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JP5869309B2 - Ceiling suspended seismic reduction device - Google Patents

Ceiling suspended seismic reduction device Download PDF

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JP5869309B2
JP5869309B2 JP2011251865A JP2011251865A JP5869309B2 JP 5869309 B2 JP5869309 B2 JP 5869309B2 JP 2011251865 A JP2011251865 A JP 2011251865A JP 2011251865 A JP2011251865 A JP 2011251865A JP 5869309 B2 JP5869309 B2 JP 5869309B2
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elastic body
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ceiling
suspended
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JP2013108524A (en
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岡本 興三
興三 岡本
佳香 土屋
佳香 土屋
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Tokkyokiki Corp
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Description

本発明は、建物の天井や床下から吊り下げられた吊ボルトと、吊ボルトに吊持支持されているダクト、配管或いは空調機といった機械器具類との間に介装して用いられ、地震によって受ける破壊的な運動エネルギーを、限られた揺れ移動空間あるいは振動自由度内での運動を通じて消費させることにより、地震時における保護対象機器の安全性を確保する減震装置に関する。   The present invention is used between a suspension bolt suspended from the ceiling or under the floor of a building and machinery and equipment such as a duct, piping or an air conditioner suspended and supported by the suspension bolt. The present invention relates to a seismic reduction device that ensures the safety of equipment to be protected during an earthquake by consuming the destructive kinetic energy received through movement within a limited shaking movement space or vibration freedom.

建物の天井や床下(以下、「天井等」という。)に配管やダクト或いは空調機といった機械器具類(以下、「保護対象機器」という。)を敷設する方法として、天井等から吊り下げられた吊ボルトの下端部に吊持支持具を取り付け、この吊持支持具によって保護対象機器を吊持支持することが従来から一般に行われていた。   As a method of laying machinery and equipment such as pipes, ducts or air conditioners (hereinafter referred to as “devices to be protected”) under the ceiling or under the floor of a building (hereinafter referred to as “ceilings”), it was suspended from the ceiling or the like. Conventionally, a suspension support is attached to the lower end of the suspension bolt, and the device to be protected is suspended and supported by this suspension support.

保護対象機器からは各種振動が発生するが(例えば配管やダクトの場合は、その内部を流体が流れることによって振動が発生するし、空調機の場合はモーター等による振動が発生する)、これら振動が吊ボルトを介して天井等に伝達されるのを防止するため、吊ボルトと吊持支持具との間に防振具を介装することが行われている(例えば、特許文献1参照)。   Various vibrations are generated from the equipment to be protected (for example, in the case of pipes and ducts, vibration is generated by the flow of fluid, and in the case of air conditioners, vibrations are generated by motors, etc.). In order to prevent the vibration from being transmitted to the ceiling or the like via the suspension bolt, an anti-vibration device is interposed between the suspension bolt and the suspension support (see, for example, Patent Document 1). .

特開2009−36289号公報(図1)JP 2009-36289 A (FIG. 1)

天井等から垂設された吊ボルトの下端に吊持支持具を介して吊持支持されている保護対象機器は、地震による破壊的な運動エネルギーを受ると、吊ボルトにおける天井等との接続部分(図1のXで示した部分)を中心として振り子のように前後左右に大きく揺れることとなる。   The protection target equipment suspended and supported by the suspension bolts at the lower ends of the suspension bolts suspended from the ceiling, etc., is connected to the ceiling etc. of the suspension bolts when it receives destructive kinetic energy from an earthquake. It swings greatly back and forth and right and left like a pendulum around the part (the part indicated by X in FIG. 1).

このとき、吊ボルトにおける天井との接続部分Xには過大な応力が集中的且つ繰り返して加わり、その結果、当該部分が疲労して吊ボルトが折損し、保護対象機器の落下事故が生じるという問題があった。   At this time, excessive stress is intensively and repeatedly applied to the connection portion X of the suspension bolt with the ceiling, resulting in fatigue of the portion, breakage of the suspension bolt, and a problem that the protection target device falls. was there.

本発明は、かかる従来の問題点に鑑みてなされたものであり、地震が起きた場合であっても吊ボルトの天井等との接続部分に集中的な応力が加わるのを軽減させ、吊ボルトの折損防止を目的とした天井吊下型減震装置を提供する。   The present invention has been made in view of such conventional problems, and even if an earthquake occurs, it is possible to reduce the application of intensive stress to the connection portion of the suspension bolt with the ceiling, etc. A suspended ceiling type seismic reduction device for the purpose of preventing breakage.

請求項1に記載した発明は「弾性体取付用孔12cが設けられている上側片12aと、上側片12aの下方に所定間隔を隔てて配置され、吊持支持具Mを介して保護対象機器Pが取り付けられる下側片12bとを備える減震装置本体12および、上側片12aの弾性体取付用孔12cに取り付けられた弾性体14により構成された天井吊下型減震装置10であって、弾性体14は、弾性体取付用孔12cよりも大径で上側片12aの上面側に配置される上側弾性体14a、弾性体取付用孔12cよりも大径で上側片12aの下面側に配置される下側弾性体14bおよび上側弾性体14aと下側弾性体14bとを連結し弾性体取付用孔12c内に配置される連結部材14cにより構成されており、弾性体14には上側弾性体14aの上端部から下側弾性体14bの下端部に至るボルト挿通用孔14dが形成されており、上側片12aと接する下側弾性体14bの上面が上側片12aに向けた凸曲面状に形成されている」ことを特徴とする。   According to the first aspect of the present invention, "the upper piece 12a provided with the elastic body mounting hole 12c and the upper piece 12a are arranged at a predetermined interval below the upper piece 12a. A ceiling-suspended vibration-reducing device 10 including a vibration-reducing device main body 12 including a lower piece 12b to which P is attached and an elastic body 14 attached to an elastic body attaching hole 12c of the upper piece 12a. The elastic body 14 has a diameter larger than that of the elastic body mounting hole 12c and is disposed on the upper surface side of the upper piece 12a. The elastic body 14 has a diameter larger than that of the elastic body mounting hole 12c and is formed on the lower surface side of the upper piece 12a. The lower elastic body 14b and the upper elastic body 14a and the lower elastic body 14b that are arranged are connected to each other by a connecting member 14c that is arranged in the elastic body mounting hole 12c. From the upper end of the body 14a The bolt insertion hole 14d reaching the lower end of the side elastic body 14b is formed, and the upper surface of the lower elastic body 14b in contact with the upper piece 12a is formed in a convex curved shape toward the upper piece 12a ". Features.

請求項2に記載した発明は、「上側片12aと下側弾性体14bとの間には、弾性体14よりも摩擦係数の小さな材質からなり、上向き碗状に形成された皿座20がさらに介装されている」ことを特徴とする。   According to the second aspect of the present invention, “a plate seat 20 made of a material having a smaller coefficient of friction than the elastic body 14 and having an upward bowl shape between the upper piece 12a and the lower elastic body 14b is further provided. It is characterized by being “interposed”.

請求項1〜2に記載の発明によれば、保護対象機器Pが地震による破壊的な運動エネルギーを受けて前後左右に振れると、減震装置本体12が弾性体14の連結部分14cを中心として保護対象機器Pの動きに合わせて振り子状に自由に回転することができる。保護対象機器Pが前後左右に振れる際に発生する運動エネルギーは、弾性体14によって効果的に吸収され、吊ボルトBに伝達される振動が大幅に軽減される。したがって、吊ボルトBにおける天井Sとの接続部分Xに応力が集中的に加わることが軽減され、吊ボルトBの折損が生じるのを防止できる。   According to invention of Claims 1-2, when the protection object apparatus P receives the destructive kinetic energy by an earthquake and shakes back and forth and right and left, the seismic-reduction apparatus main body 12 will center on the connection part 14c of the elastic body 14. FIG. The pendulum can be freely rotated in accordance with the movement of the protection target device P. The kinetic energy generated when the protection target device P swings back and forth and right and left is effectively absorbed by the elastic body 14 and the vibration transmitted to the suspension bolt B is greatly reduced. Therefore, it is possible to reduce stress from being concentrated on the connection portion X of the suspension bolt B with the ceiling S, and to prevent the suspension bolt B from being broken.

そして、請求項2に記載の発明のように、上側片12aと下側弾性体14bとの間に弾性体14よりも摩擦係数の小さな(換言すれば、滑りやすい)材質からなる皿座20を設けるようにすれば、減震装置本体12の回転運動がよりスムーズに行われることとなるので、弾性体14に不所望な振動が伝達されるのを軽減でき、その結果、吊ボルトBの折損や破断といった問題が生じるのをより効果的に防止できる。   Then, as in the invention described in claim 2, a plate seat 20 made of a material having a smaller friction coefficient than the elastic body 14 (in other words, slippery) is provided between the upper piece 12a and the lower elastic body 14b. If provided, the rotational motion of the vibration damping device main body 12 can be performed more smoothly, so that undesired vibrations can be prevented from being transmitted to the elastic body 14, and as a result, the suspension bolt B can be broken. It is possible to more effectively prevent problems such as breakage and breakage.

この発明の一実施例の天井吊下型減震装置の使用状態を示す図である。It is a figure which shows the use condition of the ceiling suspension type | mold vibration isolator of one Example of this invention. 弾性体の平面図である。It is a top view of an elastic body. 弾性体の正面図である。It is a front view of an elastic body. 無負荷状態における天井吊下型減震装置を示す部分断面図である。It is a fragmentary sectional view showing a ceiling suspension type vibration isolator in an unloaded state. 振動発生時における天井吊下型減震装置を示す部分断面図である。It is a fragmentary sectional view which shows a ceiling suspension type seismic reduction apparatus at the time of vibration generation. 無負荷状態における第二実施例の天井吊下型減震装置を示す部分断面図である。It is a fragmentary sectional view which shows the ceiling suspension type | mold vibration isolator of the 2nd Example in an unloaded state. 振動発生時における第二実施例の天井吊下型減震装置を示す部分断面図である。It is a fragmentary sectional view which shows the ceiling suspension type | mold vibration isolator of 2nd Example at the time of vibration generation. 図6実施例における変形例を示す図である。6 is a diagram showing a modification of the embodiment in FIG. 図6実施例におけるさらに別の変形例を示す図である。It is a figure which shows another modification in the FIG. 6 Example.

以下、本発明を図面に従って説明する。図1は、本発明にかかる第1実施例の天井吊下型減震装置10(以下、単に「減震装置10」という。)の使用状態を示す図である。   The present invention will be described below with reference to the drawings. FIG. 1 is a diagram showing a usage state of a ceiling suspended vibration isolator 10 (hereinafter simply referred to as “vibrator 10”) according to a first embodiment of the present invention.

この図が示すように、本発明の減震装置10は、天井等Sから吊り下げられた吊ボルトBと、保護対象機器(本実施例では、その一例として配管を取り上げる)Pを吊持支持する吊持支持具Mとの間に介装して使用されるものであり、減震装置本体12と弾性体14とで大略構成されている。   As shown in this figure, the vibration damping device 10 of the present invention suspends and supports a suspension bolt B suspended from a ceiling or the like S and a protection target device (pipe is taken as an example in this embodiment) P. The seismic device main body 12 and the elastic body 14 are generally used.

減震装置本体12は、矩形枠状の部材で、本実施例では、金属等の剛性材料からなる板材を矩形枠状に曲折形成し、その端部同士を上面側で重ね合わせて互いに溶接することによって形成されている。   The vibration damping device main body 12 is a rectangular frame member. In this embodiment, a plate made of a rigid material such as a metal is bent into a rectangular frame shape, and ends thereof are overlapped on the upper surface side and welded together. It is formed by.

減震装置本体12の上側片12aには、後述する弾性体14を取り付けるための弾性体取付用孔12cが形成されており、この弾性体取付用孔12cに弾性体14が取り付けられている。   An elastic body attaching hole 12c for attaching an elastic body 14 to be described later is formed in the upper piece 12a of the vibration damping device main body 12. The elastic body 14 is attached to the elastic body attaching hole 12c.

また、上側片12aの下方にて所定間隔を経て配置されている下側片12bには、吊持支持具Mの上面に立設されているボルトMbを挿通するためのボルト挿通用孔12dが形成されている。   In addition, a bolt insertion hole 12d for inserting a bolt Mb standing on the upper surface of the suspension support M is formed in the lower piece 12b arranged at a predetermined interval below the upper piece 12a. Is formed.

なお、上側片12aに形成されている弾性体取付用孔12cは、後述する弾性体14の連結部材14cの外径よりも若干大きく設定されており、下側片12bに形成されているボルト挿通用孔12dは、ボルトMbの外径よりも僅かに大きく設定されている。   The elastic body attaching hole 12c formed in the upper piece 12a is set to be slightly larger than the outer diameter of the connecting member 14c of the elastic body 14 described later, and the bolt insertion formed in the lower piece 12b. The common hole 12d is set slightly larger than the outer diameter of the bolt Mb.

弾性体14は、ゴム等の弾性材料からなる略瓢箪形状の部材であり(図2〜図3参照)、上端部が切り欠かれた略球形の上側弾性体14aと、上側弾性体14aよりも大径で下端部が切り欠かれた略球形の下側弾性体14bと、上側弾性体14aと下側弾性体14bとを連結する略円柱状の連結部材14cとで構成されている。上側弾性体14aの上側片12aと接する側の面である下面ならびに、下側弾性体14bの上側片12aと接する側の面である上面は、上側片12a側に向かう凸球面状となるように構成されている。   The elastic body 14 is a substantially bowl-shaped member made of an elastic material such as rubber (see FIGS. 2 to 3), and has a substantially spherical upper elastic body 14a with an upper end cut away, and an upper elastic body 14a. It has a substantially spherical lower elastic body 14b having a large diameter and a lower end cut out, and a substantially cylindrical connecting member 14c that connects the upper elastic body 14a and the lower elastic body 14b. The lower surface that is the surface in contact with the upper piece 12a of the upper elastic body 14a and the upper surface that is the surface in contact with the upper piece 12a of the lower elastic body 14b are formed in a convex spherical shape toward the upper piece 12a. It is configured.

弾性体14には、上側弾性体14aの上面から下側弾性体14bの下面に至るボルト挿通用孔14dが形成されており、その内側面中段部分から上側の部分には、例えば、炭素鋼や硬質樹脂といった非弾性体からなる筒状のパイプ14eがインサートされている。なお、ボルト挿通用孔14dの内径は、天井吊ボルトBの外径よりもやや大きめに設定されており、ボルト挿通用孔14dの内側面とパイプ14eの内側面とは面一となるように形成されている。   The elastic body 14 is formed with a bolt insertion hole 14d extending from the upper surface of the upper elastic body 14a to the lower surface of the lower elastic body 14b. A cylindrical pipe 14e made of an inelastic material such as hard resin is inserted. The inner diameter of the bolt insertion hole 14d is set to be slightly larger than the outer diameter of the ceiling suspension bolt B, and the inner side surface of the bolt insertion hole 14d and the inner side surface of the pipe 14e are flush with each other. Is formed.

減震装置本体12に対する弾性体14の取り付けは、以下のようにして行う。すなわち、弾性体14を減震装置本体12の上側片12aの下側に配置し、小径側の上側弾性体14aをその側方から挟んで撓ませて上側片12aの弾性体取付用孔12cに押し込み、連結部材14cを弾性体取付用孔12cに嵌め込む(換言すれば、上側弾性体14aと下側弾性体14bとの間に上側片12aを挟み込む)。これにより、減震装置10の組み立てが完了する。なお、上側弾性体14aおよび下側弾性体14bの外径は、上側片12の弾性体取付用孔12cの内径よりも大きく設定されているので、使用時において弾性体14が上側片12aから抜け落ちることはない。   The elastic body 14 is attached to the vibration damping device main body 12 as follows. That is, the elastic body 14 is disposed below the upper piece 12a of the vibration damping device main body 12, and the small diameter upper elastic body 14a is sandwiched from the side to be bent into the elastic body mounting hole 12c of the upper piece 12a. The connecting member 14c is inserted into the elastic body mounting hole 12c (in other words, the upper piece 12a is sandwiched between the upper elastic body 14a and the lower elastic body 14b). Thereby, the assembly of the vibration damping device 10 is completed. Since the outer diameters of the upper elastic body 14a and the lower elastic body 14b are set larger than the inner diameter of the elastic body mounting hole 12c of the upper piece 12, the elastic body 14 falls out of the upper piece 12a during use. There is nothing.

減震装置10を使用する際には、天井Sから吊り下げられている吊ボルトBの下端部を弾性体14のボルト挿通用孔14dに挿通するとともにその挿通端部にナットNを螺合して減震装置10の上下方向の位置を固定する。   When using the vibration reducing device 10, the lower end of the suspension bolt B suspended from the ceiling S is inserted into the bolt insertion hole 14 d of the elastic body 14 and the nut N is screwed into the insertion end. Thus, the vertical position of the vibration isolator 10 is fixed.

次に、吊持支持具Mの上端部に立設されているボルトMbを減震装置本体12の下側片12bのボルト挿通用孔12dに挿通し、吊持支持具Mに吊持支持されている保護対象機器Pの高さ調整を行った後、ボルトMbの挿通端部にナットNを螺合して位置を固定する。   Next, the bolt Mb erected at the upper end of the suspension support M is inserted into the bolt insertion hole 12d of the lower piece 12b of the vibration damping device main body 12 and is suspended and supported by the suspension support M. After adjusting the height of the protection target device P, the nut N is screwed into the insertion end of the bolt Mb to fix the position.

以上により、減震装置10を利用した保護対象機器Pの吊持支持が完了する。なお、図4は、無負荷状態の弾性体14の状態を示す部分断面図であり、図5は、保護対象機器Pの自重により弾性体14(より詳しくは下側弾性体14b)に負荷がかかった状態を示す部分断面図である。   Thus, the suspension support of the protection target device P using the seismic reduction device 10 is completed. 4 is a partial cross-sectional view showing the state of the elastic body 14 in an unloaded state, and FIG. 5 shows a load on the elastic body 14 (more specifically, the lower elastic body 14b) due to the weight of the device P to be protected. It is a fragmentary sectional view which shows the state which started.

地震が起きて保護対象機器Pに破壊的な運動エネルギーが加わり、保護対象機器Pが水平方向に揺れると、図5の二点鎖線で示したように、減震装置本体12が弾性体14の連結部材14cを中心にして振り子のように前後左右に揺れる。このとき、減震装置本体12は上述した弾性体14の連結部材14cを中心として円滑な回転運動をすることになるので、保護対象機器Pが前後左右に揺れることにより発生する運動エネルギーは、吊持支持具Mならびに減震装置本体12を介して弾性体14に伝達され、弾性体14において振動エネルギーが効果的に吸収されて熱エネルギーに変換される。 When a destructive kinetic energy is applied to the protection target device P due to an earthquake and the protection target device P is shaken in the horizontal direction, as shown by a two-dot chain line in FIG. It swings back and forth and right and left like a pendulum around the connecting member 14c . At this time, since the seismic reduction device main body 12 smoothly rotates about the connecting member 14c of the elastic body 14 described above, the kinetic energy generated when the protection target device P swings back and forth and right and left is suspended. It is transmitted to the elastic body 14 via the holding support M and the vibration damping device main body 12, and the vibration energy is effectively absorbed in the elastic body 14 and converted into thermal energy.

したがって、吊ボルトBに伝達される振動は大幅に低減され、吊ボルトBの天井Sとの接続部分Xに加わる応力は小さくなり、その結果、吊ボルトBの折損が生じるのを防止できる。   Therefore, the vibration transmitted to the suspension bolt B is greatly reduced, and the stress applied to the connection portion X of the suspension bolt B with the ceiling S is reduced. As a result, the suspension bolt B can be prevented from being broken.

なお、図5を参照して分かるように、下側弾性体14bに負荷がかかった状態では、下側弾性体14bが保護対象機器Pの自重に応じて上下方向に撓むのであるが、この撓み量は保護対象機器Pの自重に応じて変化する。すなわち、保護対象機器Pの自重が大きくなればなるほど、上側弾性体14bと上側片12aとの接触面積が大きくなり、保護対象機器Pの自重に応じた振動吸収効果が期待できる。   As can be seen with reference to FIG. 5, in a state where a load is applied to the lower elastic body 14 b, the lower elastic body 14 b bends in the vertical direction according to the weight of the protection target device P. The amount of deflection changes according to the weight of the protection target device P. That is, as the weight of the protection target device P increases, the contact area between the upper elastic body 14b and the upper piece 12a increases, and a vibration absorption effect according to the weight of the protection target device P can be expected.

本実施例において、弾性体14はゴムなどの弾性材料から構成されていることから、減震装置本体12が前後左右に振り子状に揺れると、揺れる際に弾性体14と減震装置本体12との間に働く摩擦力が弾性体14に不所望に加わることとなり、弾性体14における振動吸収効果が減殺される結果となりかねない。   In the present embodiment, since the elastic body 14 is made of an elastic material such as rubber, if the vibration isolator body 12 swings in a pendulum shape back and forth and left and right, the elastic body 14 and the vibration isolator body 12 The frictional force acting during the period is undesirably applied to the elastic body 14, and the vibration absorption effect in the elastic body 14 may be diminished.

かかる問題を解消するためには、減震装置本体12と弾性体14との間で不所望な摩擦力が発生するのを防止すればよく、かかる目的を具現化するための一例として、図6〜図7に示すように、減震装置本体12と上側弾性体14aとの間に減震装置本体12との間の摩擦力(静摩擦係数ならびに動摩擦係数)が小さな材質(例えば金属)からなる上向き椀状(凸球面状)に形成された皿座20を設けるようにすることができる。   In order to solve such a problem, it is only necessary to prevent an undesired frictional force from being generated between the vibration reducing device main body 12 and the elastic body 14, and as an example for realizing this purpose, FIG. As shown in FIG. 7, the frictional force (static friction coefficient and dynamic friction coefficient) between the vibration isolator main body 12 and the upper elastic body 14a is made of a material (for example, metal) having a small friction force. The countersunk 20 formed in a bowl shape (convex spherical shape) can be provided.

このような皿座20を設けることで、減震装置本体12が振り子状に揺れる際、減震装置本体12と弾性体14との間で不所望な摩擦力が生じるのを防止でき、吊ボルトBに不所望な振動が伝達されるのを抑えることができる。   By providing such a pedestal 20, it is possible to prevent an undesired frictional force from being generated between the anti-vibration device main body 12 and the elastic body 14 when the anti-vibration device main body 12 swings in a pendulum shape. Undesirable vibrations can be prevented from being transmitted to B.

なお、弾性体14の形状、特に下側弾性体14bの形状は、減震装置本体12(或いは皿座20)と接する上面部分が中心から外方に向かうにしたがって、離れていくように設定されていればよく、その胴体部分の形状は上述実施例に限定されるものではない。   The shape of the elastic body 14, particularly the shape of the lower elastic body 14 b, is set so that the upper surface portion in contact with the vibration damping device main body 12 (or the plate seat 20) moves away from the center toward the outside. The shape of the body part is not limited to the above-described embodiment.

例えば、図8実施例に示すように、胴体部分を切除してもよいし、図9に示すように、胴体部分を蛇腹状に形成してもよい。図9のように胴体部分を蛇腹状に形成した場合には、下側弾性体14bが上下に撓みやすくなるので、減震装置本体12の振動エネルギーをより効果的に吸収することができる。   For example, as shown in FIG. 8 embodiment, the body portion may be cut out, or as shown in FIG. 9, the body portion may be formed in a bellows shape. When the body portion is formed in a bellows shape as shown in FIG. 9, the lower elastic body 14b is easily bent up and down, so that the vibration energy of the vibration isolator main body 12 can be absorbed more effectively.

10…天井吊下型減震装置
12…減震装置本体
12a…上側片
12b…下側片
12c…弾性体取付用孔
12d…ボルト挿通用孔
14…弾性体
14a…上側弾性体
14b…下側弾性体
14c…連結部材
14d…ボルト挿通用孔
14e…パイプ
20…皿座
B…吊ボルト
M…吊持支持具
Mb…ボルト
P…保護対象機器
S…天井
X…境界部分
DESCRIPTION OF SYMBOLS 10 ... Ceiling suspension type seismic-reduction device 12 ... Seismic-reduction-device main body 12a ... Upper piece 12b ... Lower piece 12c ... Elastic body attachment hole 12d ... Bolt insertion hole 14 ... Elastic body 14a ... Upper elastic body 14b ... Lower side Elastic body 14c ... Connecting member 14d ... Bolt insertion hole 14e ... Pipe 20 ... Dish seat B ... Hanging bolt M ... Hanging support Mb ... Bolt P ... Protected device S ... Ceiling X ... Boundary portion

Claims (2)

弾性体取付用孔が設けられている上側片と、前記上側片の下方に所定間隔を隔てて配置され、吊持支持具を介して保護対象機器が取り付けられる下側片とを備える減震装置本体および、前記上側片の弾性体取付用孔に取り付けられた弾性体により構成された天井吊下型減震装置であって、
前記弾性体は、前記弾性体取付用孔よりも大径で前記上側片の上面側に配置される上側弾性体、前記弾性体取付用孔よりも大径で前記上側片の下面側に配置される下側弾性体および前記上側弾性体と前記下側弾性体とを連結し前記弾性体取付用孔内に配置される連結部材により構成されており、
前記弾性体には、前記上側弾性体の上端部から前記下側弾性体の下端部に至るボルト挿通用孔が形成されており、前記上側片12aと接する前記下側弾性体の上面が前記上側片に向けた凸曲面状に形成されていることを特徴とする天井吊下型減震装置。
An anti-seismic device comprising: an upper piece provided with an elastic body mounting hole; and a lower piece disposed below the upper piece at a predetermined interval and to which a device to be protected is attached via a suspension support A ceiling-suspended seismic reduction device composed of an elastic body attached to the main body and the elastic body attaching hole of the upper piece,
The elastic body is arranged on the upper surface side of the upper piece with a diameter larger than that of the elastic body attachment hole, and is arranged on the lower surface side of the upper piece with a diameter larger than that of the elastic body attachment hole. The lower elastic body and the upper elastic body and the lower elastic body are connected to each other and are arranged in the elastic body mounting holes,
The elastic body is formed with a bolt insertion hole extending from the upper end of the upper elastic body to the lower end of the lower elastic body, and the upper surface of the lower elastic body in contact with the upper piece 12a is A ceiling-suspended seismic reduction device characterized in that it is formed in a convex curved shape facing a piece.
前記上側片と前記下側弾性体との間には、前記弾性体よりも摩擦係数の小さな材質からなり、上向き碗状に形成された皿座がさらに介装されていることを特徴とする請求項1に記載の天井吊下型減震装置。   A dish seat made of a material having a smaller friction coefficient than that of the elastic body and formed in an upward bowl shape is further interposed between the upper piece and the lower elastic body. Item 2. The suspended ceiling type vibration isolator according to item 1.
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