒28の軸方向に沿って移動することができるように構成している。可動鉄芯25の移動範囲は、固定鉄芯24から離れた初期位置と、固定鉄芯24に当接する当接位置との間に設定している。ガイド筒28には、可動鉄芯25を初期位置に復帰させる向きのばね力を有したコイルばねからなる復帰ばね27を収納している。   Furthermore, the fixed iron core 24 and the movable iron core 25 are each formed in a columnar shape whose outer diameter is slightly smaller than the inner diameter of the guide cylinder 28. Further, the movable iron core 25 is configured to be movable along the axial direction of the guide tube 28. The moving range of the movable iron core 25 is set between an initial position away from the fixed iron core 24 and a contact position where the movable iron core 24 contacts the fixed iron core 24. The guide cylinder 28 accommodates a return spring 27 made of a coil spring having a spring force in a direction to return the movable iron core 25 to the initial position.

復帰ばね27は、円柱状の固定鉄芯24の軸方向に形成される挿通孔24bに挿通している。復帰ばね27は、復帰ばね27の下端が可動鉄芯25の上面側と当接し、復帰ばね27の上端が後述するキャップ部材45の下面側と当接する。更に、復帰ばね27は、可動鉄芯25とキャップ部材45との間に圧縮状態で設けられており、可動鉄芯25を下側に弾性付勢する。   The return spring 27 is inserted through an insertion hole 24 b formed in the axial direction of the cylindrical fixed iron core 24. In the return spring 27, the lower end of the return spring 27 is in contact with the upper surface side of the movable iron core 25, and the upper end of the return spring 27 is in contact with the lower surface side of a cap member 45 described later. Further, the return spring 27 is provided in a compressed state between the movable iron core 25 and the cap member 45, and elastically biases the movable iron core 25 downward.

復帰ばね27は、可動鉄芯25が当接位置に移動したときに、復帰ばね27が圧縮されて復帰ばね27の全体が挿通孔24b内に収まる。そのため、復帰ばね27は、固定鉄芯24への可動鉄芯25の当接を妨げることがない。   When the movable iron core 25 moves to the contact position, the return spring 27 is compressed and the entire return spring 27 is accommodated in the insertion hole 24b. Therefore, the return spring 27 does not prevent the movable iron core 25 from coming into contact with the fixed iron core 24.

さらに、ガイド筒28の底部側には、弾性を有するゴム材料などからなり円板状に形成された第1ダンパ部29を設けている。第1ダンパ部29は、可動鉄芯25が初期位置に復帰する際、可動鉄芯25からガイド筒28の底面に伝わる衝撃を吸収することができる。同様に、可動鉄芯25の上面には、弾性を有するゴム材料などからなり円板状に形成された第2ダンパ部22を設けている。第2ダンパ部22は、可動鉄芯25が当接位置に移動する際に可動鉄芯25から固定鉄芯24に伝わる衝撃を緩和させることができる。   Further, a first damper portion 29 made of a rubber material having elasticity and formed in a disc shape is provided on the bottom side of the guide tube 28. The first damper portion 29 can absorb the impact transmitted from the movable iron core 25 to the bottom surface of the guide tube 28 when the movable iron core 25 returns to the initial position. Similarly, on the upper surface of the movable iron core 25, a second damper portion 22 made of a rubber material having elasticity and formed in a disk shape is provided. The second damper portion 22 can alleviate an impact transmitted from the movable iron core 25 to the fixed iron core 24 when the movable iron core 25 moves to the contact position.

また、継鉄板26Aは、中央部に固定鉄芯24が挿通される挿通孔26cが貫設されている(図3を参照)。さらに、継鉄板26Aは、挿通孔26cの周部に継鉄板26Aの上面側から窪んだ凹部26aを備えている。固定鉄芯24は、上端側に設けられた鍔部24aを継鉄板26Aの上面から上方に突出させるように挿通孔26cに挿通された状態で継鉄板26Aに固定している。さらに、固定部2bは、継鉄板26Aの上面側に、金属板からなる円盤状のキャップ部材45を有している。キャップ部材45は、固定鉄芯24の鍔部24aを継鉄板26Aの凹部26aとの間で収納する空間を形成する凸部45aと、継鉄板26Aに固定する周部45bとを備えている。キャップ部材45は、挿通孔26cを覆うように周部45bを継鉄板26Aに固着することにより、継鉄26に取り付けられている。すなわち、キャップ部材45は、固定鉄芯24の鍔部24aを継鉄板26Aの上面側の略中央に形成された凹部26aとキャップ部材45の凸部45aとの間で固定している。   Further, the yoke plate 26A has an insertion hole 26c through which the fixed iron core 24 is inserted in the center (see FIG. 3). Furthermore, the yoke plate 26A is provided with a recess 26a that is recessed from the upper surface side of the yoke plate 26A in the peripheral portion of the insertion hole 26c. The fixed iron core 24 is fixed to the yoke plate 26A in a state of being inserted into the insertion hole 26c so that the flange 24a provided on the upper end side protrudes upward from the upper surface of the yoke plate 26A. Furthermore, the fixing | fixed part 2b has the disk-shaped cap member 45 which consists of a metal plate in the upper surface side of 26 A of yoke plates. The cap member 45 includes a convex portion 45a that forms a space for housing the flange portion 24a of the fixed iron core 24 with the concave portion 26a of the yoke plate 26A, and a peripheral portion 45b that is fixed to the yoke plate 26A. The cap member 45 is attached to the yoke 26 by fixing the peripheral portion 45b to the yoke plate 26A so as to cover the insertion hole 26c. That is, the cap member 45 fixes the flange portion 24a of the fixed iron core 24 between the concave portion 26a formed at the approximate center on the upper surface side of the yoke plate 26A and the convex portion 45a of the cap member 45.

ガイド筒28は、鍔部28aが継鉄板26Aの下面における挿通孔26cの周囲に固着している。また、電磁石装置2は、コイルボビン21の下端側の内周面とガイド筒28の外周面との間の隙間部分に、磁性材料からなる円筒状の軸受筒26Dを保持する継鉄部26Bの保持孔26b側から嵌合させている。電磁石装置2は、ガイド筒28および軸受筒26Dが継鉄26、固定鉄芯24、可動鉄芯25と共に磁気回路を形成している。   The guide tube 28 has a flange portion 28a fixed around the insertion hole 26c on the lower surface of the yoke plate 26A. Further, the electromagnet device 2 holds the yoke portion 26B that holds the cylindrical bearing cylinder 26D made of a magnetic material in a gap portion between the inner peripheral surface on the lower end side of the coil bobbin 21 and the outer peripheral surface of the guide cylinder 28. It is made to fit from the hole 26b side. In the electromagnet device 2, the guide cylinder 28 and the bearing cylinder 26 </ b> D form a magnetic circuit together with the yoke 26, the fixed iron core 24, and the movable iron core 25.

次に、外ケース11内に収納された電磁開閉装置10の接点装置1は、耐熱性材料(たとえば、セラミックス材料など)により下面が開口する有底筒状に形成された内ケース7aとして収容ケース7を備えている。収容ケース7は、収容ケース7の底部の2箇所に端子孔31a,31aを備えている。各端子孔31aには、金属材料(たとえば、銅など)からなり円柱状に形成された固定端子台33が各々挿通されている。一対の固定端子台33,33は、各固定端子台33の先端部に固定接点3aが各々設けている。また、固定端子台33には、鍔体33aを備えており、鍔体33aと収容ケース7とを、ろう付けしている。さらに、各固定端子台33には、リード端子(図示していない)を螺子止めできるようにねじ孔33bを好適に形成している。   Next, the contact device 1 of the electromagnetic switching device 10 housed in the outer case 11 is a housing case as an inner case 7a formed in a bottomed cylindrical shape whose lower surface is opened by a heat-resistant material (for example, a ceramic material). 7 is provided. The housing case 7 includes terminal holes 31 a and 31 a at two locations on the bottom of the housing case 7. A fixed terminal block 33 made of a metal material (for example, copper) and formed in a cylindrical shape is inserted into each terminal hole 31a. In the pair of fixed terminal blocks 33, 33, a fixed contact 3 a is provided at the tip of each fixed terminal block 33. Further, the fixed terminal block 33 is provided with a housing 33a, and the housing 33a and the housing case 7 are brazed. Further, each fixed terminal base 33 is suitably formed with a screw hole 33b so that a lead terminal (not shown) can be screwed.

収容ケース7内には、一対の固定接点3a,3aの間に跨る形で導電材料(たとえば、銅など)からなる長板状の可動接触子4が設けられている。可動接触子4は、各固定接点3aの各々に対向するように配置される可動接点4a,4aを一表面側に設けている。可動接触子4の中央部には、可動接触子4を可動鉄芯25に連結する可動軸5の軸部5aが挿通される挿通孔4cが貫設されている。   In the housing case 7, a long plate-shaped movable contact 4 made of a conductive material (for example, copper) is provided so as to straddle between the pair of fixed contacts 3a, 3a. The movable contact 4 is provided with movable contacts 4a and 4a arranged on one surface side so as to face each of the fixed contacts 3a. An insertion hole 4 c through which the shaft portion 5 a of the movable shaft 5 that connects the movable contact 4 to the movable iron core 25 is inserted is provided at the center of the movable contact 4.

ここで、本実施形態の電磁開閉装置10の接点装置1は、可動軸5の軸部5aと可動接触子4の挿通孔4cの内側面4b側とを当接させて可動接触子4の揺動(図2(a)中の太矢印を参照)する振動を抑制する振動制御部8を備えている。接点装置1は、振動抑制部8を備えることにより、可動接触子4の一対の可動接点4a,4aを通る直線Lの軸回りに揺動する振動を抑制することができる(図2(b)を参照)。   Here, the contact device 1 of the electromagnetic switching device 10 of the present embodiment causes the shaft 5a of the movable shaft 5 and the inner surface 4b side of the insertion hole 4c of the movable contact 4 to contact each other to swing the movable contact 4. A vibration control unit 8 that suppresses vibrations that move (see thick arrows in FIG. 2A) is provided. Since the contact device 1 includes the vibration suppressing unit 8, vibration that swings around the axis of the straight line L passing through the pair of movable contacts 4 a and 4 a of the movable contact 4 can be suppressed (FIG. 2B). See).

振動抑制部8は、挿通孔4cにおける周部において可動接触子4の厚み方向に突出する突出部8aにより形成している。このような振動抑制部8は、可動接触子4の貫通孔4cを形成するに際して、バーリング加工することにより、比較的簡単に形成することができる。また、振動抑制部8は、バーリング加工により形成したものだけでなく、挿通孔4cにおける周部において可動接触子4の厚みを他よりも厚くしたものでもよい。   The vibration suppressing portion 8 is formed by a protruding portion 8a that protrudes in the thickness direction of the movable contact 4 at the peripheral portion of the insertion hole 4c. Such a vibration suppressing portion 8 can be formed relatively easily by burring when the through hole 4c of the movable contact 4 is formed. Further, the vibration suppressing portion 8 is not limited to one formed by burring, but may be one in which the thickness of the movable contact 4 is made thicker than the others in the peripheral portion of the insertion hole 4c.

振動抑制部8の突出部8aは、固定接点3aと可動接点4aとの間に流れる電流の変動などにより可動軸5の軸部5a回りに可動接触子4を回転させる力が発生した場合であっても、内側面4bと軸部5aとの摩擦力により上記回転を抑制することもできる。   The protrusion 8a of the vibration suppressing portion 8 is a case where a force for rotating the movable contact 4 around the shaft portion 5a of the movable shaft 5 is generated due to fluctuations in the current flowing between the fixed contact 3a and the movable contact 4a. However, the rotation can also be suppressed by the frictional force between the inner side surface 4b and the shaft portion 5a.

なお、振動抑制部8は、可動接触子4と一体として形成してもよいし、可動接触子4と別体に形成してもよい。また、可動接触子4は、固定接点3aと可動接点4aとを接離させるために移動する。そのため、振動抑制部8は、可動接触子4の移動に対する負荷が小さいものが好ましい。そのため、振動抑制部8は、可動軸5の軸部5aや可動接触子4の内側面4bの表面に、可動接触子4の移動に対する負荷を低減するコーティング(図示していない)を施してもよい。   The vibration suppressing unit 8 may be formed integrally with the movable contact 4 or may be formed separately from the movable contact 4. In addition, the movable contact 4 moves in order to bring the fixed contact 3a and the movable contact 4a into and out of contact with each other. Therefore, it is preferable that the vibration suppressing unit 8 has a small load with respect to the movement of the movable contact 4. Therefore, even if the vibration suppression part 8 performs the coating (not shown) which reduces the load with respect to the movement of the movable contact 4 on the surface of the shaft 5a of the movable shaft 5 and the inner surface 4b of the movable contact 4 Good.

可動接点4aは、可動接点4aの表面を固定接点3a側に凸となるように形成し可動接触子4の一表面側から突出させている。これにより、可動接点4aは、固定接点3aと可動接点4aとの接触の安定を図ることができる。なお、固定接点3aと可動接点4aとの接触の安定を図るためには、固定接点3aと可動接点4aとのいずれか一方の表面を凸状に形成してもよい。また、固定接点3aと可動接点4aは、必ずしも凸状とするだけでなく、平らに形成してもよい。固定接点3aと可動接点4aとのいずれか一方の表面を凸状に形成する場合、可動接触子4は、一対の可動接点4a,4aを通る直線の軸回りに揺動する振動が、より生じ易い傾向がある。   The movable contact 4a is formed so that the surface of the movable contact 4a is convex toward the fixed contact 3a and protrudes from one surface side of the movable contact 4. As a result, the movable contact 4a can stabilize the contact between the fixed contact 3a and the movable contact 4a. In order to stabilize the contact between the fixed contact 3a and the movable contact 4a, the surface of either the fixed contact 3a or the movable contact 4a may be formed in a convex shape. Further, the fixed contact 3a and the movable contact 4a are not necessarily convex, but may be formed flat. When the surface of either one of the fixed contact 3a and the movable contact 4a is formed in a convex shape, the movable contact 4 is more susceptible to vibration that swings about a straight axis passing through the pair of movable contacts 4a, 4a. It tends to be easy.

また、電磁開閉装置10は、アーク放電などにより固定接点3aや可動接点4aの一部が突出する経時劣化が生ずる場合も考えられる。この場合、電磁開閉装置10は、固定接点3aと可動接点4aとの通電時に生ずる電磁反発現象などにより、可動接触子4に上述の振動が生じやすくなる恐れも考えられる。本実施形態の電磁開閉装置10は、振動抑制部8を設けることにより、可動接触子4の振動を効果的に抑制することが可能となる。   In addition, the electromagnetic switching device 10 may be subject to deterioration over time in which a part of the fixed contact 3a or the movable contact 4a protrudes due to arc discharge or the like. In this case, the electromagnetic switching device 10 may be susceptible to the vibration described above in the movable contact 4 due to an electromagnetic repulsion phenomenon that occurs when the fixed contact 3a and the movable contact 4a are energized. The electromagnetic switching device 10 of the present embodiment can effectively suppress the vibration of the movable contact 4 by providing the vibration suppressing unit 8.

次に、可動軸5は、非磁性材料にて形成されており、可動鉄芯25の移動方向(図1の上下方向)に長い丸棒状に形成された軸部5aと、可動接触子4の上方にあって挿通孔4cよりも大きい頭部5bとを好適に備えている。可動軸5は、頭部5bにより可動接触子4に対して抜け止めがなされている。   Next, the movable shaft 5 is formed of a non-magnetic material, and the shaft portion 5a formed in a round bar shape that is long in the moving direction of the movable iron core 25 (vertical direction in FIG. 1), and the movable contact 4 A head portion 5b that is higher and larger than the insertion hole 4c is preferably provided. The movable shaft 5 is prevented from coming off from the movable contact 4 by the head 5b.

さらに、キャップ部材45と可動接触子4との間には、可動軸5が挿通されたコイルばねからなる接圧ばね6が設けられている。可動接触子4は、接圧ばね6のばね力によって上方に押し付けられることにより可動軸5の頭部5bに保持されることになる。また、キャップ部材45には、中央部に可動軸5の軸部5aが挿通される軸受け孔45cが貫設されている。   Further, a contact pressure spring 6 made of a coil spring through which the movable shaft 5 is inserted is provided between the cap member 45 and the movable contact 4. The movable contact 4 is held on the head 5 b of the movable shaft 5 by being pressed upward by the spring force of the contact pressure spring 6. Further, the cap member 45 has a bearing hole 45c through which the shaft portion 5a of the movable shaft 5 is inserted in the center portion.

同様に、固定鉄芯24には、円柱状の固定鉄芯24の軸方向に沿って可動軸5が貫通する貫通孔24bを貫設している。さらに、可動軸5の軸部5aは、軸受け孔45cおよび貫通孔24bを通して先端部が可動鉄芯25と結合している。可動鉄芯25には、円柱状の可動鉄芯25の軸方向に沿って結合孔25aが形成されている。可動鉄芯25は、軸部5aの先端部を結合孔25aに挿入して固定する形で可動軸5と結合している。なお、本実施形態の電磁開閉装置10では、可動軸5の軸部5aの先端部と可動鉄芯25との結合を螺合により行っている。これにより、可動接触子4は、可動鉄芯25の移動に連動して上下方向(図1の上下方向)に移動することが可能となる。   Similarly, the fixed iron core 24 is provided with a through-hole 24 b through which the movable shaft 5 passes along the axial direction of the cylindrical fixed iron core 24. Further, the shaft portion 5a of the movable shaft 5 has a tip portion coupled to the movable iron core 25 through the bearing hole 45c and the through hole 24b. A coupling hole 25 a is formed in the movable iron core 25 along the axial direction of the columnar movable iron core 25. The movable iron core 25 is coupled to the movable shaft 5 in such a manner that the tip of the shaft portion 5a is inserted into the coupling hole 25a and fixed. In the electromagnetic switching device 10 of the present embodiment, the distal end portion of the shaft portion 5a of the movable shaft 5 and the movable iron core 25 are coupled by screwing. Thereby, the movable contact 4 can move in the vertical direction (the vertical direction in FIG. 1) in conjunction with the movement of the movable iron core 25.

ここにおいて、可動鉄芯25が初期位置にあるときには可動接点4aと固定接点3aとが互いに離間され、一方、可動鉄芯25が当接位置にあるときには可動接点4aと固定接点3aとが接触するように、可動鉄芯25と可動接触子4との位置関係が設定している。接点装置1は、可動鉄芯25が初期位置にあり、可動接点4aと固定接点3aとが互いに離間している場合は、開成状態となる。また、接点装置1は、可動鉄芯25が当接位置にあるときに、可動接点4aと固定接点3aとが接触して閉成状態となる。   Here, when the movable iron core 25 is in the initial position, the movable contact 4a and the fixed contact 3a are separated from each other. On the other hand, when the movable iron core 25 is in the contact position, the movable contact 4a and the fixed contact 3a come into contact with each other. As described above, the positional relationship between the movable iron core 25 and the movable contact 4 is set. The contact device 1 is in an open state when the movable iron core 25 is in the initial position and the movable contact 4a and the fixed contact 3a are separated from each other. Moreover, when the movable iron core 25 exists in a contact position, the contact device 1 will be in a closed state, when the movable contact 4a and the fixed contact 3a contact.

なお、可動軸5は、下端部に可動鉄芯25を結合する前に、図3に示すように可動接触子4の挿通孔4c、接圧ばね6、後述する絶縁部材39の挿通孔39bおよび継鉄板26Aに取り付けられたキャップ部材45の軸受け孔45cを通して固定鉄芯24の貫通孔24bに挿入される。次に、可動軸5は、復帰ばね27を装着して、可動軸5の下端部を第2ダンパ部22を介して可動鉄芯25に結合する。なお、可動軸5には、軸部5aの先端部に雄螺子を切っている。また、可動鉄心25の結合孔25aの内面には、雌螺子が切っている。したがって、可動軸5は、継鉄板26Aの下側に取り付けたガイド筒28内の可動鉄芯25と螺合して結合すればよい。   Before the movable iron core 25 is coupled to the lower end portion of the movable shaft 5, as shown in FIG. 3, the insertion hole 4c of the movable contact 4, the contact pressure spring 6, the insertion hole 39b of the insulating member 39 described later, It is inserted into the through hole 24b of the fixed iron core 24 through the bearing hole 45c of the cap member 45 attached to the yoke plate 26A. Next, the movable shaft 5 is fitted with a return spring 27 to couple the lower end portion of the movable shaft 5 to the movable iron core 25 via the second damper portion 22. The movable shaft 5 has a male screw cut at the tip of the shaft portion 5a. A female screw is cut in the inner surface of the coupling hole 25 a of the movable iron core 25. Therefore, the movable shaft 5 may be screwed and coupled with the movable iron core 25 in the guide cylinder 28 attached to the lower side of the yoke plate 26A.

上述した構成の電磁開閉装置10は、励磁用巻線2aへの通電時において、固定鉄芯24における可動鉄芯25との対向面と継鉄部26Bにおける保持孔26bの周部とが一対の磁極部として互いに異極性に磁化される。したがって、電磁開閉装置10は、励磁用巻線2aへの通電により、可動鉄芯25が固定鉄芯24側に吸引されて当接位置に移動する。また、電磁開閉装置10は、励磁用巻線2aへの通電を停止すると、復帰ばね27により可動鉄芯25が初期位置に復帰する。   In the electromagnetic switching device 10 having the above-described configuration, when the excitation winding 2a is energized, a pair of a surface facing the movable iron core 25 in the fixed iron core 24 and a peripheral portion of the holding hole 26b in the yoke portion 26B. The magnetic pole parts are magnetized with different polarities. Therefore, in the electromagnetic switching device 10, the movable iron core 25 is attracted to the fixed iron core 24 side and moved to the contact position by energizing the exciting winding 2a. Further, when the electromagnetic switching device 10 stops energizing the exciting winding 2 a, the movable iron core 25 is returned to the initial position by the return spring 27.

すなわち、電磁開閉装置10は、電磁石装置2の励磁用巻線2aへ通電されていない場合、接点装置1が開放されることにより一対の固定端子台33,33の間が絶縁されている。また、電磁開閉装置10は、電磁石装置2の励磁用巻線2aへ通電されている場合、接点装置1が閉成されることにより一対の固定端子台33,33の間が導通されることになる。可動接点4aと固定接点3aとの間の接触圧は、接圧ばね6によって確保している。   That is, when the electromagnetic switching device 10 is not energized to the exciting winding 2a of the electromagnet device 2, the contact device 1 is opened to insulate the pair of fixed terminal blocks 33, 33 from each other. In addition, when the electromagnetic switching device 10 is energized to the exciting winding 2a of the electromagnet device 2, the contact device 1 is closed, whereby the pair of fixed terminal blocks 33 and 33 are electrically connected. Become. The contact pressure between the movable contact 4 a and the fixed contact 3 a is secured by the contact pressure spring 6.

また、電磁開閉装置10は、収容ケース7と継鉄板26Aとの隙間を覆う筒状の連結体38を設けている。電磁開閉装置10は、収容ケース7、固定端子台33、継鉄板26A、ガイド筒28および連結体38で囲まれた空間を気密空間とするために、収容ケース7、固定端子台33、継鉄板26A、ガイド筒28および連結体38を接合している。すなわち、電磁開閉装置10は、固定端子台33の固定接点3a、可動接触子4、可動軸5、接圧ばね6、絶縁部材39、固定鉄芯24、復帰ばね27や可動鉄芯25が気密空間に収納されることになる。   Further, the electromagnetic switching device 10 is provided with a cylindrical connecting body 38 that covers the gap between the housing case 7 and the yoke plate 26A. The electromagnetic switching device 10 includes the housing case 7, the fixed terminal block 33, and the yoke plate so that the space surrounded by the housing case 7, the fixed terminal block 33, the yoke plate 26 </ b> A, the guide tube 28, and the coupling body 38 is an airtight space. 26A, the guide cylinder 28, and the coupling body 38 are joined. That is, the electromagnetic switching device 10 includes the fixed contact 3a of the fixed terminal block 33, the movable contact 4, the movable shaft 5, the contact pressure spring 6, the insulating member 39, the fixed iron core 24, the return spring 27, and the movable iron core 25. It will be stored in the space.

また、本実施形態の電磁開閉装置10は、収容ケース7の開口部に固定接点3aと可動接点4aとの間で発生するアークを、収容ケース7と連結体38との接合部から絶縁するための絶縁部材39が好適に設けられている。   Further, the electromagnetic switching device 10 of the present embodiment insulates the arc generated between the fixed contact 3a and the movable contact 4a at the opening of the housing case 7 from the joint between the housing case 7 and the coupling body 38. The insulating member 39 is suitably provided.

絶縁部材39は、絶縁性材料(たとえば、セラミックス材料や樹脂材料など)により形成しており、有底筒状の形状に形成している。絶縁部材39は、絶縁部材39の周壁の上端側が収容ケース7の周壁と当接している。なお、絶縁部材39は、キャップ部材45側の外底面側の中央部にキャップ部材45の凸部45aを収納可能な矩形枠39aを備えている(図3を参照)。また、絶縁部材39は、絶縁部材39の内底面側の中央部に接圧ばね6の内径と略同じ大きさの外径を備えた円形枠39cを備えている。絶縁部材39は、円形枠39c内の凹部に可動軸5の軸部5aを挿通する挿通孔39bを設けている。絶縁部材39は、可動軸5の軸部5aを挿通した接圧ばね6の下端部を円形枠39cの内側に配置させて接圧ばね6の位置ずれを抑制している。   The insulating member 39 is made of an insulating material (for example, a ceramic material or a resin material) and has a bottomed cylindrical shape. In the insulating member 39, the upper end side of the peripheral wall of the insulating member 39 is in contact with the peripheral wall of the housing case 7. The insulating member 39 includes a rectangular frame 39a that can accommodate the convex portion 45a of the cap member 45 at the center of the outer bottom surface on the cap member 45 side (see FIG. 3). The insulating member 39 includes a circular frame 39 c having an outer diameter that is substantially the same as the inner diameter of the contact pressure spring 6 at the center on the inner bottom surface side of the insulating member 39. The insulating member 39 is provided with an insertion hole 39b through which the shaft portion 5a of the movable shaft 5 is inserted in a recess in the circular frame 39c. The insulating member 39 suppresses the displacement of the contact pressure spring 6 by arranging the lower end portion of the contact pressure spring 6 inserted through the shaft portion 5a of the movable shaft 5 inside the circular frame 39c.

次に、外ケース11は、樹脂材料によって中空箱型に形成されており、上面が開口した中空箱型のケース本体41と、ケース本体41の開口を覆うように覆設するカバー42とを備えている(図4を参照)。ケース本体41は、左右側壁の前端に電磁開閉装置10を所定の取り付け面(図示していない)にねじ留めにより固定する際に用いられる挿通孔141aが形成されたフランジ部141が設けられている。また、ケース本体41は、ケース本体41の上端側の開口周縁に段部41aが形成されている。ケース本体41は、下端側に比べて外周を小さくしている。そして、ケース本体41は、段部41aよりも上方の一方面側(図4の紙面の下側)にはコイル端子23の端子部23bが嵌め込まれる一対のスリット41b,41bが形成されている。更に、ケース本体41は、段部41aよりも上方の他方面側(図4の紙面の上側)に一対の凸部41c,41cが左右方向に並設している。   Next, the outer case 11 is formed in a hollow box shape from a resin material, and includes a hollow box type case main body 41 having an upper surface opened, and a cover 42 that covers the opening of the case main body 41. (See FIG. 4). The case body 41 is provided with a flange portion 141 formed with an insertion hole 141a used for fixing the electromagnetic switching device 10 to a predetermined mounting surface (not shown) by screwing at the front ends of the left and right side walls. . Further, the case body 41 has a step portion 41 a formed at the opening peripheral edge on the upper end side of the case body 41. The case body 41 has a smaller outer periphery than the lower end side. The case body 41 has a pair of slits 41b and 41b into which the terminal portion 23b of the coil terminal 23 is fitted on one surface side (lower side of the paper surface in FIG. 4) above the step portion 41a. Further, the case body 41 has a pair of convex portions 41c and 41c arranged in parallel in the left-right direction on the other surface side (upper side of the paper surface of FIG. 4) above the step portion 41a.

カバー42は、下面が開口した中空箱型に形成しており、後面にはケース本体41に組み付ける際にケース本体41の凸部41cを嵌め込む一対の貫設孔42a,42aが形成されている。また、カバー42の上面には、上面を左右に略2分割する仕切り板42cを備えている。さらに、カバー42は、仕切り板42cによって2分割された上面に固定端子33を挿通する一対の挿通孔42b,42bを備えている。   The cover 42 is formed in a hollow box shape having an open bottom surface, and a pair of through holes 42a and 42a into which the convex portions 41c of the case body 41 are fitted when assembled to the case body 41 are formed on the rear surface. . The upper surface of the cover 42 is provided with a partition plate 42 c that divides the upper surface into left and right parts. Further, the cover 42 includes a pair of insertion holes 42b and 42b through which the fixed terminal 33 is inserted on the upper surface divided into two by the partition plate 42c.

なお、外ケース11には、接点装置1および電磁石装置2を収納する際において、コイルボビン21の鍔部21bとケース本体41の底面との間に、弾性を備えた矩形平板状のクッション材43を介装している。同様に、外ケース11には、収容ケース7とカバー42との間に、各固定端子33の鍔部33aを各々挿通させる挿通孔44aが形成された弾性を備えたクッション材44を好適に介装している。   When the contact device 1 and the electromagnet device 2 are housed in the outer case 11, a rectangular flat cushion material 43 having elasticity is provided between the flange portion 21b of the coil bobbin 21 and the bottom surface of the case body 41. It is intervening. Similarly, the outer case 11 is preferably provided with a cushioning material 44 having elasticity, in which insertion holes 44a are formed between the housing case 7 and the cover 42 for inserting the flange portions 33a of the fixed terminals 33, respectively. Disguise.

本実施形態の電磁開閉装置10は、可動軸5の軸部5aと可動接触子4とを当接させて可動接触子4の振動を抑制する振動抑制部8を備えていることにより、小型化が可能で、可動接触子4の振動に伴う異音の発生を抑制することが可能となる。   The electromagnetic switching device 10 according to the present embodiment includes a vibration suppressing unit 8 that suppresses vibration of the movable contact 4 by bringing the shaft portion 5a of the movable shaft 5 and the movable contact 4 into contact with each other, thereby reducing the size. Therefore, it is possible to suppress the generation of abnormal noise accompanying the vibration of the movable contact 4.

(実施形態2)
図5に示す本実施形態の電磁開閉装置10は、実施形態1の電磁開閉装置10のように、挿通孔4cにおける周部において可動接触子4の厚み方向に突出する突出部8aを設けて振動抑制部8とする代わりに、可動接触子4の厚み方向において軸径を変化させた軸部5aを振動抑制部8とする点が相違する。その他の構成および機能は実施形態1と同様である。
(Embodiment 2)
The electromagnetic switching device 10 of this embodiment shown in FIG. 5 is provided with a protruding portion 8a that protrudes in the thickness direction of the movable contact 4 at the peripheral portion of the insertion hole 4c, like the electromagnetic switching device 10 of the first embodiment. Instead of the suppression unit 8, the difference is that the shaft portion 5 a whose shaft diameter is changed in the thickness direction of the movable contact 4 is the vibration suppression unit 8. Other configurations and functions are the same as those of the first embodiment.

本実施形態の電磁開閉装置10では、図5に示すように、可動軸5の軸部5aが可動接触子4の厚み方向において可動軸5の端部側となる頭部5bから軸径を徐々に小さくさせたテーパ形状の異径部8bを備えている。   In the electromagnetic switching device 10 of the present embodiment, as shown in FIG. 5, the shaft diameter of the shaft portion 5 a of the movable shaft 5 is gradually increased from the head portion 5 b which is the end portion side of the movable shaft 5 in the thickness direction of the movable contact 4. A tapered different diameter portion 8b is provided.

振動抑制部8は、接圧ばね6のばね力により可動接触子4が固定接点3a側に押圧され一対の固定接点3a,3aと固定接点3aの各々に可動接点4aを当接させた状態で、軸部5aのテーパ形状の異径部8bと可動接触子4の挿通孔4cの内側面4bとが当接する。これにより、本実施形態の電磁開閉装置10は、実施形態1の電磁開閉装置10と同様に、可動接触子4の振動を抑制することが可能となる。なお、異径部8bの形状は、可動接触子4の厚み方向において、端部側から軸径が徐々に小さくなるテーパ形状だけに限らず、端部側から軸径を徐々に大きくさせたテーパ形状など種々の形状とすることができる。   The vibration suppressing unit 8 is in a state where the movable contact 4 is pressed to the fixed contact 3a side by the spring force of the contact pressure spring 6 and the movable contact 4a is brought into contact with each of the pair of fixed contacts 3a, 3a and the fixed contact 3a. The tapered different diameter portion 8b of the shaft portion 5a and the inner side surface 4b of the insertion hole 4c of the movable contact 4 come into contact with each other. Thereby, similarly to the electromagnetic switching device 10 of the first embodiment, the electromagnetic switching device 10 of the present embodiment can suppress the vibration of the movable contact 4. The shape of the different-diameter portion 8b is not limited to a tapered shape in which the shaft diameter gradually decreases from the end side in the thickness direction of the movable contact 4, but a taper in which the shaft diameter is gradually increased from the end side. Various shapes such as a shape can be used.

(実施形態3)
図6に示す本実施形態の電磁開閉装置10は、実施形態1で示した挿通孔4cにおける周部において可動接触子4の厚み方向に突出する突出部8aと、実施形態2で示した可動接触子4の厚み方向において軸径を変化させた軸部5aとを組み合わせて振動抑制部8を構成している。その他の構成および機能は実施形態1,2と同様である。
(Embodiment 3)
The electromagnetic switching device 10 of the present embodiment shown in FIG. 6 includes a protruding portion 8a that protrudes in the thickness direction of the movable contact 4 at the peripheral portion of the insertion hole 4c shown in the first embodiment, and the movable contact shown in the second embodiment. The vibration suppressing portion 8 is configured by combining the shaft portion 5a whose shaft diameter is changed in the thickness direction of the child 4. Other configurations and functions are the same as those in the first and second embodiments.

本実施形態の電磁開閉装置10では、図6(a)に示すように、可動接触子4の挿通孔4cにおける周部において可動接触子4の厚み方向(図6(a)の下方向)に突出する突出部8aと、可動軸5の軸部5aが可動接触子4の厚み方向において可動軸5の端部側から軸径を徐々に小さくさせたテーパ形状の異径部8bとで振動抑制部8を構成している。図6(a)に示す電磁開閉装置10の振動抑制部8は、接圧ばね6のばね力により可動接触子4が固定接点3a側に押圧され一対の固定接点3a,3aと固定接点3aの各々に可動接点4aを当接させた状態で、可動接触子4の振動を抑制することが可能となる。   In the electromagnetic switching device 10 of the present embodiment, as shown in FIG. 6A, in the thickness direction of the movable contact 4 (downward in FIG. 6A) in the peripheral portion of the insertion hole 4c of the movable contact 4. Vibration is suppressed by the protruding portion 8a protruding and the shaft portion 5a of the movable shaft 5 which has a tapered different diameter portion 8b in which the shaft diameter is gradually reduced from the end side of the movable shaft 5 in the thickness direction of the movable contact 4. Part 8 is configured. In the vibration suppression unit 8 of the electromagnetic switching device 10 shown in FIG. 6A, the movable contact 4 is pressed toward the fixed contact 3a by the spring force of the contact pressure spring 6, and the pair of fixed contacts 3a, 3a and the fixed contact 3a It is possible to suppress the vibration of the movable contact 4 in a state in which the movable contact 4a is brought into contact with each.

また、図6(b)に示す電磁開閉装置10では、可動接触子4の挿通孔4cにおける周部において可動接触子4の厚み方向(図6(b)の下方向)に突出する突出部8aと、可動軸5の軸部5aが可動接触子4の厚み方向において可動軸5の端部側から軸径を徐々に大きくさせたテーパ形状の異径部8bとで振動抑制部8を構成している。なお、可動軸5の端部には、軸方向に沿って螺子部5cを突出させている。可動軸5は、可動軸5の端部とワッシャ9aとの間に可動接触子4を挟持させている。可動軸5の螺子部5cは、ナット9bにより固定している。このような電磁開閉装置10の振動抑制部8は、接圧ばね6のばね力により可動接触子4が固定接点3a側に押圧され一対の固定接点3a,3aと固定接点3aの各々に可動接点4aを当接させた状態で、可動接触子4の振動を抑制することが可能となる。   Further, in the electromagnetic switching device 10 shown in FIG. 6B, the protruding portion 8 a that protrudes in the thickness direction of the movable contact 4 (downward in FIG. 6B) at the peripheral portion of the insertion hole 4 c of the movable contact 4. The shaft portion 5a of the movable shaft 5 and the tapered different-diameter portion 8b whose shaft diameter is gradually increased from the end side of the movable shaft 5 in the thickness direction of the movable contact 4 constitute the vibration suppressing portion 8. ing. A screw portion 5c is projected from the end of the movable shaft 5 along the axial direction. The movable shaft 5 sandwiches the movable contact 4 between the end of the movable shaft 5 and the washer 9a. The screw portion 5c of the movable shaft 5 is fixed by a nut 9b. Such a vibration suppression unit 8 of the electromagnetic switching device 10 has the movable contact 4 pressed against the fixed contact 3a side by the spring force of the contact pressure spring 6, and each of the pair of fixed contacts 3a, 3a and the fixed contact 3a has a movable contact. It is possible to suppress the vibration of the movable contact 4 in a state where the contact 4a is in contact.

1 接点装置
2 電磁石装置
3a 固定接点
4 可動接触子
4a 可動接点
4c 挿通孔
5 可動軸
5a 軸部
8 振動抑制部
8a 突出部
10 電磁開閉装置
DESCRIPTION OF SYMBOLS 1 Contact device 2 Electromagnet device 3a Fixed contact 4 Movable contact 4a Movable contact 4c Insertion hole 5 Movable shaft 5a Shaft part 8 Vibration suppression part 8a Protrusion part 10 Electromagnetic switching device

Claims (3)

一対の固定接点と該固定接点の各々に対向する可動接点が一表面側に設けられた可動接触子と該可動接触子の挿通孔に挿通され前記可動接触子を保持する可動軸とを有する接点装置と、前記可動軸と連結され前記可動接触子を移動させて前記固定接点と前記可動接点とを各々に接離させる電磁石装置と、前記可動軸の軸部と前記可動接触子とを当接させて前記可動接触子の振動を抑制する振動抑制部を備えることを特徴とする電磁開閉装置。   A contact having a pair of fixed contacts, a movable contact that is provided on one surface of each of the fixed contacts, and a movable shaft that is inserted through the insertion hole of the movable contact and holds the movable contact. An apparatus, an electromagnet device connected to the movable shaft and moving the movable contact to contact and separate the fixed contact and the movable contact, and a shaft portion of the movable shaft and the movable contact An electromagnetic switching device comprising a vibration suppressing unit that suppresses vibration of the movable contact. 前記振動抑制部は、前記挿通孔における周部において前記可動接触子の厚み方向に突出する突出部であることを特徴とする請求項1に記載の電磁開閉装置。   2. The electromagnetic switching device according to claim 1, wherein the vibration suppression unit is a protruding portion that protrudes in a thickness direction of the movable contact at a peripheral portion of the insertion hole. 前記振動抑制部は、前記可動接触子の厚み方向において軸径を変化させた前記軸部であることを特徴とする請求項1に記載の電磁開閉装置。
The electromagnetic switching device according to claim 1, wherein the vibration suppression unit is the shaft portion whose shaft diameter is changed in the thickness direction of the movable contact.
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JP2014130771A (en) * 2012-12-28 2014-07-10 Panasonic Corp Contact device and electromagnetic relay mounting contact device
JP2017076616A (en) * 2015-10-14 2017-04-20 エルエス産電株式会社Lsis Co., Ltd. Direct current relay

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2014130771A (en) * 2012-12-28 2014-07-10 Panasonic Corp Contact device and electromagnetic relay mounting contact device
JP2017076616A (en) * 2015-10-14 2017-04-20 エルエス産電株式会社Lsis Co., Ltd. Direct current relay
CN106887365A (en) * 2015-10-14 2017-06-23 Ls 产电株式会社 DC relay

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