JP6338472B2 - Movement restriction release mechanism and vibration control device and slide support using the same - Google Patents

Movement restriction release mechanism and vibration control device and slide support using the same

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JP6338472B2
JP6338472B2 JP2014138164A JP2014138164A JP6338472B2 JP 6338472 B2 JP6338472 B2 JP 6338472B2 JP 2014138164 A JP2014138164 A JP 2014138164A JP 2014138164 A JP2014138164 A JP 2014138164A JP 6338472 B2 JP6338472 B2 JP 6338472B2
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attachment
sliding
sliding plate
movement restriction
friction
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JP2016014461A (en
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篤史 武田
篤史 武田
剛志 佐野
剛志 佐野
寛 平田
寛 平田
潤 野村
潤 野村
内海 良和
良和 内海
智浩 早川
智浩 早川
雄吾 鈴木
雄吾 鈴木
和男 金田
和男 金田
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Obayashi Corp
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Obayashi Corp
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  • Buildings Adapted To Withstand Abnormal External Influences (AREA)
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Description

本発明は、主として土木構造物や建築構造物に適用される移動制限解除機構並びにそれを用いた制振装置及びすべり支承に関する。   The present invention relates to a movement restriction releasing mechanism mainly applied to a civil engineering structure and a building structure, and a vibration damping device and a sliding bearing using the same.

橋梁などの土木構造物やオフィスビルなどの建築構造物には、地震エネルギーの入力低減を図るすべり支承や、地震や風といった外乱による振動を吸収することで揺れの低減を図る制振装置が設置される。   Civil engineering structures such as bridges and building structures such as office buildings are equipped with sliding supports that reduce the input of seismic energy and vibration control devices that reduce vibrations by absorbing vibrations caused by disturbances such as earthquakes and winds. Is done.

これらのうち、すべり支承は、上部構造と該上部構造を支持する基礎あるいは下部構造との間、すなわちオフィスビルであればビル本体と基礎の間、橋梁であれば橋桁と橋脚の間などに設置され、作動時には、摺動動作によってそれらの相対移動が許容され、その結果、地震入力が遮断されあるいは抑制される。   Of these, the sliding bearings are installed between the upper structure and the foundation or lower structure that supports the upper structure, that is, between the building body and the foundation for office buildings and between the bridge girder and pier for bridges. In operation, the relative movement is permitted by the sliding movement, and as a result, the seismic input is blocked or suppressed.

また、制振装置は、すべり支承と同様な場所に設置されるほか、上下二段に配置された梁の間や、鉛直構面に配置された柱脚側ブレースとその対角位置にある柱頭側ブレースとの間などに設置され、作動時には、それらに生じる相対移動によって減衰作用が発揮されるようになっており、オイルダンパーなどの速度依存型ダンパーや、弾塑性ダンパー、摩擦ダンパーといった履歴減衰型ダンパーが知られている。   The vibration control device is installed in the same place as the sliding bearing, and the column base braces placed between the upper and lower beams and on the vertical structure and the stigma at the diagonal position. It is installed between the side braces, etc., and during operation, the damping effect is exerted by the relative movement that occurs in them, and hysteresis damping such as speed-dependent dampers such as oil dampers, elastic-plastic dampers, friction dampers, etc. A type damper is known.

これらのすべり支承や履歴減衰型ダンパーは、外乱が大きいときに最適な動作をするよう設計製作されるが、外乱が小さいときにも作動すると、中小地震や通常程度の風を受けた場合でも残留変形が生じることが懸念され、速度依存型ダンパーでは、構造物の揺れによる不快感が頻繁に生じることが懸念される。   These sliding bearings and hysteretic dampers are designed and manufactured to operate optimally when the disturbance is large, but if they operate even when the disturbance is small, they will remain even when subjected to small and medium earthquakes or normal winds. There is a concern that deformation will occur, and in the speed-dependent damper, there is a concern that discomfort due to shaking of the structure frequently occurs.

特開2013−36215号公報JP2013-36215A

このような場合の対策として、すべり支承の分野では、外乱の大きさが所定のしきい値を下回っているときには、上述した摺動動作が制限されるように構成し、外乱の大きさがしきい値に達しあるいはそれを上回ったときにはその制限状態が解除されるように構成された移動制限解除機構が知られている。   As a countermeasure in such a case, in the field of sliding bearings, when the magnitude of the disturbance is below a predetermined threshold, the above-described sliding motion is limited, and the magnitude of the disturbance is a threshold. There is known a movement restriction release mechanism configured to release the restriction state when the value reaches or exceeds the value.

例えば特許文献1には、所定のせん断荷重で破断するように構成されてなるノックオフボルトが開示されており、該文献によれば、上述のノックオフボルトを橋梁の支承部に設置することで、該支承部をレベル1地震動までは固定、レベル2地震時には可動とすることができると記載されている。   For example, Patent Document 1 discloses a knock-off bolt configured to be broken at a predetermined shear load. According to the document, by installing the above-described knock-off bolt on a support portion of a bridge, It is stated that the bearing can be fixed up to level 1 ground motion and movable during level 2 earthquakes.

しかしながら、上述したノックオフボルトは、上部構造側すべりプレートと下部構造側すべりプレートの一方にノックオフボルトの基端側を、他方に先端側をそれぞれ挿入配置する形で設置されるところ、各プレートに形成されるボルト孔との間に緩みがあると、その緩みに相当する分だけ、ノックオフボルトに荷重伝達されるまでにタイムラグが生じ、移動制限状態の解除のタイミングが遅れる。   However, the above-described knock-off bolt is installed on each plate when the base end side of the knock-off bolt is inserted into one of the upper structure side slide plate and the lower structure side slide plate and the distal end side is inserted into the other. If there is a slack between the bolt hole and the bolt hole, a time lag occurs until the load is transmitted to the knock-off bolt by an amount corresponding to the slack, and the timing for releasing the movement restricted state is delayed.

そのため、すべり支承の作動が遅れて設計時に予定されていた地震入力の遮断あるいは抑制作用が十分に発揮されないおそれがあるとともに、制振装置に用いた場合にも、同じく設計時に予定されていた制振作用が十分に発揮されないおそれがあり、これらを回避しようとすると、ノックオフボルトやそのボルト孔の加工あるいは穿孔に高い精度が要求されることとなり、結果として移動制限解除機構の設置コストが割高になるという問題を生じていた。   For this reason, there is a risk that the operation of the sliding bearing will be delayed and the seismic input blocking or suppressing action that was planned at the time of design may not be fully exerted. There is a possibility that the vibration action may not be sufficiently exerted, and when trying to avoid them, high accuracy is required for processing or drilling of the knock-off bolt and its bolt hole, and as a result, the installation cost of the movement restriction release mechanism is expensive. The problem of becoming.

本発明は、上述した事情を考慮してなされたもので、製作コストや設置コストを抑えつつ、移動制限状態において緩みが生じるのを防止可能な移動制限解除機構並びにそれを用いた制振装置及びすべり支承を提供することを目的とする。   The present invention has been made in consideration of the above-described circumstances, a movement restriction release mechanism capable of preventing looseness in a movement restriction state while suppressing manufacturing costs and installation costs, and a vibration damping device using the same. The purpose is to provide sliding support.

上記目的を達成するため、本発明に係る移動制限解除機構は請求項1に記載したように、互いに相対移動する2つの取付け部位のうち、一方の取付け部位に形成された凹部に嵌合されるように他方の取付け部位に連結される第1の連結部に突設部を設け又は前記一方の取付け部位に連結される第2の連結部に形成された凹部に嵌合されるように前記他方の取付け部位若しくは該他方の取付け部位に連結される第1の連結部に突設部を設けるとともに、前記2つの取付け部位の相対移動に伴って前記凹部から前記突設部に作用するせん断荷重によって該突設部が破断するように前記突設部の基端側近傍に断面欠損部を形成し、前記凹部の内面のうち、前記2つの取付け部位の相対移動方向に沿って対向する対向面にそれぞれ当接する2つの当接面を前記突設部の外面に互いに背中合わせとなるように設けるとともに、前記2つの当接面のうち、一方をテーパ面、他方をテーパ面又は直立面とし、前記第1の連結部と前記他方の取付け部位との連結及び前記第2の連結部と前記一方の取付け部位との連結の少なくともいずれかを、前記一方の取付け部位又は前記他方の取付け部位に形成されたボルト孔に挿通された高力ボルトによる摩擦接合としたものである。   In order to achieve the above object, the movement restriction releasing mechanism according to the present invention is fitted into a recess formed in one of the two attachment parts that move relative to each other as described in claim 1. The projecting portion is provided on the first coupling portion coupled to the other mounting portion, or the other coupling portion is fitted to the recess formed in the second coupling portion coupled to the one mounting portion. And a first connecting part connected to the other mounting part, and a shear load acting on the protruding part from the recess as the two mounting parts move relative to each other. A cross-sectional defect portion is formed in the vicinity of the proximal end side of the protruding portion so that the protruding portion is broken, and on the opposite surface of the inner surface of the concave portion that faces along the relative movement direction of the two attachment portions. Two abutments that abut each other Are provided on the outer surface of the projecting portion so as to be back-to-back with each other, and one of the two contact surfaces is a tapered surface and the other is a tapered surface or an upright surface, and the first connecting portion and the other High strength inserted through a bolt hole formed in the one attachment part or the other attachment part, at least one of the connection with the attachment part and the connection between the second connection part and the one attachment part. Friction welding with bolts.

また、本発明に係る制振装置は、請求項1記載の移動制限解除機構を備えた制振装置であって、該制振装置の相対移動入力部位をそれぞれ前記一方の取付け部位、前記他方の取付け部位としたものである。   Further, a vibration damping device according to the present invention is a vibration damping device provided with the movement restriction releasing mechanism according to claim 1, wherein the relative movement input portion of the vibration damping device is the one attachment portion and the other attachment portion, respectively. It is an attachment part.

また、本発明に係る制振装置は、摺動板を前記一方の取付け部位、該摺動板に取り付けられた摺動材の摺動面上を摺動する摩擦材が取り付けられた摩擦板を前記他方の取付け部位とし、又は前記摩擦板を前記一方の取付け部位、前記摺動板を前記他方の取付け部位としたものである。   Further, the vibration damping device according to the present invention includes a friction plate on which the friction material sliding on the sliding surface of the sliding material attached to the one attachment portion and the sliding plate is attached. The other attachment site, or the friction plate as the one attachment site and the sliding plate as the other attachment site.

また、本発明に係るすべり支承は、請求項1記載の移動制限解除機構を備えたすべり支承であって、該すべり支承の相対移動入力部位をそれぞれ前記一方の取付け部位、前記他方の取付け部位としたものである。   Further, a sliding bearing according to the present invention is a sliding bearing provided with the movement restriction releasing mechanism according to claim 1, wherein the relative movement input parts of the sliding bearing are respectively the one attaching part and the other attaching part. It is a thing.

[第1の発明]
本発明に係る移動制限解除機構においては、互いに相対移動する2つの取付け部位のうち、一方の取付け部位の側に凹部を形成するとともに、該凹部に嵌合される突設部を他方の取付け部位の側に設け、相対移動に伴うせん断荷重によって突設部が破断するように該突設部の基端側近傍に断面欠損部を形成してあるが、凹部の内面には、2つの取付け部位の相対移動方向に沿って対向する対向面を設けてあるとともに、該対向面にそれぞれ当接する2つの当接面を突設部の外面に互いに背中合わせとなるように設けてあり、2つの当接面のうち、一方をテーパ面、他方をテーパ面又は直立面とし、設置の際は、突設部の当接面が凹部の対向面に当接するまで該突設部を凹部側に押し込み、当接後は、一方の取付け部位又は他方の取付け部位に形成されたボルト孔に挿通された高力ボルトによる摩擦接合によって、第2の連結部を一方の取付け部位に、又は第1の連結部を他方の取付け部位にそれぞれ連結する。
[First invention]
In the movement restriction releasing mechanism according to the present invention, of the two attachment parts that move relative to each other, a recess is formed on the side of one attachment part, and the projecting portion that fits into the recess is the other attachment part. The cross-sectional defect part is formed in the vicinity of the base end side of the projecting part so that the projecting part is broken by a shear load accompanying relative movement, but there are two attachment sites on the inner surface of the recess. The two opposing contact surfaces that are in contact with each other along the direction of relative movement are provided so that the two contact surfaces that contact the opposing surfaces are back to back on the outer surface of the protruding portion. One of the surfaces is a tapered surface and the other is a tapered surface or an upright surface. During installation, the protruding portion is pushed into the concave side until the abutting surface of the protruding portion contacts the opposite surface of the concave portion. After contact, attach to one attachment site or the other By friction bonding by made a inserted into the bolt holes have been high strength bolt, the second one attachment site connecting portion, or respectively connect the first connecting portion to the other mounting parts.

このようにすると、突設部を凹部に嵌め込むだけで、突設部と凹部とが緩みなく連結される。   If it does in this way, a protrusion part and a recessed part will be connected without loosening only by inserting a protrusion part in a recessed part.

そのため、破断荷重かそれを上回るせん断荷重が作用したときに突設部が破断して2つの取付け部位の相対移動制限が解除される際、突設部と凹部とが緩みなく連結されているため、2つの取付け部位に入力したせん断荷重が突設部と凹部に荷重伝達されるまでの間、タイムラグがほとんど発生せず、突設部は、上述のせん断荷重が2つの取付け部位に入力されたとほぼ同時に破断する。   Therefore, when the protruding portion breaks when a breaking load or a shear load exceeding it is applied and the relative movement restriction between the two attachment parts is released, the protruding portion and the recess are connected without looseness. There is almost no time lag until the shear load input to the two attachment sites is transmitted to the projecting portion and the recess, and the projecting portion has the above-described shear load input to the two attachment sites. Break almost simultaneously.

したがって、移動制限状態の解除のタイミング、ひいては制振装置の作動開始のタイミングが遅れるおそれがなくなり、かくして設計時に予定されていた制振作用が確実に発揮される。   Therefore, there is no possibility that the timing of releasing the movement restriction state and thus the timing of starting the operation of the vibration damping device will be delayed, and thus the vibration damping action planned at the time of design is surely exhibited.

また、第1の連結部と他方の取付け部位との連結あるいは第2の連結部と一方の取付け部位との連結を高力ボルトによる摩擦接合としたので、ボルト孔をボルトよりも大きく形成し、その遊びの分だけ、他方の取付け部位に対する第1の連結部の位置や一方の取付け部位に対する第2の連結部の位置を孔軸に直交する2方向に沿って調整可能となり、かくして突設部の当接面を凹部の対向面に確実に当接させることができる。   In addition, since the connection between the first connecting portion and the other attachment portion or the connection between the second connection portion and the one attachment portion is a friction joint using a high-strength bolt, the bolt hole is formed larger than the bolt, By the amount of the play, the position of the first connecting portion with respect to the other mounting portion and the position of the second connecting portion with respect to the one mounting portion can be adjusted along two directions orthogonal to the hole axis, and thus the protruding portion The abutment surface can be reliably abutted against the opposing surface of the recess.

凹部と突設部の配置構成は、以下のように、
(a)凹部を一方の取付け部位に形成し、突設部を他方の取付け部位に連結される第1の連結部に設ける
(b)凹部を一方の取付け部位に連結される第2の連結部に形成し、突設部を他方の取付け部位に設ける
(c)凹部を一方の取付け部位に連結される第2の連結部に形成し、突設部を他方の取付け部位に連結される第1の連結部に設ける
の計3つから適宜選択することができる。
The arrangement configuration of the recessed portion and the protruding portion is as follows:
(a) A concave portion is formed in one attachment site, and a projecting portion is provided in a first connection portion connected to the other attachment site.
(b) A recess is formed in the second connecting portion connected to one attachment site, and a protruding portion is provided in the other attachment site.
(c) The concave portion is formed in the second connecting portion connected to one attachment site, and the projecting portion is provided in the first connecting portion connected to the other attachment site, so that an appropriate selection is made. Can do.

ここで、(a)の場合には、他方の取付け部位に形成されたボルト孔に挿通される高力ボルトによる摩擦接合によって該他方の取付け部位に第1の連結部を連結し、(b)の場合には、一方の取付け部位に形成されたボルト孔に挿通される高力ボルトによる摩擦接合によって該一方の取付け部位に第2の連結部を連結すればよい。   Here, in the case of (a), the first connecting portion is connected to the other mounting portion by friction welding with a high-strength bolt inserted through a bolt hole formed in the other mounting portion, (b) In this case, the second connecting portion may be connected to the one attachment site by friction bonding with a high-strength bolt inserted into a bolt hole formed in the one attachment site.

一方、(c)の場合、上述したように第1の連結部と第2の連結部を高力ボルトによる摩擦接合で他方の取付け部位と一方の取付け部位にそれぞれ連結するようにしてもかまわないが、第1の連結部及び第2の連結部の少なくともいずれかが位置調整できれば足りるため、第1の連結部及び第2の連結部のうち、いずれかを通常のボルト接合や溶接で連結するようにしてもよい。   On the other hand, in the case of (c), as described above, the first connecting portion and the second connecting portion may be connected to the other attachment portion and the one attachment portion, respectively, by friction welding using high-strength bolts. However, since it is sufficient that the position of at least one of the first connecting portion and the second connecting portion can be adjusted, one of the first connecting portion and the second connecting portion is connected by normal bolt joining or welding. You may do it.

なお、一方の取付け部位に凹部を形成し、他方の取付け部位に突設部を設ける構成は、凹部と突設部との嵌合時の位置合わせができないことから、本発明からは除外される。   In addition, the structure which forms a recessed part in one attachment site | part, and provides a protrusion part in the other attachment part excludes from the present invention because the position alignment at the time of a fitting with a recessed part and a protrusion part cannot be performed. .

[第2の発明]
第1の発明に係る移動制限解除機構は、制振装置の相対移動入力部位を上述した2つの取付け部位とする形でそれらの制振装置に備えることが可能であり、かかる構成によれば、破断荷重以上のせん断荷重が2つの取付け部位に入力されたとき、タイムラグを生じることなくほぼ同時に突設部が破断するという移動制限解除機構の作用効果により、移動制限状態の解除のタイミングが遅れるおそれがなくなり、かくして制振装置をすみやかに作動させることが可能となる。
[Second invention]
The movement restriction release mechanism according to the first aspect of the present invention can be provided in the vibration control devices in the form that the relative movement input parts of the vibration control device are the two attachment parts described above. When a shear load greater than the breaking load is input to the two attachment parts, the movement restriction release mechanism may be delayed due to the effect of the movement restriction release mechanism that the protruding portion breaks almost simultaneously without causing a time lag. Thus, the vibration damping device can be operated promptly.

適用対象となる制振装置は任意であり、摩擦ダンパー、鉛ダンパー、弾塑性ダンパーといった履歴減衰型ダンパーや、オイルダンパー、粘性ダンパー、粘弾性ダンパーといった速度依存型ダンパーなどに広く適用することができる。   The damping device to be applied is arbitrary, and can be widely applied to hysteresis damping dampers such as friction dampers, lead dampers, elastic-plastic dampers, and speed-dependent dampers such as oil dampers, viscous dampers, and viscoelastic dampers. .

例えば摩擦ダンパーに適用するのであれば、
(a)摺動板を一方の取付け部位、摩擦板を他方の取付け部位とした構成
(b)摩擦板を一方の取付け部位、摺動板を他方の取付け部位とした構成
とすればよい。
For example, if applied to a friction damper,
(a) Configuration with the sliding plate as one mounting site and the friction plate as the other mounting site
(b) The friction plate may be configured as one attachment site and the sliding plate as the other attachment site.

[第3の発明]
第1の発明に係る移動制限解除機構は、すべり支承の相対移動入力部位を上述した2つの取付け部位とする形でそれらの制振装置に備えることが可能であり、かかる構成によれば、破断荷重以上のせん断荷重が2つの取付け部位に入力されたとき、タイムラグを生じることなくほぼ同時に突設部が破断するという移動制限解除機構の作用効果により、移動制限状態の解除のタイミングが遅れるおそれがなくなり、かくしてすべり支承をすみやかに作動させることが可能となる。
[Third invention]
The movement restriction releasing mechanism according to the first aspect of the present invention can be provided in the vibration damping devices in the form that the relative movement input parts of the sliding bearing are the above-described two attachment parts. When a shear load greater than the load is input to the two attachment parts, the movement restriction release mechanism may be delayed due to the effect of the movement restriction release mechanism that the protruding portion breaks almost simultaneously without causing a time lag. Thus, the sliding bearing can be operated quickly.

すべり支承には、摺動動作のみを行う狭義のすべり支承のほか、ゴムを組み合わせた弾性すべり支承も包摂される。   The sliding bearing includes not only a sliding bearing in a narrow sense that performs only sliding operation, but also an elastic sliding bearing combined with rubber.

第1実施形態に係る移動制限解除機構20を用いた摩擦ダンパー1の分解斜視図。The disassembled perspective view of the friction damper 1 using the movement restriction release mechanism 20 according to the first embodiment. 移動制限解除機構20の詳細図であり、(a)は斜視図、(b)は正面図。4A and 4B are detailed views of a movement restriction release mechanism 20, where (a) is a perspective view and (b) is a front view. 移動制限解除部材21の取付け状況を示した図であり、(a)は正面図、(b)はA−A線に沿った断面図。It is the figure which showed the attachment condition of the movement restriction release member 21, (a) is a front view, (b) is sectional drawing along the AA. 移動制限が解除された後の様子を示した説明図。Explanatory drawing which showed the mode after movement restrictions were cancelled | released. 変形例に係る摩擦ダンパー51の全体斜視図。The whole perspective view of the friction damper 51 concerning a modification. 変形例に係る移動制限解除機構の斜視図。The perspective view of the movement restriction release mechanism concerning a modification. 別の変形例に係る移動制限解除機構の斜視図。The perspective view of the movement restriction release mechanism concerning another modification. 突設部及び凹部の変形例を示した図であり、(a)は斜視図、(b)は正面図。It is the figure which showed the modification of a protrusion part and a recessed part, (a) is a perspective view, (b) is a front view. 第2実施形態に係る移動制限解除機構20aを用いたすべり支承91の図であり、(a)は全体斜視図、(b)は鉛直断面図。It is the figure of the sliding bearing 91 using the movement restriction release mechanism 20a which concerns on 2nd Embodiment, (a) is a whole perspective view, (b) is a vertical sectional view. 移動制限解除機構20aの詳細図であり、(a)は斜視図、(b)は正面図。It is detail drawing of the movement restriction release mechanism 20a, (a) is a perspective view, (b) is a front view.

以下、本発明に係る移動制限解除機構並びにそれを用いた制振装置及びすべり支承の実施の形態について、添付図面を参照して説明する。   DESCRIPTION OF EMBODIMENTS Hereinafter, embodiments of a movement restriction releasing mechanism, a vibration damping device using the same, and a sliding support according to the present invention will be described with reference to the accompanying drawings.

[第1実施形態]
図1は、本実施形態に係る制振装置としての摩擦ダンパーを示した分解斜視図である。本実施形態に係る摩擦ダンパー1は、ラーメン高架橋下部構造やオフィスビル(いずれも図示せず)に配置されたH形鋼からなるブレース材に設置される場合を例としたものであって、図示しない柱梁接合部から延びるブレース材2aと、該柱梁接合部の対角に位置する別の柱梁接合部から延びるブレース材2bとの間に介装してあり、ブレース材2aに形成された他方の取付け部位としての摺動板3と、ブレース材2bに連結された一方の取付け部位としての摩擦板4とを備える。ここで、摺動板3及び摩擦板4は、摩擦ダンパー1の相対移動入力部位として機能する。
[First Embodiment]
FIG. 1 is an exploded perspective view showing a friction damper as a vibration damping device according to the present embodiment. The friction damper 1 according to the present embodiment is an example of a case where the friction damper 1 is installed on a brace material made of H-section steel arranged in a ramen viaduct substructure or an office building (both not shown). The brace material 2a extending from the non-column beam joint and the brace material 2b extending from another column beam joint located diagonally to the column beam joint are interposed between the brace material 2a and the brace material 2a. The sliding plate 3 as the other attachment portion and the friction plate 4 as one attachment portion connected to the brace material 2b are provided. Here, the sliding plate 3 and the friction plate 4 function as a relative movement input portion of the friction damper 1.

摺動板3は、ブレース材2aの一部である上下フランジの左右でそれぞれ構成してあり(同図では下フランジの摺動板は省略)、その表面と裏面にはステンレス板で構成された摺動材5をそれぞれ取り付けてある。   The sliding plate 3 is configured on the left and right sides of the upper and lower flanges that are part of the brace material 2a (the sliding plate of the lower flange is omitted in the figure), and the front and back surfaces are configured with stainless steel plates. Each of the sliding members 5 is attached.

摩擦板4は、その基端側でブレース材2bにボルト接合により連結してあるとともに、先端側には、ブレース材2a,2bに材軸方向相対変位が生じたときに、該相対変位に応じて摺動材5の摺動面上を摺動する摩擦材6を取り付けてある。   The friction plate 4 is connected to the brace material 2b by a bolt joint on the base end side, and the friction plate 4 responds to the relative displacement when a relative axial displacement occurs in the brace materials 2a and 2b on the distal end side. A friction material 6 that slides on the sliding surface of the sliding material 5 is attached.

摩擦材6は、例えばステンレス基板にフェノール樹脂を積層して構成することができる。   The friction material 6 can be configured by, for example, laminating a phenol resin on a stainless steel substrate.

摺動材5及び摩擦材6は、フランジの表側と裏側にそれぞれ対称配置されたいわゆる2面摩擦タイプであり、上下フランジの左右に計4組設置してある。   The sliding material 5 and the friction material 6 are so-called two-surface friction types arranged symmetrically on the front side and the back side of the flange, and a total of four sets are installed on the left and right sides of the upper and lower flanges.

摩擦板4には、摩擦材6の中央近傍を貫通するようにボルト孔7を形成してあるとともに、摺動材5にはスリット8を、摺動板3にはスリット9をそれぞれ設けてあり、台座11が嵌め込まれた高力ボルト10を、フランジ裏側から摩擦板4のボルト孔7と摺動材5のスリット8に順次挿通し、さらに摺動板3のスリット9に挿通した後、フランジ表側に配置された摺動材5のスリット8と摩擦板4のボルト孔7に順次挿通し、該高力ボルトの先端に皿バネ12及び台座13を嵌め込んだ上、その上からナット14を螺合して締め付けることにより、摺動板3と摩擦板4との相対移動が拘束されることなく、各摩擦材6がそれに対応する摺動材5にそれぞれ押圧されるようになっている。   A bolt hole 7 is formed in the friction plate 4 so as to penetrate the vicinity of the center of the friction material 6, a slit 8 is provided in the sliding material 5, and a slit 9 is provided in the sliding plate 3. The high-strength bolt 10 fitted with the pedestal 11 is sequentially inserted from the rear side of the flange into the bolt hole 7 of the friction plate 4 and the slit 8 of the sliding member 5, and further inserted into the slit 9 of the sliding plate 3, The slit 8 of the sliding member 5 arranged on the front side and the bolt hole 7 of the friction plate 4 are sequentially inserted, the disc spring 12 and the pedestal 13 are fitted to the tip of the high-strength bolt, and the nut 14 is inserted from above. By screwing and tightening, the relative movement between the sliding plate 3 and the friction plate 4 is not restricted, and each friction material 6 is pressed against the corresponding sliding material 5.

摩擦ダンパー1には本実施形態に係る移動制限解除機構20を備えてあり、フランジの表側と裏側に一つずつ、上下フランジの左右に計8つ設けてある(同図では下フランジ左右の4つは省略)。   The friction damper 1 is provided with a movement restriction releasing mechanism 20 according to this embodiment, and a total of eight are provided on the front and back sides of the flange, one on each side of the upper and lower flanges (in the figure, 4 on the left and right sides of the lower flange). Are omitted).

移動制限解除機構20は、第1の連結部としての連結部23及び該連結部から延設された突設部24で構成された移動制限解除部材21を、連結部23を介して摺動板3に連結するとともに、突設部24を摩擦板4に形成された凹部22に嵌合して構成してある。   The movement restriction release mechanism 20 is configured to connect a movement restriction release member 21 composed of a connecting portion 23 as a first connecting portion and a protruding portion 24 extending from the connecting portion via the connecting portion 23. 3, and the projecting portion 24 is configured to fit into a recess 22 formed in the friction plate 4.

突設部24には図2(a)に示したように、摺動板3及び摩擦板4の相対移動に伴って凹部22から作用するせん断荷重により該突設部が破断するように基端側近傍にスリット状の断面欠損部31を形成してある。   As shown in FIG. 2A, the projecting portion 24 has a base end so that the projecting portion is broken by a shear load acting from the recess 22 as the sliding plate 3 and the friction plate 4 move relative to each other. A slit-like cross-sectional defect 31 is formed in the vicinity of the side.

断面欠損部31は、その位置での突設部24の断面積が所望の破断荷重に応じた大きさとなるように適宜形成すればよい。   What is necessary is just to form the cross-sectional defect | deletion part 31 suitably so that the cross-sectional area of the protrusion part 24 in the position may become a magnitude | size according to a desired breaking load.

突設部24の外面には、凹部22の内面のうち、摺動板3及び摩擦板4の相対移動方向(同図白抜き矢印の方向)に沿って対向する対向面32,32にそれぞれ当接する2つの当接面33,33を互いに背中合わせとなるように設けてある。   On the outer surface of the projecting portion 24, the opposing surfaces 32, 32 that face each other along the relative movement direction of the sliding plate 3 and the friction plate 4 (in the direction of the white arrow in the figure), of the inner surface of the recess 22, respectively. The two contact surfaces 33 and 33 in contact with each other are provided so as to be back to back.

ここで、突設部24は、その当接面33,33がそれぞれテーパ面となるように、凹部22は、その対向面32,32がそれらに対応する傾斜面となるようにそれぞれ構成してある。   Here, the protruding portion 24 is configured such that the contact surfaces 33 and 33 are tapered surfaces, and the concave portion 22 is configured such that the opposing surfaces 32 and 32 are inclined surfaces corresponding to them. is there.

なお、突設部24を凹部22に嵌め込んだときに該突設部の当接面33,33が該凹部の対向面32,32に確実に当接するよう、同図(b)に示したように、連結部23が摩擦板4に当接しないようにかつ突設部24の先端が凹部22の底面に当接しないように、突設部24及び凹部22の形状を適宜決定する。   In addition, when the projecting portion 24 is fitted into the recess 22, the contact surfaces 33, 33 of the projecting portion are shown in FIG. As described above, the shapes of the projecting portion 24 and the recessed portion 22 are appropriately determined so that the connecting portion 23 does not contact the friction plate 4 and the tip of the projecting portion 24 does not contact the bottom surface of the recessed portion 22.

一方、連結部23にはボルト孔34,34を、摺動板3にはボルト孔35,35をそれぞれ穿孔してあり、高力ボルト25,25を、図1ではフランジの上側、図2(a)では手前側に位置する移動制限解除部材21の連結部23のボルト孔34,34に挿通してから摺動板3のボルト孔35,35に挿通し、次いで、図1ではフランジの下側、図2(a)では奥側に位置するもう一つの移動制限解除部材21(図示せず)の連結部23のボルト孔34,34に同様に挿通することで、摺動板3を挟み付ける形で2つの移動制限解除部材21,21を連結部23,23を介して該摺動板に連結できるようになっている。   On the other hand, bolt holes 34, 34 are drilled in the connecting portion 23, and bolt holes 35, 35 are drilled in the sliding plate 3. The high-strength bolts 25, 25 are shown in FIG. In a), the bolts 34 and 34 of the connecting portion 23 of the movement restriction releasing member 21 located on the near side are inserted into the bolt holes 35 and 35 of the sliding plate 3, and in FIG. 2A, the sliding plate 3 is sandwiched by being similarly inserted into the bolt holes 34 of the connecting portion 23 of another movement restriction releasing member 21 (not shown) located on the back side in FIG. The two movement restriction releasing members 21 and 21 can be connected to the sliding plate via the connecting portions 23 and 23 by attaching them.

ここで、摺動板3に形成されたボルト孔35,35は、高力ボルト25,25の外径よりも内径が大きくなるように形成してあり、その遊びの範囲内で移動制限解除部材21を摺動板3や摩擦板4と平行な面内で2方向に位置調整できるようになっている。   Here, the bolt holes 35, 35 formed in the sliding plate 3 are formed so that the inner diameter is larger than the outer diameter of the high-strength bolts 25, 25, and the movement restriction releasing member is within the range of play. 21 can be adjusted in two directions within a plane parallel to the sliding plate 3 and the friction plate 4.

移動制限解除機構20を摩擦ダンパー1に設けるには、図3(a)に示すように移動制限解除部材21の突設部24を摩擦板4に形成された凹部22に嵌め込んで、該突設部の当接面33,33を凹部22の対向面32,32にそれぞれ当接させる。なお、図示しないが、摺動板3の反対側についても移動制限解除部材21を同様に配置する。   In order to provide the movement restriction releasing mechanism 20 on the friction damper 1, the protruding portion 24 of the movement restriction releasing member 21 is fitted into the recess 22 formed in the friction plate 4 as shown in FIG. The abutment surfaces 33 and 33 of the installation part are brought into contact with the opposing surfaces 32 and 32 of the recess 22 respectively. Although not shown, the movement restriction releasing member 21 is similarly arranged on the opposite side of the sliding plate 3.

このとき、摺動板3のボルト孔35は、高力ボルト25の外径よりも大きく形成してあるため、その遊びの範囲で移動制限解除部材21を同図(a)に示すx,y方向に位置調整することが可能であり、突設部24の当接面33,33を凹部22の対向面32,32にそれぞれ確実に当接させることができる。   At this time, the bolt hole 35 of the sliding plate 3 is formed larger than the outer diameter of the high-strength bolt 25, so that the movement restriction releasing member 21 is shown in the range x, y shown in FIG. It is possible to adjust the position in the direction, and the contact surfaces 33, 33 of the projecting portion 24 can be reliably brought into contact with the opposing surfaces 32, 32 of the recess 22, respectively.

次に、上述した当接状態を維持しつつ、同図(b)に示すように、高力ボルト25に座金36を通してから、該高力ボルトを同図では摺動板3の左側に位置する移動制限解除部材21の連結部23のボルト孔34に挿通し、次いで摺動板3のボルト孔35に挿通した後、同図では摺動板3の右側に位置する移動制限解除部材21の連結部23のボルト孔34に挿通し、その先端に座金36を通してから該先端にナット26を螺合して締め付ける。   Next, while maintaining the above-mentioned contact state, as shown in FIG. 4B, the high strength bolt 25 is positioned on the left side of the sliding plate 3 after passing the washer 36 through the high strength bolt 25. After passing through the bolt hole 34 of the connecting portion 23 of the movement restriction releasing member 21 and then through the bolt hole 35 of the sliding plate 3, the connection of the movement restriction releasing member 21 located on the right side of the sliding plate 3 in FIG. The bolt 23 is inserted into the bolt hole 34 of the portion 23, a washer 36 is passed through the tip, and a nut 26 is screwed into the tip and tightened.

このようにすると、2つの移動制限解除部材21,21は、摺動板3を挟む形で連結部23,23を介して該摺動板に摩擦接合で取り付けられる。   In this way, the two movement restriction releasing members 21 and 21 are attached to the sliding plate via the connecting portions 23 and 23 with the sliding plate 3 interposed therebetween by friction bonding.

本実施形態に係る移動制限解除機構20においては、破断荷重未満のせん断荷重下では、突設部24と凹部22の嵌合が維持されて摺動板3及び摩擦板4の相対移動が制限され、摩擦ダンパー1は作動しない。   In the movement restriction release mechanism 20 according to the present embodiment, under the shear load less than the breaking load, the fitting of the projecting portion 24 and the concave portion 22 is maintained, and the relative movement of the sliding plate 3 and the friction plate 4 is restricted. The friction damper 1 does not operate.

一方、破断荷重かそれを上回るせん断荷重が作用したときには、突設部24が断面欠損部31で破断し、図4に示すように摺動板3及び摩擦板4の相対移動制限が解除されて同図矢印方向に相対移動可能な状態となり、摩擦ダンパー1が作動する。なお、同図では、破断した突設部24は省略してある。   On the other hand, when a breaking load or a shear load exceeding the breaking load is applied, the projecting portion 24 is broken at the cross-sectional defect portion 31, and the relative movement restriction of the sliding plate 3 and the friction plate 4 is released as shown in FIG. The frictional damper 1 is actuated with the relative movement in the arrow direction. In the figure, the broken projecting portion 24 is omitted.

ここで、移動制限中は突設部24と凹部22とが緩みなく連結されているため、摺動板3及び摩擦板4に入力したせん断荷重が、突設部24と凹部22に荷重伝達されるまでの間、タイムラグはほとんど発生せず、突設部24は、破断荷重以上のせん断荷重が摺動板3及び摩擦板4に入力されたとほぼ同時に破断する。   Here, since the projecting portion 24 and the recess 22 are connected without loosening during movement restriction, the shear load input to the sliding plate 3 and the friction plate 4 is transmitted to the projecting portion 24 and the recess 22. In the meantime, almost no time lag occurs, and the projecting portion 24 breaks almost simultaneously with a shear load greater than the breaking load being input to the sliding plate 3 and the friction plate 4.

以上説明したように、本実施形態に係る移動制限解除機構20及びそれを用いた摩擦ダンパー1によれば、突設部24と凹部22とが緩みなく連結されるので、破断荷重以上のせん断荷重が摺動板3及び摩擦板4に入力したとき、該せん断荷重が突設部24と凹部22に伝達されるまでの間にタイムラグはほとんど発生せず、突設部24は、上述のせん断荷重が摺動板3及び摩擦板4に入力されたとほぼ同時に破断し、摺動板3及び摩擦板4の相対移動制限もその瞬間に解除される。   As described above, according to the movement restriction releasing mechanism 20 and the friction damper 1 using the same according to the present embodiment, the protruding portion 24 and the recessed portion 22 are connected without loosening, so that the shear load greater than the breaking load is obtained. Is input to the sliding plate 3 and the friction plate 4, there is almost no time lag until the shear load is transmitted to the projecting portion 24 and the recessed portion 22. Is broken almost simultaneously with the input to the sliding plate 3 and the friction plate 4, and the restriction on the relative movement of the sliding plate 3 and the friction plate 4 is also released at that moment.

したがって、摩擦ダンパー1の作動開始のタイミングが遅れるおそれがなくなり、かくして設計時に予定されていた制振作用が確実に発揮される。   Accordingly, there is no possibility that the timing of starting the operation of the friction damper 1 is delayed, and thus the vibration damping action planned at the time of design is reliably exhibited.

また、本実施形態に係る移動制限解除機構20によれば、突設部24の当接面33,33をテーパ面とするとともに、凹部22の対向面32,32をそれらに対応する傾斜面としたので、突設部24を凹部22に嵌め込むだけで、突設部24の当接面33,33を凹部22の対向面32,32に確実に当接させることが可能となり、かくして厳しい精度で加工せずとも、突設部24と凹部22とを緩みなく連結することができる。   Further, according to the movement restriction release mechanism 20 according to the present embodiment, the contact surfaces 33, 33 of the projecting portion 24 are tapered surfaces, and the opposing surfaces 32, 32 of the recess 22 are inclined surfaces corresponding to them. Therefore, it is possible to make the contact surfaces 33, 33 of the projecting portion 24 abut on the opposing surfaces 32, 32 of the recess 22 only by fitting the projecting portion 24 into the recess 22, and thus the strict accuracy. Even if it does not process by, the protrusion part 24 and the recessed part 22 can be connected without loosening.

また、本実施形態に係る移動制限解除機構20によれば、連結部23を摺動板3に連結するにあたり、摺動板3に形成されたボルト孔35,35を、高力ボルト25,25の外径よりも内径が大きくなるように形成することで、その遊びの範囲内で移動制限解除部材21を摺動板3や摩擦板4と平行な面内で2方向に位置調整することができるように構成するとともに、連結部23と摺動板3との連結強度については、高力ボルトによる摩擦接合で確保するようにしたので、上述した突設部24と凹部22とを確実に緩みなく連結することが可能となる。   Further, according to the movement restriction releasing mechanism 20 according to the present embodiment, when connecting the connecting portion 23 to the sliding plate 3, the bolt holes 35, 35 formed in the sliding plate 3 are replaced with the high strength bolts 25, 25. By forming the inner diameter larger than the outer diameter, the movement restriction releasing member 21 can be adjusted in two directions within a plane parallel to the sliding plate 3 and the friction plate 4 within the range of play. The connecting portion 23 and the sliding plate 3 are configured so that the connection strength is ensured by friction welding with a high-strength bolt, so that the protruding portion 24 and the concave portion 22 are surely loosened. It is possible to connect without any problem.

本実施形態では、いわゆる2面タイプの摩擦ダンパー1に移動制限解除機構20を備えた例を説明したが、摩擦ダンパーの種類は任意であり、例えば図5に示した4面タイプの摩擦ダンパーにも適用することが可能である。   In the present embodiment, an example in which the so-called two-surface type friction damper 1 is provided with the movement restriction release mechanism 20 has been described. However, the type of the friction damper is arbitrary, and for example, the four-surface type friction damper shown in FIG. Can also be applied.

同図に示した摩擦ダンパー51は、上述した実施形態と同様、図示しない柱梁接合部から延びるブレース材2aと、該柱梁接合部の対角に位置する別の柱梁接合部から延びるブレース材2bとの間に介装してあるが、本変形例では、ブレース材2aのフランジが挟み込まれるように一対の摺動板52,52を配置してそれらの基端側を該フランジの各面にそれぞれ連結するとともに、一対の摺動板52,52を挟み込むようにそれらの外側に摩擦板4,4を配置してそれらの基端側をブレース材2bのフランジの各面にそれぞれ連結し、各摺動板52には、その両面に摺動材5をそれぞれ取り付けるとともに、摺動材5の摺動面を摺動する摩擦材6を、各摩擦板4の裏面と、ブレース材2bのフランジにそれぞれ取り付けてあり、台座11が嵌め込まれた高力ボルト10を、フランジの一方の側(同図では左側)から摩擦板4のボルト孔7と摺動板52のスリット9及びその両側に取り付けられた摺動材5,5のスリット8,8に挿通した後、フランジの各面にそれぞれ取り付けられた摩擦材6の中央近傍を貫通するボルト孔に挿通し、フランジの他方の側で同様に、摺動板52のスリット9及びその両側に取り付けられた摺動材5,5のスリット8,8と摩擦板4のボルト孔7に順次挿通し、該高力ボルトの先端に皿バネ12及び台座13を嵌め込んだ上、その上からナット14を螺合して締め付けることにより、一対の摺動板52,52と一対の摩擦板4,4との相対移動が拘束されることなく、各摩擦材6がそれぞれに対応する各摺動材5の摺動面に押圧されるようになっている。   As in the above-described embodiment, the friction damper 51 shown in the figure includes a brace material 2a extending from a column beam joint (not shown) and a brace extending from another column beam joint located diagonally to the column beam joint. In this modified example, a pair of sliding plates 52, 52 are arranged so that the flange of the brace material 2a is sandwiched between them, and the base end side of each of the flanges is interposed between the flanges 2b. The friction plates 4 and 4 are arranged outside the pair of sliding plates 52 and 52 so as to sandwich the pair of sliding plates 52 and 52, and the base ends thereof are connected to the respective surfaces of the flange of the brace material 2b. Each sliding plate 52 is attached with sliding material 5 on both sides thereof, and friction material 6 that slides on the sliding surface of sliding material 5 is attached to the back surface of each friction plate 4 and brace material 2b. It is attached to each flange, and the base 11 is The high-strength bolt 10 is inserted into the bolt hole 7 of the friction plate 4 and the slit 9 of the sliding plate 52 and the sliding members 5 and 5 attached to both sides thereof from one side of the flange (left side in the figure). Are inserted through the bolt holes penetrating through the vicinity of the center of the friction material 6 attached to each surface of the flange, and the slit 9 of the sliding plate 52 is similarly formed on the other side of the flange. And the slits 8 and 8 of the sliding members 5 and 5 attached to both sides thereof and the bolt holes 7 of the friction plate 4 are sequentially inserted, and the disc spring 12 and the pedestal 13 are fitted to the tips of the high strength bolts. By screwing and tightening the nut 14 from above, the frictional members 6 correspond to each other without restraining relative movement between the pair of sliding plates 52 and 52 and the pair of friction plates 4 and 4. It comes to be pressed against the sliding surface of each sliding material 5 That.

ここで、摩擦ダンパー51には、ブレース材2bのフランジの左右に移動制限解除機構20を備えてあり、該各移動制限解除機構を構成する移動制限解除部材21の連結部23をブレース材2bのフランジの各面にそれぞれ連結するとともに、該連結部から延設された突設部24を、摩擦板4に形成された凹部22にそれぞれ嵌合してある。   Here, the friction damper 51 is provided with a movement restriction release mechanism 20 on the left and right sides of the flange of the brace material 2b, and the connecting portion 23 of the movement restriction release member 21 constituting each movement restriction release mechanism is connected to the brace material 2b. Each of the flanges is connected to each surface of the flange, and a projecting portion 24 extending from the connecting portion is fitted into a recess 22 formed in the friction plate 4.

また、連結部23にはボルト孔34,34を、ブレース材2bのフランジにはボルト孔35,35(図示せず)をそれぞれ穿孔してあり、高力ボルト25,25を、同図では左側に配置された移動制限解除部材21の連結部23のボルト孔34,34に挿通してからブレース材2bのフランジのボルト孔35,35に挿通し、次いで、右側の移動制限解除部材21の連結部23のボルト孔34,34に挿通し、しかる後、該高力ボルトの先端にナット26,26を螺合して締め付けることにより、ブレース材2bのフランジを挟み付ける形で2つの移動制限解除部材21,21を連結部23,23を介して該フランジに取り付けてある。   Further, bolt holes 34, 34 are drilled in the connecting portion 23, and bolt holes 35, 35 (not shown) are drilled in the flange of the brace material 2b, respectively. Is inserted into the bolt holes 34, 34 of the connecting portion 23 of the movement restriction releasing member 21 arranged in the flange, and then inserted into the bolt holes 35, 35 of the flange of the brace material 2b, and then connected to the right movement restriction releasing member 21. Two movement restrictions are released by inserting the flanges of the brace material 2b by inserting the nuts 26, 26 into the bolt holes 34, 34 of the portion 23 and then tightening the nuts 26, 26 to the ends of the high-strength bolts. The members 21 and 21 are attached to the flange via connecting portions 23 and 23.

以下、その他の構成や作用効果については上述した実施形態とほぼ同様であるので、ここではその説明を省略する。   Hereinafter, other configurations and functions and effects are substantially the same as those of the above-described embodiment, and thus description thereof is omitted here.

また、本実施形態では、凹部が形成される一方の取付け部位を摩擦板4、該凹部に嵌合される突設部が設けられた第1の連結部を連結する他方の取付け部位を摺動板3としたが、これとは逆に、例えば摩擦板の幅を摺動板の幅より大きくすることにより、凹部が形成される一方の取付け部位を摺動板、該凹部に嵌合される突設部が設けられた第1の連結部を連結する他方の取付け部位を摩擦板としてもかまわない。   Further, in this embodiment, one attachment site where the recess is formed slides on the friction plate 4, and the other attachment site which connects the first connection part provided with the projecting portion fitted to the recess is slid. Although the plate 3 is used, on the contrary, for example, by making the width of the friction plate larger than the width of the sliding plate, one mounting portion where the concave portion is formed is fitted into the sliding plate and the concave portion. The other attachment site for connecting the first connecting portion provided with the protruding portion may be a friction plate.

また、本実施形態では、他方の取付け部位に連結される第1の連結部に突設部を設け、これを一方の取付け部位に形成された凹部に嵌合するようにしたが、これに代えて、一方の取付け部位に連結される第2の連結部に凹部を形成し、該凹部に他方の取付け部位に設けられた突設部を嵌合するようにしてもかまわない。   Further, in the present embodiment, the projecting portion is provided in the first connecting portion connected to the other mounting portion, and this is fitted into the concave portion formed in the one mounting portion. Then, a recess may be formed in the second connecting portion connected to one attachment site, and a projecting portion provided in the other attachment site may be fitted into the recess.

図6はかかる変形例を示した詳細斜視図であり、該変形例に係る移動制限解除機構は、第2の連結部としての連結部23aに凹部22aを形成してなる移動制限解除部材21aを該連結部を介して摺動板3に連結するとともに、該凹部に摩擦板4の縁部から延設された突設部24aを嵌合して構成してある。   FIG. 6 is a detailed perspective view showing such a modification, and the movement restriction releasing mechanism according to the modification includes a movement restriction releasing member 21a formed by forming a recess 22a in the connecting portion 23a as the second connecting portion. While being connected to the sliding plate 3 through the connecting portion, a projecting portion 24 a extending from the edge of the friction plate 4 is fitted into the concave portion.

突設部24aには、摺動板3及び摩擦板4の相対移動に伴って凹部22aから作用するせん断荷重によって、該突設部が破断するように基端側近傍にスリット状の断面欠損部31を形成してある。   The projecting portion 24a has a slit-like cross-sectional defect portion in the vicinity of the base end side so that the projecting portion is broken by a shearing load acting from the recess 22a as the sliding plate 3 and the friction plate 4 move relative to each other. 31 is formed.

突設部24aの外面には、凹部22aの内面のうち、摺動板3及び摩擦板4の相対移動方向(同図白抜き矢印の方向)に沿って対向する対向面32,32にそれぞれ当接する2つの当接面33,33を互いに背中合わせとなるように設けてある。   The outer surface of the projecting portion 24a is opposed to the opposing surfaces 32 and 32, which are opposed to each other along the relative movement direction of the sliding plate 3 and the friction plate 4 (the direction of the white arrow in the figure), of the inner surface of the concave portion 22a. The two contact surfaces 33 and 33 in contact with each other are provided so as to be back to back.

ここで、突設部24aは、その当接面33,33がそれぞれテーパ面となるように、凹部22aは、その対向面32,32がそれらに対応する傾斜面となるようにそれぞれ構成してある。   Here, the projecting portion 24a is configured such that the contact surfaces 33, 33 are tapered surfaces, and the recess 22a is configured so that the opposing surfaces 32, 32 are inclined surfaces corresponding to them. is there.

一方、連結部23aにはボルト孔34,34を、摺動板3にはボルト孔35,35をそれぞれ穿孔してあり、図3で説明したと同様、高力ボルト25,25を、移動制限解除部材21aの連結部23aのボルト孔34,34に挿通してから摺動板3のボルト孔35,35に挿通し、次いで、摺動板3の反対側に配置されたもう一つの移動制限解除部材21a(図示せず)の連結部23aのボルト孔34,34に挿通することで、摺動板3を挟み付ける形で2つの移動制限解除部材21a,21aを連結部23a,23aを介して該摺動板に連結できるようになっている。   On the other hand, bolt holes 34, 34 are drilled in the connecting portion 23a, and bolt holes 35, 35 are drilled in the sliding plate 3. As described with reference to FIG. Another movement restriction arranged on the opposite side of the sliding plate 3 after passing through the bolt holes 34, 34 of the connecting portion 23a of the release member 21a and then through the bolt holes 35, 35 of the sliding plate 3 By passing through the bolt holes 34, 34 of the connecting portion 23a of the releasing member 21a (not shown), the two movement restriction releasing members 21a, 21a are interposed via the connecting portions 23a, 23a so as to sandwich the sliding plate 3. And can be connected to the sliding plate.

以下、他の詳細な構成や作用効果は、上述した実施形態とほぼ同様であるので、ここではその説明を省略する。   Hereinafter, other detailed configurations and operational effects are substantially the same as those of the above-described embodiment, and thus description thereof is omitted here.

また、本実施形態では、一方の取付け部位に形成された凹部に突設部を嵌合するようにしたが、これに代えて、一方の取付け部位に連結される第2の連結部に凹部を形成するようにしてもかまわない。   Further, in the present embodiment, the protruding portion is fitted into the recess formed in one attachment site, but instead, a recess is provided in the second connection portion connected to one attachment site. It does not matter if it is formed.

図7はかかる変形例を示した詳細斜視図であり、該変形例に係る移動制限解除機構は、第2の連結部としての連結部23bに凹部22bを形成してなる移動制限解除部材21bを該連結部を介して摩擦板4に連結し、該凹部に移動制限解除部材21の突設部24を嵌合して構成してある。   FIG. 7 is a detailed perspective view showing such a modified example, and the movement restriction releasing mechanism according to the modified example includes a movement restriction releasing member 21b formed by forming a recess 22b in the connecting part 23b as the second connecting part. It is connected to the friction plate 4 through the connecting portion, and the protruding portion 24 of the movement restriction releasing member 21 is fitted into the concave portion.

本変形例の構成や作用効果は、上述した実施形態とほぼ同様であるので、ここではその説明を省略するが、突設部24を凹部22bに嵌合する際の位置合わせは、移動制限解除部材21と摺動板3との間で行われる上述した位置調整機能で可能であるため、摩擦板4への移動制限解除部材21bの連結は、通常のボルト接合や溶接等によって適宜行えばよい。   Since the configuration and operational effects of the present modification are substantially the same as those of the above-described embodiment, the description thereof is omitted here, but the positioning when fitting the protruding portion 24 to the recess 22b is a movement restriction release. Since the above-described position adjustment function performed between the member 21 and the sliding plate 3 is possible, the connection of the movement restriction releasing member 21b to the friction plate 4 may be appropriately performed by ordinary bolt joining, welding, or the like. .

また、本実施形態では、突設部24の当接面33,33を平面状のテーパ面とするとともに、対応する凹部22の対向面32,32を平面状の傾斜面としたが、図8に示すように、本発明の突設部を、テーパ面33と直立面33dとで当接面が構成された突設部24dとするとともに、本発明の凹部を、傾斜面32と直立面32dとで対向面が構成された凹部22dとしてもかまわない。   Further, in the present embodiment, the contact surfaces 33, 33 of the projecting portion 24 are planar tapered surfaces, and the corresponding surfaces 32, 32 of the corresponding recesses 22 are planar inclined surfaces. As shown in FIG. 4, the projecting portion of the present invention is a projecting portion 24d having a contact surface formed by a tapered surface 33 and an upstanding surface 33d, and the recess of the present invention is formed by an inclined surface 32 and an upstanding surface 32d. The recess 22d may be a recess 22d having a facing surface.

また、本実施形態では、本発明に係る移動制限解除機構を制振装置である摩擦ダンパーに備えた構成について説明したが、これに代えて、第2実施形態で説明するように、すべり支承に備えた構成とすることができる。   In the present embodiment, the configuration in which the movement restriction releasing mechanism according to the present invention is provided in the friction damper, which is a vibration damping device, has been described. Instead, as described in the second embodiment, the sliding support is used. It can be set as the structure provided.

[第2実施形態]
次に、第2実施形態について説明する。なお、第1実施形態と実質的に同一の部品等については同一の符号を付してその説明を省略する。
[Second Embodiment]
Next, a second embodiment will be described. Note that components that are substantially the same as those of the first embodiment are denoted by the same reference numerals, and description thereof is omitted.

図9は、本実施形態に係るすべり支承を示した全体斜視図及び断面図である。本実施形態に係るすべり支承91は、橋桁96と該橋桁を支持する橋脚92との間に設置される場合を例としたものであって、橋脚92に取り付けられる下部構造側すべりプレート93と、該下部構造側すべりプレートの上面に接着されたゴムパッド94と、該ゴムパッドの上面に接着された他方の取付け部位としてのすべり板95と、該すべり板の上面に取り付けられた摺動材(図示せず)上を摺動する摩擦材(図示せず)が下面に取り付けられ橋桁96の下面に取り付けられる一方の取付け部位としての上部構造側すべりプレート97とを備える。ここで、すべり板95及び上部構造側すべりプレート97は、すべり支承91の相対移動入力部位として機能する。   FIG. 9 is an overall perspective view and a sectional view showing a sliding bearing according to the present embodiment. The sliding support 91 according to the present embodiment is an example of a case where the sliding support 91 is installed between a bridge girder 96 and a pier 92 supporting the bridge girder, and a lower structure side sliding plate 93 attached to the pier 92, A rubber pad 94 bonded to the upper surface of the lower structure side sliding plate, a sliding plate 95 as the other attachment site bonded to the upper surface of the rubber pad, and a sliding material (not shown) attached to the upper surface of the sliding plate A friction material (not shown) that slides on the lower surface and an upper structure side sliding plate 97 as one attachment portion that is attached to the lower surface of the bridge beam 96. Here, the sliding plate 95 and the upper structure side sliding plate 97 function as a relative movement input portion of the sliding support 91.

すべり支承91は、上部構造側すべりプレート97の橋軸直交側(図9(b)では左右側)に設けられた肩部に係合するように下部構造側すべりプレート93に立設されたサイドブロック98,98を備えており、上部構造側すべりプレート97、ひいては橋桁96が橋軸直交方向(図9(b)では左右方向)に移動するのを制限しつつ、該上部構造側すべりプレートがすべり板95上を橋軸方向(図9(b)では紙面直交方向)に沿って摺動できるようになっている。   The sliding support 91 is a side erected on the lower structure side sliding plate 93 so as to engage with a shoulder provided on the bridge structure orthogonal side of the upper structure side sliding plate 97 (left and right sides in FIG. 9B). Blocks 98 and 98 are provided, and the upper structure side sliding plate 97, and thus the bridge girder 96 is restricted from moving in the direction orthogonal to the bridge axis (left and right in FIG. 9B), The sliding plate 95 can be slid along the bridge axis direction (the direction orthogonal to the paper surface in FIG. 9B).

ゴムパッド94は、そのせん断変形によって温度収縮等に起因する橋軸方向の相対変位を吸収できるようになっている。   The rubber pad 94 can absorb the relative displacement in the bridge axis direction caused by temperature shrinkage or the like by the shear deformation.

摺動材は例えばステンレスで構成し、摩擦材はPTFE(ポリテトラフルオロエチレン)を適当な基材に被膜して構成することが可能である。   The sliding material can be made of, for example, stainless steel, and the friction material can be made by coating PTFE (polytetrafluoroethylene) on a suitable base material.

すべり支承91には移動制限解除機構20aを備えてあり、すべり板95の橋軸直交側にそれぞれ設けてある。   The sliding bearing 91 is provided with a movement restriction releasing mechanism 20a, which is provided on the side perpendicular to the bridge axis of the sliding plate 95.

移動制限解除機構20aは図10でよくわかるように、連結部23及び該連結部から延設された突設部24で構成された移動制限解除部材21を、連結部23を介してすべり板95に連結するとともに、突設部24を上部構造側すべりプレート97に形成された凹部22に嵌合して構成してある。   As can be clearly seen in FIG. 10, the movement restriction releasing mechanism 20 a is configured to connect the movement restriction releasing member 21 including the connecting portion 23 and the protruding portion 24 extending from the connecting portion via the connecting portion 23. And the projecting portion 24 is configured to fit into the recess 22 formed in the upper structure side slide plate 97.

突設部24には、すべり板95及び上部構造側すべりプレート97の相対移動に伴って凹部22から作用するせん断荷重により該突設部が破断するように基端側近傍にスリット状の断面欠損部31を形成してある。   The protruding portion 24 has a slit-shaped cross-sectional defect in the vicinity of the proximal end so that the protruding portion is broken by a shearing load acting from the concave portion 22 as the sliding plate 95 and the upper structure side sliding plate 97 move relative to each other. A portion 31 is formed.

断面欠損部31は、その位置での突設部24の断面積が所望の破断荷重に応じた大きさとなるように適宜形成すればよい。   What is necessary is just to form the cross-sectional defect | deletion part 31 suitably so that the cross-sectional area of the protrusion part 24 in the position may become a magnitude | size according to a desired breaking load.

突設部24の外面には、凹部22の内面のうち、すべり板95及び上部構造側すべりプレート97の相対移動方向(同図白抜き矢印の方向)に沿って対向する対向面32,32にそれぞれ当接する2つの当接面33,33を互いに背中合わせとなるように設けてある。   On the outer surface of the projecting portion 24, the opposing surfaces 32, 32 are opposed to each other along the relative movement direction of the sliding plate 95 and the upper structure side sliding plate 97 (in the direction of the white arrow in the figure). Two contact surfaces 33 and 33 that contact each other are provided so as to be back to back.

ここで、突設部24は、その当接面33,33がそれぞれテーパ面となるように、凹部22は、その対向面32,32がそれらに対応する傾斜面となるようにそれぞれ構成してある。   Here, the protruding portion 24 is configured such that the contact surfaces 33 and 33 are tapered surfaces, and the concave portion 22 is configured such that the opposing surfaces 32 and 32 are inclined surfaces corresponding to them. is there.

なお、突設部24を凹部22に嵌め込んだときに該突設部の当接面33,33が該凹部の対向面32,32に確実に当接するよう、同図(b)に示したように、連結部23が上部構造側すべりプレート97に当接しないようにかつ突設部24の先端が凹部22の底面に当接しないように、突設部24及び凹部22の形状を適宜決定する。   In addition, when the projecting portion 24 is fitted into the recess 22, the contact surfaces 33, 33 of the projecting portion are shown in FIG. As described above, the shapes of the projecting portion 24 and the recessed portion 22 are appropriately determined so that the connecting portion 23 does not contact the upper structure side slide plate 97 and the tip of the projecting portion 24 does not contact the bottom surface of the recessed portion 22. To do.

一方、連結部23にはボルト孔34,34を、すべり板95にはボルト孔35,35をそれぞれ穿孔してあり、高力ボルト25,25を、図9では上側、図10(a)では手前側に位置する移動制限解除部材21の連結部23のボルト孔34,34に挿通してからすべり板95のボルト孔35,35に挿通した上、その先端にナット26,26を螺合して締め付けることにより、移動制限解除部材21を連結部23を介してすべり板95に連結できるようになっている。   On the other hand, bolt holes 34, 34 are drilled in the connecting portion 23, and bolt holes 35, 35 are drilled in the sliding plate 95. The high strength bolts 25, 25 are formed on the upper side in FIG. 9, and in FIG. After being inserted into the bolt holes 34, 34 of the connecting portion 23 of the movement restriction releasing member 21 located on the near side and then inserted into the bolt holes 35, 35 of the sliding plate 95, the nuts 26, 26 are screwed onto the tips thereof. Thus, the movement restriction releasing member 21 can be connected to the sliding plate 95 via the connecting portion 23.

ここで、すべり板95に形成されたボルト孔35,35は、高力ボルト25,25の外径よりも内径が大きくなるように形成してあり、その遊びの範囲内で移動制限解除部材21をすべり板95や上部構造側すべりプレート97と平行な面内で2方向に位置調整できるようになっている。   Here, the bolt holes 35, 35 formed in the sliding plate 95 are formed so that the inner diameter is larger than the outer diameter of the high-strength bolts 25, 25, and the movement restriction releasing member 21 is within the range of play. Can be adjusted in two directions within a plane parallel to the sliding plate 95 and the upper structure side sliding plate 97.

移動制限解除機構20aをすべり支承91に設けるには、移動制限解除部材21の突設部24を上部構造側すべりプレート97に形成された凹部22に嵌め込んで、該突設部の当接面33,33を凹部22の対向面32,32にそれぞれ当接させる。   In order to provide the movement restriction releasing mechanism 20a on the slide support 91, the protruding portion 24 of the movement restriction releasing member 21 is fitted into the recess 22 formed in the upper structure side sliding plate 97, and the contact surface of the protruding portion is arranged. 33 and 33 are brought into contact with the opposing surfaces 32 and 32 of the recess 22, respectively.

このとき、すべり板95のボルト孔35は、高力ボルト25の外径よりも大きく形成してあるため、その遊びの範囲で移動制限解除部材21を上述した2方向に位置調整することが可能であり、突設部24の当接面33,33を凹部22の対向面32,32にそれぞれ確実に当接させることができる。   At this time, since the bolt hole 35 of the sliding plate 95 is formed larger than the outer diameter of the high-strength bolt 25, it is possible to adjust the position of the movement restriction releasing member 21 in the two directions described above within the range of play. Thus, the abutting surfaces 33, 33 of the projecting portion 24 can be reliably abutted against the opposing surfaces 32, 32 of the concave portion 22, respectively.

次に、上述した当接状態を維持しつつ、上述したように高力ボルト25で移動制限解除部材21の連結部23をすべり板95に連結すればよい。   Next, the connecting portion 23 of the movement restriction releasing member 21 may be connected to the sliding plate 95 with the high-strength bolt 25 as described above while maintaining the above-described contact state.

このようにすると、移動制限解除部材21は、連結部23を介してすべり板95に摩擦接合で取り付けられる。   If it does in this way, the movement restriction release member 21 will be attached to the slip plate 95 via the connection part 23 by friction joining.

本実施形態に係る移動制限解除機構20aにおいては、破断荷重未満のせん断荷重下では、突設部24と凹部22の嵌合が維持されてすべり板95及び上部構造側すべりプレート97の相対移動が制限される。   In the movement restriction releasing mechanism 20a according to the present embodiment, under the shear load less than the breaking load, the fitting of the projecting portion 24 and the concave portion 22 is maintained, and the sliding plate 95 and the upper structure side sliding plate 97 are relatively moved. Limited.

そのため、すべり支承91は、ゴムパッド94によるせん断変形動作のみが生じ、すべり板95に対する上部構造側すべりプレート97の摺動動作は生じない。   Therefore, the sliding bearing 91 only undergoes a shear deformation operation by the rubber pad 94, and the sliding operation of the upper structure side sliding plate 97 with respect to the sliding plate 95 does not occur.

一方、破断荷重かそれを上回るせん断荷重が作用したときには、突設部24が断面欠損部31で破断する。   On the other hand, when a breaking load or a shear load exceeding the breaking load is applied, the projecting portion 24 is broken at the cross-sectional defect portion 31.

そのため、すべり板95及び上部構造側すべりプレート97の相対移動制限が解除され、上部構造側すべりプレート97は、その下面に取り付けられた摩擦材をすべり板95の上面に取り付けられた摺動材に当接させつつ、該摺動材上を摺動する形で該すべり板に対し相対移動する。   Therefore, the relative movement restriction of the sliding plate 95 and the upper structure side sliding plate 97 is released, and the upper structure side sliding plate 97 converts the friction material attached to the lower surface thereof to the sliding material attached to the upper surface of the sliding plate 95. While abutting, it moves relative to the sliding plate in such a manner that it slides on the sliding material.

ここで、移動制限中は突設部24と凹部22とが緩みなく連結されているため、すべり板95及び上部構造側すべりプレート97に入力したせん断荷重が、突設部24と凹部22に荷重伝達されるまでの間、タイムラグはほとんど発生せず、突設部24は、破断荷重以上のせん断荷重がすべり板95及び上部構造側すべりプレート97に入力されたとほぼ同時に破断する。   Here, since the protruding portion 24 and the concave portion 22 are connected without loosening during the movement restriction, the shear load input to the sliding plate 95 and the upper structure side sliding plate 97 is applied to the protruding portion 24 and the concave portion 22. Until the transmission, almost no time lag occurs, and the projecting portion 24 breaks almost simultaneously with a shear load greater than the breaking load being input to the sliding plate 95 and the upper structure side sliding plate 97.

以上説明したように、本実施形態に係る移動制限解除機構20a及びそれを用いたすべり支承91によれば、突設部24と凹部22とが緩みなく連結されるので、破断荷重以上のせん断荷重がすべり板95及び上部構造側すべりプレート97に入力したとき、該せん断荷重が突設部24と凹部22に伝達されるまでの間にタイムラグはほとんど発生せず、突設部24は、上述のせん断荷重がすべり板95及び上部構造側すべりプレート97に入力されたとほぼ同時に破断し、それらの相対移動制限もその瞬間に解除される。   As described above, according to the movement restriction releasing mechanism 20a and the sliding bearing 91 using the same according to the present embodiment, the projecting portion 24 and the concave portion 22 are connected without loosening, so that the shear load greater than the breaking load is obtained. Is input to the sliding plate 95 and the upper structure side sliding plate 97, there is almost no time lag until the shear load is transmitted to the protruding portion 24 and the recessed portion 22, and the protruding portion 24 The shearing load is broken almost simultaneously with the input of the sliding plate 95 and the superstructure side sliding plate 97, and the relative movement restriction thereof is also released at that moment.

したがって、すべり支承91の作動開始のタイミングが遅れるおそれがなくなり、かくして設計時に予定されていた地震動の入力遮断作用あるいは抑制作用が確実に発揮される。   Therefore, there is no possibility that the start timing of the operation of the sliding bearing 91 is delayed, and thus the seismic motion input blocking action or suppressing action planned at the time of design is reliably exhibited.

また、本実施形態に係る移動制限解除機構20aによれば、突設部24の当接面33,33をテーパ面とするとともに、凹部22の対向面32,32をそれらに対応する傾斜面としたので、突設部24を凹部22に嵌め込むだけで、突設部24の当接面33,33を凹部22の対向面32,32に確実に当接させることが可能となり、かくして厳しい精度で加工せずとも、突設部24と凹部22とを緩みなく連結することができる。   Further, according to the movement restriction releasing mechanism 20a according to the present embodiment, the contact surfaces 33, 33 of the projecting portion 24 are tapered surfaces, and the opposing surfaces 32, 32 of the recess 22 are inclined surfaces corresponding to them. Therefore, it is possible to make the contact surfaces 33, 33 of the projecting portion 24 abut on the opposing surfaces 32, 32 of the recess 22 only by fitting the projecting portion 24 into the recess 22, and thus the strict accuracy. Even if it does not process by, the protrusion part 24 and the recessed part 22 can be connected without loosening.

また、本実施形態に係る移動制限解除機構20aによれば、連結部23をすべり板95に連結するにあたり、すべり板95に形成されたボルト孔35,35を、高力ボルト25,25の外径よりも内径が大きくなるように形成することで、その遊びの範囲内で移動制限解除部材21をすべり板95及び上部構造側すべりプレート97と平行な面内で2方向に位置調整することができるように構成するとともに、連結部23とすべり板95との連結強度については、高力ボルトによる摩擦接合で確保するようにしたので、上述した突設部24と凹部22とを確実に緩みなく連結することが可能となる。   Further, according to the movement restriction releasing mechanism 20a according to the present embodiment, when connecting the connecting portion 23 to the sliding plate 95, the bolt holes 35, 35 formed in the sliding plate 95 are connected to the outer sides of the high strength bolts 25, 25. By forming the inner diameter to be larger than the diameter, the movement restriction releasing member 21 can be adjusted in two directions within a plane parallel to the sliding plate 95 and the upper structure side sliding plate 97 within the range of play. Since the connecting strength between the connecting portion 23 and the sliding plate 95 is ensured by friction welding with a high-strength bolt, the protruding portion 24 and the recessed portion 22 are surely not loosened. It becomes possible to connect.

本実施形態では、他方の取付け部位をすべり板95とし、それに連結される連結部23を第1の連結部としてこれに突設部24を設け、該突設部を一方の取付け部位である上部構造側すべりプレート97に形成された凹部22に嵌合するようにしたが、これに代えて、一方の取付け部位に連結される第2の連結部に凹部を形成し、該凹部に他方の取付け部位に設けられた突設部を嵌合するようにしてもかまわない。   In the present embodiment, the other attachment site is the slip plate 95, the connecting portion 23 connected to the slide plate 95 is used as the first connection portion, and the protruding portion 24 is provided on this, and the protruding portion is an upper portion that is one of the attachment portions. Although it fits in the recess 22 formed in the structure side slide plate 97, instead of this, a recess is formed in the second connecting portion connected to one attachment site, and the other attachment is made in the recess. You may make it fit the protrusion part provided in the site | part.

なお、その具体的構成は、図6を用いて説明した第1実施形態の変形例とほぼ同様であるので、詳細な説明は省略するが、同図記載の摺動板3はすべり板95、摩擦板4は上部構造側すべりプレート97とそれぞれ読み替えるものとする。   The specific configuration is substantially the same as the modification of the first embodiment described with reference to FIG. 6, and detailed description thereof is omitted, but the sliding plate 3 illustrated in FIG. The friction plate 4 shall be read as the upper structure side sliding plate 97, respectively.

また、本実施形態では、一方の取付け部位に形成された凹部に突設部を嵌合するようにしたが、これに代えて、一方の取付け部位に連結される第2の連結部に凹部を形成するようにしてもかまわない。   Further, in the present embodiment, the protruding portion is fitted into the recess formed in one attachment site, but instead, a recess is provided in the second connection portion connected to one attachment site. It does not matter if it is formed.

なお、その具体的構成は、図7を用いて説明した第1実施形態の変形例とほぼ同様であるので、詳細な説明は省略するが、同図記載の摺動板3はすべり板95、摩擦板4は上部構造側すべりプレート97とそれぞれ読み替えるものとする。   The specific configuration is substantially the same as the modification of the first embodiment described with reference to FIG. 7, and detailed description thereof is omitted, but the sliding plate 3 illustrated in FIG. The friction plate 4 shall be read as the upper structure side sliding plate 97, respectively.

また、本実施形態では、突設部24の当接面33,33を平面状のテーパ面とするとともに、対応する凹部22の対向面32,32を平面状の傾斜面としたが、これに代えて、本発明の突設部を、テーパ面と直立面とで当接面が構成された突設部とするとともに、本発明の凹部を、傾斜面と直立面とで対向面が構成された凹部としてもかまわない。   In the present embodiment, the contact surfaces 33 and 33 of the projecting portion 24 are flat tapered surfaces, and the corresponding surfaces 32 and 32 of the corresponding recesses 22 are flat inclined surfaces. Instead, the projecting portion of the present invention is a projecting portion in which a contact surface is configured by a tapered surface and an upright surface, and the concave surface of the present invention is configured by an inclined surface and an upright surface. It does not matter as a concave part.

なお、その具体的構成は、図8を用いて説明した第1実施形態の変形例とほぼ同様であるので、詳細な説明は省略するが、同図記載の摺動板3はすべり板95、摩擦板4は上部構造側すべりプレート97とそれぞれ読み替えるものとする。   The specific configuration is substantially the same as that of the modification of the first embodiment described with reference to FIG. 8, and detailed description thereof is omitted, but the sliding plate 3 illustrated in FIG. The friction plate 4 shall be read as the upper structure side sliding plate 97, respectively.

1,51 摩擦ダンパー
3 摺動板(他方の取付け部位)
4 摩擦板(一方の取付け部位)
5 摺動材
6 摩擦材
20,20a 移動制限解除機構
21,21a,21b 移動制限解除部材
22,22a,22b,22d
凹部
23 連結部(第1の連結部)
23a,23b 連結部(第2の連結部)
24,24a,24c,24d
突設部
25 高力ボルト
31 断面欠損部
32 傾斜面(対向面)
32d 直立面(対向面)
33 テーパ面(当接面)
33d 直立面(当接面)
35 ボルト孔
91 すべり支承
95 すべり板(他方の取付け部位)
97 上部構造側すべりプレート(一方の取付け部位)
1,51 Friction damper 3 Sliding plate (the other mounting part)
4 Friction plate (one mounting part)
5 Sliding material 6 Friction material 20, 20a Movement restriction release mechanism 21, 21a, 21b Movement restriction release member 22, 22a, 22b, 22d
Concave portion 23 connecting portion (first connecting portion)
23a, 23b connecting part (second connecting part)
24, 24a, 24c, 24d
Projection 25 High-strength bolt 31 Cross-sectional defect 32 Inclined surface (opposing surface)
32d Upright surface (opposite surface)
33 Tapered surface (contact surface)
33d Upright surface (contact surface)
35 Bolt hole 91 Sliding bearing 95 Sliding plate (the other mounting part)
97 Superstructure side sliding plate (one mounting part)

Claims (4)

互いに相対移動する2つの取付け部位のうち、一方の取付け部位に形成された凹部に嵌合されるように他方の取付け部位に連結される第1の連結部に突設部を設け又は前記一方の取付け部位に連結される第2の連結部に形成された凹部に嵌合されるように前記他方の取付け部位若しくは該他方の取付け部位に連結される第1の連結部に突設部を設けるとともに、前記2つの取付け部位の相対移動に伴って前記凹部から前記突設部に作用するせん断荷重によって該突設部が破断するように前記突設部の基端側近傍に断面欠損部を形成し、前記凹部の内面のうち、前記2つの取付け部位の相対移動方向に沿って対向する対向面にそれぞれ当接する2つの当接面を前記突設部の外面に互いに背中合わせとなるように設けるとともに、前記2つの当接面のうち、一方をテーパ面、他方をテーパ面又は直立面とし、前記第1の連結部と前記他方の取付け部位との連結及び前記第2の連結部と前記一方の取付け部位との連結の少なくともいずれかを、前記一方の取付け部位又は前記他方の取付け部位に形成されたボルト孔に挿通された高力ボルトによる摩擦接合としたことを特徴とする移動制限解除機構。 Of the two attachment parts that move relative to each other, the first connection part that is connected to the other attachment part so as to be fitted in the recess formed in one attachment part is provided with a projecting part or the one Protruding portions are provided on the other attachment portion or the first connection portion connected to the other attachment portion so as to be fitted into the recess formed in the second connection portion connected to the attachment portion. A cross-sectional defect portion is formed in the vicinity of the base end side of the projecting portion so that the projecting portion is broken by a shearing load acting on the projecting portion from the concave portion with relative movement of the two attachment portions. The two contact surfaces that contact the opposing surfaces facing each other along the relative movement direction of the two attachment parts among the inner surfaces of the recesses are provided so as to be back to back on the outer surface of the projecting portion, and The two abutments One of them is a tapered surface, the other is a tapered surface or an upright surface, and at least the connection between the first connection portion and the other attachment portion and the connection between the second connection portion and the one attachment portion. A movement restriction releasing mechanism characterized in that either one is a friction joint by a high-strength bolt inserted into a bolt hole formed in the one attachment part or the other attachment part. 請求項1記載の移動制限解除機構を備えた制振装置であって、該制振装置の相対移動入力部位をそれぞれ前記一方の取付け部位、前記他方の取付け部位としたことを特徴とする制振装置。 A vibration damping device comprising the movement restriction releasing mechanism according to claim 1, wherein the relative movement input parts of the vibration damping device are the one attachment part and the other attachment part, respectively. apparatus. 摺動板を前記一方の取付け部位、該摺動板に取り付けられた摺動材の摺動面上を摺動する摩擦材が取り付けられた摩擦板を前記他方の取付け部位とし、又は前記摩擦板を前記一方の取付け部位、前記摺動板を前記他方の取付け部位とした請求項2記載の制振装置。 The sliding plate is used as the one mounting portion, the friction plate attached with the friction material sliding on the sliding surface of the sliding member attached to the sliding plate as the other mounting portion, or the friction plate The vibration damping device according to claim 2, wherein the one attachment part is used and the sliding plate is the other attachment part. 請求項1記載の移動制限解除機構を備えたすべり支承であって、該すべり支承の相対移動入力部位をそれぞれ前記一方の取付け部位、前記他方の取付け部位としたことを特徴とするすべり支承。 A sliding bearing provided with the movement restriction releasing mechanism according to claim 1, wherein a relative movement input portion of the sliding bearing is the one mounting portion and the other mounting portion, respectively.
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JP3785771B2 (en) * 1997-12-09 2006-06-14 株式会社ブリヂストン Movement restriction device for bridge support
JP2000352113A (en) * 1999-04-06 2000-12-19 Ohbayashi Corp Vibration controlling structure of bolt joint section
JP2001182155A (en) * 1999-12-22 2001-07-03 Ohbayashi Corp Vibration-control structure for bolt joint part
JP3706319B2 (en) * 2001-08-30 2005-10-12 独立行政法人科学技術振興機構 Steel frame ramen structure
JP4232454B2 (en) * 2002-12-20 2009-03-04 株式会社大林組 Damping structure of bridge
JP4168765B2 (en) * 2003-01-29 2008-10-22 東海ゴム工業株式会社 Bracket for engine mount
JP2005299078A (en) * 2004-04-06 2005-10-27 Kawaguchi Metal Industries Co Ltd Vibration proofing apparatus for bridge
JP4904854B2 (en) * 2006-03-09 2012-03-28 日産自動車株式会社 Body structure
JP2011042974A (en) * 2009-08-21 2011-03-03 Mitsubishi Heavy Ind Ltd Vibration control device and structure having the same and aseismatic device and structure having the same
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