JP2014163083A - Flexible joint for base-isolated building, and cut-off structure - Google Patents

Flexible joint for base-isolated building, and cut-off structure Download PDF

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JP2014163083A
JP2014163083A JP2013033669A JP2013033669A JP2014163083A JP 2014163083 A JP2014163083 A JP 2014163083A JP 2013033669 A JP2013033669 A JP 2013033669A JP 2013033669 A JP2013033669 A JP 2013033669A JP 2014163083 A JP2014163083 A JP 2014163083A
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plate
base
foundation
outer peripheral
building
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JP6023608B2 (en
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Yasuyuki Hayama
泰之 早間
Kozo Fujii
弘三 藤井
Hideo Tanaka
秀夫 田中
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Hayakawa Rubber Co Ltd
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Abstract

PROBLEM TO BE SOLVED: To facilitate construction and maintenance management, and to enable sealability between a foundation and a base-isolated building to be reliably maintained over long periods.SOLUTION: A flexible joint for a base-isolated building includes: a waterproof sheet 10; a first plate-like body 20 that is fixed to a foundation 110; a second plate-like body 30 that is fixed to a base-isolated building; an amorphous sealant A; a first fastening member 40 for fixing the first plate-like body 20; and a second fastening member 41 for fixing the second plate-like body 30. The waterproof sheet 10 has an extra length part. The first plate-like body 20 has a pressure resisting wall 23 for covering a clearance S between the base-isolated building 100 and the foundation 110.

Description

本発明は、免震建物と、免震建物を支える基礎との間を止水する免震建物用止水可とう継手及び止水可とう継手を備えた止水構造に関するものである。   The present invention relates to a water-proof flexible joint for a base-isolated building that stops water between a base-isolated building and a foundation that supports the base-isolated building, and a water-stop structure having a water-stop flexible joint.

一般に、免震建物は免震装置を介して基礎に支えられており、地震時には免震装置の働きによって基礎と免震建物とが異なる動きをすることになる。これを許容するため、免震建物と基礎との間には隙間が設けられることになるが、この隙間を介して雨水やゴミ等が基礎のピット部に侵入するおそれがあるので、それを防ぐ構造が必要となる(例えば、特許文献1、2参照)。   Generally, a base-isolated building is supported by a foundation via a base-isolation device, and the foundation and the base-isolated building move differently due to the action of the base-isolation device during an earthquake. In order to allow this, a gap will be provided between the base-isolated building and the foundation, but rainwater and garbage may enter the pit of the foundation through this gap, so this is prevented. A structure is required (for example, refer to Patent Documents 1 and 2).

特許文献1の構造は、基礎のピット部外周に外構槽を設けてその外構槽に水を貯留しておく一方、免震建物の外周壁には、その下端から外周壁に沿って周回するように外周構造部を形成しておく。この外周構造部の下部を外構槽内の水中に浸けることによってピット部と外部との連通を遮断するようにしている。これにより、雨水やゴミ等の侵入を抑制できるとともに、ピット部内の温度や湿度の変化を抑制できる。   In the structure of Patent Document 1, an external construction tank is provided on the outer periphery of the pit portion of the foundation and water is stored in the outer construction tank. On the outer peripheral wall of the seismic isolation building, the outer peripheral wall extends from the lower end along the outer peripheral wall. The outer peripheral structure portion is formed as described above. The lower part of the outer peripheral structure part is immersed in the water in the outer construction tank so as to block communication between the pit part and the outside. As a result, intrusion of rainwater or dust can be suppressed, and changes in temperature and humidity in the pit portion can be suppressed.

また、特許文献2の構造は、基礎の上面に、上端が平滑なガスケットからなる可とう弾性部材を配設する一方、可とう弾性部材に当接する免震建物の基底下面には摺動部材を埋設している。ガスケットには中空部が設けられており、この中空部を弾性変形させた状態で摺動部材に当接させている。これにより、雨水やゴミ等の侵入を抑制できる。また、地震時には、ガスケットの中空部が変形することで免震建物と基礎との相対変位に追従することが可能になる。   In the structure of Patent Document 2, a flexible elastic member made of a gasket having a smooth upper end is disposed on the upper surface of the foundation, while a sliding member is disposed on the lower surface of the base of the seismic isolation building that contacts the flexible elastic member. Buried. The gasket is provided with a hollow portion, and the hollow portion is brought into contact with the sliding member in an elastically deformed state. Thereby, invasion of rainwater, garbage, etc. can be suppressed. Further, during an earthquake, the hollow portion of the gasket is deformed, so that it is possible to follow the relative displacement between the base-isolated building and the foundation.

特開平8−312195号公報Japanese Patent Laid-Open No. 8-312195 特開2000−303718号公報JP 2000-303718 A

しかしながら、特許文献1の構造では、外構槽内の水位を常に一定以上に保っておかなければならないので、維持管理に手間がかかるという問題がある。また、集中豪雨や津波等で外部の水位が上昇すると、ピット部内に水が浸入してくる可能性があり、止水効果の点で十分でない。さらに、外構槽内の水が凍結すると、免震建物の外周構造部の下部が基礎の外構槽内で固定されてしまうので、地震時の動きに対応できないことが考えられる。   However, the structure of Patent Document 1 has a problem in that it takes time and effort to maintain because the water level in the outer tub must always be kept above a certain level. In addition, if the external water level rises due to heavy rain or tsunami, water may enter the pit, which is not sufficient in terms of water stopping effect. In addition, if the water in the outer construction tank freezes, the lower part of the outer peripheral structure part of the base-isolated building is fixed in the foundation outer construction tank, so that it may be impossible to cope with the movement during an earthquake.

特許文献2については、ガスケットを長期間に亘って使用した場合に、中空部が変形したまま元の形状に復元しなくなることがあり、シール性の低下を招く。さらに、施工時には、免震建物の基底下面に設ける摺動部材をコンクリート型枠に配設する必要があるが、この摺動部材と、型枠外に配置されるガスケットとの位置あわせが難しい。また、型枠にコンクリートを打設すると、型枠が、摺動部材と、押圧された状態のガスケットとに挟まれているので、養生後に型枠を撤去する作業が困難である、また、ガスケットの中空部を摺動部材に単に押し付けているだけなので、集中豪雨や津波等で外水圧が高まるとガスケットが外水圧に押されて容易に変形して摺動部材との間に隙間ができてしまい、漏水することも考えられる。   In Patent Document 2, when the gasket is used for a long period of time, the hollow portion may not be restored to its original shape while being deformed, resulting in a decrease in sealing performance. Furthermore, at the time of construction, it is necessary to dispose a sliding member provided on the bottom lower surface of the base-isolated building in the concrete formwork, but it is difficult to align the sliding member and the gasket disposed outside the formwork. In addition, when concrete is placed in the mold, the mold is sandwiched between the sliding member and the pressed gasket, so that it is difficult to remove the mold after curing. Since the hollow part is simply pressed against the sliding member, if the external water pressure increases due to heavy rain or tsunami, the gasket is pushed by the external water pressure and easily deforms, creating a gap between the sliding member. It is possible to leak water.

本発明は、かかる点に鑑みてなされたものであり、その目的とするところは、施工及び維持管理が容易で、基礎と免震建物との間を長期間に亘って確実にシール性できるようにすることにある。   This invention is made | formed in view of this point, The place made into the objective is that construction and maintenance management are easy, and it can seal reliably between a foundation and a seismic isolation building over a long period of time. Is to make it.

上記目的を達成するために、本発明では、防水シートを利用して基礎と免震建物とをつないでおき、防水シートが高い外水圧に耐えることができるように耐圧構造を持たせた。   In order to achieve the above object, in the present invention, a waterproof sheet is used to connect the base and the base-isolated building, and a waterproof structure is provided so that the waterproof sheet can withstand high external water pressure.

第1の発明は、地盤に設けられた基礎のピット部内に配設された免震装置により該基礎の上方で免震支承された免震建物の外周壁と、上記ピット部の外周部との隙間をシールするための免震建物用止水可とう継手において、
可とう性を有するとともに、上記免震建物の外周壁に沿って周回する長尺状の防水シートと、
上記基礎のピット部の外周部に固定される第1板状体と、
上記免震建物の外周壁に固定される第2板状体と、
上記第1板状体と上記基礎のピット部の外周部との間、及び上記第2板状体と上記免震建物の外周壁との間にそれぞれ設けられる不定形シーリング材と、
上記第1板状体を上記基礎のピット部の外周部に固定するための第1止め付け部材と、
上記第2板状体を上記免震建物の外周壁に固定するための第2止め付け部材とを備え、
上記防水シートは、上記ピット部の外部において上記第1板状体及び上記第2板状体に接着固定された状態で、上記第1板状体及び上記第2板状体の間に余長部を有し、
上記第1板状体は、上記免震建物の外周壁と上記ピット部の外周部との隙間を覆う耐圧壁を有していることを特徴とするものである。
According to a first aspect of the present invention, there is provided an outer peripheral wall of a base-isolated building that is seismically isolated above the foundation by a base isolation device disposed in a pit portion of a foundation provided on the ground, and an outer peripheral portion of the pit portion. In water-proof flexible joints for seismic isolation buildings to seal gaps,
A long waterproof sheet that has flexibility and circulates along the outer peripheral wall of the base-isolated building,
A first plate body fixed to the outer peripheral portion of the pit portion of the foundation;
A second plate-like body fixed to the outer peripheral wall of the base-isolated building;
An indeterminate sealing material provided between the first plate and the outer periphery of the foundation pit, and between the second plate and the outer wall of the base-isolated building,
A first fastening member for fixing the first plate-like body to the outer peripheral portion of the pit portion of the foundation;
A second fastening member for fixing the second plate-like body to the outer peripheral wall of the base-isolated building,
The waterproof sheet has an extra length between the first plate-like body and the second plate-like body in a state where the waterproof sheet is bonded and fixed to the first plate-like body and the second plate-like body outside the pit portion. Part
The first plate-like body has a pressure-resistant wall that covers a gap between the outer peripheral wall of the base-isolated building and the outer peripheral portion of the pit portion.

この構成によれば、第1板状体が基礎のピット部の外周部に固定された状態で、第1板状体とピット部の外周部との間に介在する不定形シーリング材によりシール性が確保される。また、第2板状体が免震建物の外周壁に固定された状態で、第2板状体と外周壁との間に介在する不定形シーリング材によりシール性が確保される。これら第1及び第2板状体は、第1及び第2止め付け部材で止め付けられるので、型枠への配設等は不要であり、施工性が良好である。   According to this configuration, the first plate-like body is fixed to the outer peripheral portion of the pit portion of the foundation, and the sealing performance is provided by the irregular sealing material interposed between the first plate-like body and the outer peripheral portion of the pit portion. Is secured. In addition, in a state where the second plate-like body is fixed to the outer peripheral wall of the base-isolated building, the sealing performance is ensured by the irregular sealing material interposed between the second plate-like body and the outer peripheral wall. Since these 1st and 2nd plate-shaped bodies are fixed by the 1st and 2nd fixing member, arrangement | positioning etc. to a formwork are unnecessary and workability | operativity is favorable.

そして、防水シートを第1板状体及び第2板状体に接着固定することで、免震建物の外周壁と基礎のピット部の外周部との隙間がシールされるので、雨水やゴミ等がピット部に侵入するのが抑制される。この状態で、防水シートが余長部を有していて可とう性を持っているので、地震により免震建物と基礎とが異なる動きをするのが許容される。   And since the gap between the outer peripheral wall of the base-isolated building and the outer peripheral portion of the pit portion of the foundation is sealed by bonding and fixing the waterproof sheet to the first plate-like body and the second plate-like body, rainwater, dust, etc. Is prevented from entering the pit portion. In this state, since the waterproof sheet has the extra length and is flexible, the seismic isolation building and the foundation are allowed to move differently due to the earthquake.

また、例えば集中豪雨や津波等のように防水シートが高い外水圧を受けた場合には、防水シートがピット部内へ押されて張り出して高水圧を受けるので、防水シートや止め付け部材にかかる力が大きなものとなって防水シートの破れや止め付け部材の抜けが生じる恐れがあるが、本発明では、耐圧壁が免震建物の外周壁とピット部の外周部との隙間を覆っているので、防水シートが隙間からピット部内へ侵入するのが耐圧壁によって抑制される。よって、高い外水圧にも対応することが可能になる。   In addition, when the waterproof sheet is subjected to high external water pressure, such as during heavy rain or tsunami, the waterproof sheet is pushed into the pit and is subjected to high water pressure, so the force applied to the waterproof sheet and the fastening member However, in the present invention, the pressure-resistant wall covers the gap between the outer peripheral wall of the base-isolated building and the outer peripheral portion of the pit part. The pressure resistant wall prevents the waterproof sheet from entering the pit portion through the gap. Therefore, it becomes possible to cope with a high external water pressure.

本発明では、特許文献1のように水によるシール構造ではないので、維持管理が容易になるとともに、凍結による免震機能障害の恐れもない。   In this invention, since it is not the seal structure by water like patent document 1, while being easy to maintain, there is also no fear of seismic isolation function failure by freezing.

さらに、特許文献2のように弾性材を無理に変形させて設置する構造ではないので、長期間に亘って安定してシール性を確保することが可能である。   Further, since the elastic material is not forcedly deformed and installed as in Patent Document 2, it is possible to stably ensure the sealing performance over a long period of time.

第2の発明は、第1の発明において、
上記耐圧壁は、上記第1板状体に一体成形されていることを特徴とするものである。
According to a second invention, in the first invention,
The pressure-resistant wall is integrally formed with the first plate-like body.

この構成によれば、耐圧壁を第1板状体に一体成形することで、施工時に第1板状体を基礎のピット部の外周部に固定するだけで、耐圧壁を、免震建物の外周壁とピット部の外周部との隙間を覆うように配置することが可能になるので、施工がより一層容易になる。   According to this configuration, by forming the pressure wall integrally with the first plate-like body, the pressure plate is simply fixed to the outer periphery of the pit portion of the foundation at the time of construction. Since it can be arranged so as to cover the gap between the outer peripheral wall and the outer peripheral portion of the pit portion, the construction is further facilitated.

第3の発明は、第1または2の発明において、
上記第1板状体の耐圧壁は、上記免震建物へ向けて突出し、該耐圧壁の突出方向先端部には、上記免震建物の外周壁の下面に沿うように延びる補強板部が設けられていることを特徴とするものである。
According to a third invention, in the first or second invention,
The pressure-resistant wall of the first plate-like body protrudes toward the base-isolated building, and a reinforcing plate portion that extends along the lower surface of the outer peripheral wall of the base-isolated building is provided at the tip of the pressure-proof wall in the protruding direction. It is characterized by being.

この構成によれば、例えば集中豪雨や津波等のように高い外水圧が耐圧壁に作用して変形しようとした際に、補強板部が免震建物の外周壁の下面に沿っているので、該下面によって支えられて耐圧壁の変形を抑制することが可能になる。   According to this configuration, for example, when a high external water pressure such as concentrated heavy rain or tsunami acts on the pressure-resistant wall and tries to deform, the reinforcing plate part is along the lower surface of the outer peripheral wall of the seismic isolation building. It becomes possible to suppress deformation of the pressure-resistant wall supported by the lower surface.

第4の発明は、第1から3のいずれか1つの発明において、
上記第1板状体及び上記第2板状体と、上記防水シートとは気密性を有するように接合され、
上記第1板状体の耐圧壁には、上記免震建物の外周壁に摺接するシール材が設けられ、
上記防水シート、上記耐圧壁及び上記シール材によって閉空間が形成されていることを特徴とするものである。
According to a fourth invention, in any one of the first to third inventions,
The first plate-like body, the second plate-like body, and the waterproof sheet are joined so as to have airtightness,
The pressure-resistant wall of the first plate-like body is provided with a seal material that is in sliding contact with the outer peripheral wall of the base-isolated building,
A closed space is formed by the waterproof sheet, the pressure-resistant wall, and the sealing material.

この構成によれば、地震時に免震建物と基礎とが相対変位すると、防水シート、耐圧壁及びシール材によって形成された閉空間内の空気が圧縮されたり、閉空間内の空気を膨張させたりすることになる。この圧縮、膨張の動作によって制振効果が発揮される。   According to this configuration, when the base-isolated building and the foundation are relatively displaced during the earthquake, the air in the closed space formed by the waterproof sheet, the pressure-resistant wall, and the sealing material is compressed, or the air in the closed space is expanded. Will do. The damping effect is exhibited by the compression and expansion operations.

第5の発明は、地盤に設けられた基礎のピット部内に配設された免震装置により該基礎の上方で免震支承された免震建物の外周壁と、上記ピット部の外周部との隙間をシールする止水構造において、
可とう性を有するとともに、上記免震建物の外周壁に沿って周回するように形成された長尺状の防水シートと、
上記基礎のピット部の外周部に固定される第1板状体と、
上記免震建物の外周壁に固定される第2板状体と、
上記第1板状体と上記基礎のピット部の外周部との間、及び上記第2板状体と上記免震建物の外周壁との間にそれぞれ設けられる不定形シーリング材と、
上記第1板状体を上記基礎のピット部の外周部に固定するための第1止め付け部材と、
上記第2板状体を上記免震建物の外周壁に固定するための第2止め付け部材とを備え、
上記防水シートは、上記ピット部の外部において上記第1板状体及び上記第2板状体に接着固定された状態で、上記第1板状体及び上記第2板状体の間に余長部を有し、
上記第1板状体は、上記免震建物の外周壁と上記ピット部の外周部との隙間を覆う耐圧壁を有していることを特徴とするものである。
According to a fifth aspect of the present invention, there is provided an outer peripheral wall of a base-isolated building that is seismically isolated above the foundation by a base isolation device disposed in a pit portion of the foundation provided on the ground, and an outer peripheral portion of the pit portion. In the water stop structure that seals the gap,
A long waterproof sheet that has flexibility and is formed to circulate along the outer peripheral wall of the base-isolated building,
A first plate body fixed to the outer peripheral portion of the pit portion of the foundation;
A second plate-like body fixed to the outer peripheral wall of the base-isolated building;
An indeterminate sealing material provided between the first plate and the outer periphery of the foundation pit, and between the second plate and the outer wall of the base-isolated building,
A first fastening member for fixing the first plate-like body to the outer peripheral portion of the pit portion of the foundation;
A second fastening member for fixing the second plate-like body to the outer peripheral wall of the base-isolated building,
The waterproof sheet has an extra length between the first plate-like body and the second plate-like body in a state where the waterproof sheet is bonded and fixed to the first plate-like body and the second plate-like body outside the pit portion. Part
The first plate-like body has a pressure-resistant wall that covers a gap between the outer peripheral wall of the base-isolated building and the outer peripheral portion of the pit portion.

第1の発明によれば、第1板状体を基礎のピット部の外周部に不定形シーリング材を介して第1止め付け部材で固定し、第2板状体を免震建物の外周壁に不定形シーリング材を介して第2止め付け部材で固定し、防水シートを第1板状体及び第2板状体に接着固定し、この防水シートに余長部を設定し、免震建物の外周壁とピット部の外周部との隙間を覆う耐圧壁を設けている。これにより、施工及び維持管理を容易なものとしながら、基礎と免震建物との間を長期間に亘って確実にシール性できる。   According to the first invention, the first plate-like body is fixed to the outer peripheral portion of the pit portion of the foundation with the first fastening member via the amorphous sealing material, and the second plate-like body is fixed to the outer peripheral wall of the base-isolated building. It is fixed with a second fastening member through an irregular sealing material, and a waterproof sheet is bonded and fixed to the first plate and the second plate. A pressure-resistant wall that covers a gap between the outer peripheral wall of the pit and the outer peripheral portion of the pit portion is provided. As a result, it is possible to reliably seal between the foundation and the base-isolated building over a long period of time while facilitating construction and maintenance.

第2の発明によれば、耐圧壁を第1板状体に一体成形したので、部品点数を削減できるとともに、施工をより一層容易にすることができる。   According to the second invention, since the pressure-resistant wall is integrally formed with the first plate-like body, the number of parts can be reduced and the construction can be further facilitated.

第3の発明によれば、耐圧壁に、免震建物の外周壁の下面に沿うように延びる補強板部を設けたので、高い外水圧が作用した際に補強板部を免震建物の外周壁の下面で支えることができる。これにより、耐圧性能がより一層高まる。   According to the third invention, since the reinforcing plate portion extending along the lower surface of the outer peripheral wall of the base-isolated building is provided on the pressure-resistant wall, the reinforcing plate portion is attached to the outer periphery of the base-isolated building when a high external water pressure is applied. Can be supported by the lower surface of the wall. Thereby, the pressure resistance performance is further enhanced.

第4の発明によれば、第1板状体の耐圧壁に、免震建物の外周壁に摺接するシール材を設け、防水シート、耐圧壁及びシール材によって閉空間を形成したので、地震時に閉空間内の空気を圧縮、膨張させて制振効果を得ることができる。これにより、免震建物の揺れを早期に収束させることができる。   According to the fourth aspect of the present invention, the pressure-resistant wall of the first plate-like body is provided with the sealing material that is in sliding contact with the outer peripheral wall of the seismic isolation building, and the closed space is formed by the waterproof sheet, the pressure-resistant wall, and the sealing material. A vibration control effect can be obtained by compressing and expanding the air in the closed space. Thereby, the shaking of a seismic isolation building can be converged at an early stage.

第5の発明によれば、第1の発明と同様な作用効果を奏することができる。   According to the fifth aspect, the same operational effects as the first aspect can be achieved.

本発明の実施形態1に係る免震建物用止水可とう継手及び止水構造が適用された免震建物の底部断面図である。BRIEF DESCRIPTION OF THE DRAWINGS FIG. 1 is a bottom sectional view of a base-isolated building to which a water-stopping flexible joint for a base-isolated building and a water-stop structure according to Embodiment 1 of the present invention are applied. 免震建物用止水可とう継手近傍の拡大断面図である。It is an expanded sectional view near the water stop flexible joint for seismic isolation buildings. 施工途中の斜視図である。It is a perspective view in the middle of construction. 図3のB部拡大図である。It is the B section enlarged view of FIG. 免震建物用止水可とう継手及び止水構造が適用された免震建物の底部の斜視図である。It is a perspective view of the bottom of a base-isolated building to which a water-stopping flexible joint for base-isolated buildings and a water-stop structure are applied. 免震建物の角部に設けられる防水シートの展開図である。It is an expanded view of the waterproof sheet provided in the corner | angular part of a seismic isolation building. 免震建物の角部に設けられる防水シートの斜視図である。It is a perspective view of the waterproof sheet provided in the corner | angular part of a seismic isolation building. 基礎が免震建物に対して左方向に変位した場合の図2相当図である。FIG. 3 is a view corresponding to FIG. 2 when the foundation is displaced leftward with respect to the base-isolated building. 基礎が免震建物に対して右方向に変位した場合の図2相当図である。FIG. 3 is a view corresponding to FIG. 2 when the foundation is displaced rightward with respect to the base-isolated building. 高い外水圧が作用した場合の図2相当図である。FIG. 3 is a view corresponding to FIG. 2 when a high external water pressure is applied. 実施形態1の変形例1に係る図2相当図である。FIG. 3 is a diagram corresponding to FIG. 2 according to a first modification of the first embodiment. 実施形態1の変形例1に係る図10相当図である。FIG. 10 is a diagram corresponding to FIG. 10 according to a first modification of the first embodiment. 実施形態1の変形例2に係る図2相当図である。FIG. 3 is a diagram corresponding to FIG. 2 according to a second modification of the first embodiment. 実施形態1の変形例3に係る図2相当図である。FIG. 9 is a view corresponding to FIG. 2 according to a third modification of the first embodiment. 実施形態2に係る図1相当図である。FIG. 3 is a view corresponding to FIG. 1 according to a second embodiment. 実施形態2に係る図10相当図である。FIG. 11 is a diagram corresponding to FIG. 10 according to the second embodiment.

以下、本発明の実施形態を図面に基づいて詳細に説明する。尚、以下の好ましい実施形態の説明は、本質的に例示に過ぎず、本発明、その適用物或いはその用途を制限することを意図するものではない。   Hereinafter, embodiments of the present invention will be described in detail with reference to the drawings. It should be noted that the following description of the preferred embodiment is merely illustrative in nature, and is not intended to limit the present invention, its application, or its use.

図1は、本発明の実施形態1に係る免震建物用止水可とう継手1を有する免震建物100及びその基礎110の底部断面図である。免震建物100は、平面視で例えば長方形や正方向に近い形状となっており、免震建物100外壁には直角な角部が存在している。   FIG. 1 is a bottom cross-sectional view of a base-isolated building 100 having a waterproof joint 1 for a base-isolated building according to Embodiment 1 of the present invention and a foundation 110 thereof. The base-isolated building 100 has, for example, a rectangular shape or a shape close to the positive direction in plan view, and a right-angled corner exists on the outer wall of the base-isolated building 100.

基礎110は図示しない地盤に設けられており、免震建物100に対応した形状の鉄筋コンクリート製である。基礎110は、水平に延びる基礎盤スラブ111と、基礎盤スラブ111の外周部に全周に亘って設けられた基礎壁部112とを有している。基礎壁部112は、免震建物100の底部の外周を全周に亘って囲むように形成されている。基礎壁部112の内方には、ピット部113が区画形成されている。基礎壁部112は、ピット部113の外周部を構成するものである。基礎壁部112における外面の上側には、凹部112aが形成されている。また、ピット部113内には、免震装置としての免震ゴム114が配設されている。免震ゴム114は免震装置の一例であり、他の構造の免震装置を用いることも可能である。   The foundation 110 is provided on a ground (not shown) and is made of reinforced concrete having a shape corresponding to the seismic isolation building 100. The foundation 110 has a horizontally extending foundation board slab 111 and a foundation wall part 112 provided on the outer circumference of the foundation board slab 111 over the entire circumference. The foundation wall 112 is formed so as to surround the outer periphery of the bottom of the base-isolated building 100 over the entire circumference. A pit portion 113 is defined on the inner side of the foundation wall portion 112. The base wall portion 112 constitutes the outer peripheral portion of the pit portion 113. On the upper side of the outer surface of the foundation wall 112, a recess 112a is formed. Further, a seismic isolation rubber 114 as a seismic isolation device is disposed in the pit portion 113. The seismic isolation rubber 114 is an example of a seismic isolation device, and seismic isolation devices of other structures can be used.

免震建物100は、基礎110の上方で免震ゴム114によって免震支承されている。免震建物100の底部の外周面と基礎壁部112の内周面とは、地震時に免震建物100が基礎110に対して水平方向に所定量変位可能となるように水平方向に離れている。   The base-isolated building 100 is supported by base isolation with a base isolation rubber 114 above the foundation 110. The outer peripheral surface of the bottom of the base-isolated building 100 and the inner peripheral surface of the foundation wall 112 are horizontally separated so that the base-isolated building 100 can be displaced by a predetermined amount in the horizontal direction with respect to the foundation 110 during an earthquake. .

免震建物100の底部の外周壁は、水平方向に張り出した張出しスラブ101を有している。張出しスラブ101は、基礎110の基礎壁部112よりも上方に位置しており、基礎壁部112の上端面を上方から覆うように延びている。また、この張出しスラブ101は、免震建物100の全周に亘って設けられている。   The outer peripheral wall at the bottom of the seismic isolation building 100 has an overhanging slab 101 protruding in the horizontal direction. The overhang slab 101 is located above the foundation wall 112 of the foundation 110 and extends so as to cover the upper end surface of the foundation wall 112 from above. The overhang slab 101 is provided over the entire circumference of the seismic isolation building 100.

張出しスラブ101の下面と基礎110の基礎壁部112の上端面との間には、地震時に免震建物100が基礎110に対して水平方向に変位可能となるように所定の隙間Sが形成されている。   A predetermined gap S is formed between the lower surface of the overhanging slab 101 and the upper end surface of the foundation wall 112 of the foundation 110 so that the seismic isolation building 100 can be displaced in the horizontal direction with respect to the foundation 110 during an earthquake. ing.

免震建物用止水可とう継手1は、免震建物100の外周壁の張出しスラブ101と、ピット部113の外周部(基礎壁部112)とをつなぐことにより、張出しスラブ101と基礎壁部112との間の隙間Sをシールするためものである。免震建物用止水可とう継手1は、防水シート10と、基礎110の基礎壁部112に固定される基礎側板状体(第1板状体)20と、免震建物100の張出しスラブ101に固定される建物側板状体(第2板状体)30と、不定形シーリング材Aと、基礎側板状体20を固定するための基礎側止め付け部材(第1止め付け部材)40と、建物側板状体30を固定するための建物側止め付け部材(第2止め付け部材)41とを備えている。   The water stop flexible joint 1 for a base-isolated building connects the overhang slab 101 and the base wall portion by connecting the overhang slab 101 of the outer peripheral wall of the base isolation building 100 and the outer peripheral portion (foundation wall portion 112) of the pit portion 113. This is to seal the gap S between the two. A waterproof joint 1 for a base-isolated building includes a waterproof sheet 10, a foundation-side plate-like body (first plate-like body) 20 fixed to the foundation wall 112 of the foundation 110, and an overhang slab 101 of the base-isolated building 100. Building-side plate-like body (second plate-like body) 30 fixed to the base, an indeterminate sealing material A, and a foundation-side fastening member (first fastening member) 40 for fixing the foundation-side plate-like body 20; A building-side fastening member (second fastening member) 41 for fixing the building-side plate 30 is provided.

防水シート10は、可とう性を有するとともに、免震建物100の張出しスラブ101に沿って免震建物100の周囲を周回する長尺状のものである。防水シート10は、例えば熱可塑性エラストマー系材料よりなり、空気及び水を通さないように形成されている。防水シート10の材質としては、軟質の塩化ビニル樹脂系エラストマー、オレフィン系エラストマー、スチレン系エラストマー、ウレタン系エラストマー等を含む群のなかから選ばれるものが好ましい。   The waterproof sheet 10 is flexible and has a long shape that circulates around the base-isolated building 100 along the overhanging slab 101 of the base-isolated building 100. The waterproof sheet 10 is made of, for example, a thermoplastic elastomer material, and is formed so as not to allow air and water to pass therethrough. The material of the waterproof sheet 10 is preferably selected from the group including soft vinyl chloride resin elastomers, olefin elastomers, styrene elastomers, urethane elastomers and the like.

防水シート10は、図5に示すように、免震建物100の大きさに応じて複数枚のシート10を免震建物100の周方向につなぎ合わせて長尺状にすることができる。この場合、シート10同士の端部を突き合わせて接合用のテープを用いて気密、かつ、液密に接合することができる。また、防水シート10の厚みは、後述する集中豪雨や津波時に作用する高い外水圧によっても容易に破れないように十分な厚みを確保するのが好ましい。また、防水シート10の幅は、図8や図9に示すように地震時に免震建物100が基礎110に対して水平方向に所定量変位しても防水シート10に無理な引っ張り力が作用しないように、余長部10aが形成される程度の幅が確保されている。   As shown in FIG. 5, the waterproof sheet 10 can be formed into a long shape by connecting a plurality of sheets 10 in the circumferential direction of the base isolation building 100 according to the size of the base isolation building 100. In this case, the end portions of the sheets 10 can be brought into contact with each other and bonded in an air-tight and liquid-tight manner using a bonding tape. Moreover, it is preferable to ensure the thickness of the waterproof sheet 10 so that the waterproof sheet 10 is not easily broken even by a high external water pressure that acts during a torrential rain or tsunami described later. Further, as shown in FIGS. 8 and 9, the width of the waterproof sheet 10 is such that an excessive tensile force does not act on the waterproof sheet 10 even if the base-isolated building 100 is displaced by a predetermined amount in the horizontal direction with respect to the foundation 110 in the event of an earthquake. Thus, the width | variety of the grade which the surplus length part 10a is formed is ensured.

基礎側板状体20は、基礎側止め付け部材40によって基礎110の基礎壁部112に固定される。この基礎側板状体20に防水シート10の端部が接着固定される。図2に示すように、基礎側板状体20は、鋼板21に、軟質の塩化ビニル樹脂からなる樹脂材層22が設けられた樹脂被覆鋼板を折り曲げ成形してなるものである。基礎側板状体20は、基礎壁部112の外面に沿って周方向に延びる長尺状に形成されている。複数の基礎側板状体20が、基礎壁部112を周回するように該基礎壁部112に固定される。基礎側板状体20の固定部位は、基礎壁部112の凹部112a内において上端部近傍である。   The foundation side plate-like body 20 is fixed to the foundation wall portion 112 of the foundation 110 by the foundation side fastening member 40. The end of the waterproof sheet 10 is bonded and fixed to the base side plate-like body 20. As shown in FIG. 2, the base-side plate-like body 20 is formed by bending a resin-coated steel plate in which a resin material layer 22 made of a soft vinyl chloride resin is provided on a steel plate 21. The foundation side plate-like body 20 is formed in a long shape extending in the circumferential direction along the outer surface of the foundation wall portion 112. The plurality of foundation side plate-like bodies 20 are fixed to the foundation wall 112 so as to go around the foundation wall 112. The fixed part of the foundation side plate-like body 20 is in the vicinity of the upper end in the recess 112 a of the foundation wall 112.

基礎側板状体20の鋼板21は、例えば、亜鉛引き鋼板や、ステンレス鋼板等の腐食しにくい材質のものが好ましい。樹脂材層22は、防水シート10の接着面を構成する層であり、防水シート10と同質又は同等の材料とするのが好ましい。樹脂材層22と防水シート10とを熱融着または溶剤溶着することで、水密性及び液密性が確保された状態で接着することが可能になる。また、樹脂材層22と防水シート10とを同質又は同等の材料としているので、強力な接着力が長期間に亘って得られる。尚、少なくとも防水シート10との接着側に樹脂材層22があればよいが、鋼板21の両面に樹脂材層22を設けてもよい。また、防水シート10は接着剤を用いて基礎側板状体20に接着することも可能である。   The steel plate 21 of the base side plate-like body 20 is preferably made of a material that hardly corrodes, such as a galvanized steel plate or a stainless steel plate. The resin material layer 22 is a layer constituting the adhesive surface of the waterproof sheet 10 and is preferably made of the same or equivalent material as the waterproof sheet 10. By heat sealing or solvent welding the resin material layer 22 and the waterproof sheet 10, it becomes possible to bond the resin material layer 22 and the waterproof sheet 10 in a state in which water tightness and liquid tightness are ensured. Moreover, since the resin material layer 22 and the waterproof sheet 10 are made of the same or equivalent materials, a strong adhesive force can be obtained over a long period of time. The resin material layer 22 may be provided at least on the side bonded to the waterproof sheet 10, but the resin material layer 22 may be provided on both surfaces of the steel plate 21. Further, the waterproof sheet 10 can be bonded to the base side plate-like body 20 using an adhesive.

基礎側板状体20の下部は、基礎壁部112の外面に固定される部位であり、この固定部位は基礎壁部112の外面に沿うように略鉛直に延びている。この基礎側板状体20の固定部位よりも上側には、免震建物100の張出しスラブ101へ向かって上方へ突出し、上に行くほど基礎110の外方に位置するように傾斜して延びる耐圧壁23が設けられている。この耐圧壁23は、基礎側板状体20に一体成形されている。   The lower part of the foundation side plate-like body 20 is a part fixed to the outer surface of the foundation wall part 112, and this fixing part extends substantially vertically along the outer surface of the foundation wall part 112. A pressure-resistant wall that protrudes upward toward the overhanging slab 101 of the base-isolated building 100 above the fixing portion of the foundation-side plate-like body 20 and extends so as to be located outward of the foundation 110 as it goes upward. 23 is provided. The pressure-resistant wall 23 is integrally formed with the base side plate-like body 20.

耐圧壁23の上端部は、基礎110への取り付け状態において免震建物100の張出しスラブ101の下面に接近している。基礎側板状体20の耐圧壁23の上端部(突出方向先端部)には、略水平に基礎110の外方へ向けて延出する延出板部24が設けられている。この延出板部24は、免震建物100の張出しスラブ101の下面に沿うように延びており、本発明の補強板部である。   The upper end portion of the pressure-resistant wall 23 is close to the lower surface of the overhanging slab 101 of the base-isolated building 100 in a state of being attached to the foundation 110. An extension plate portion 24 is provided at the upper end portion (protruding direction front end portion) of the pressure-resistant wall 23 of the foundation side plate-like body 20 so as to extend outwardly of the foundation 110 substantially horizontally. The extension plate portion 24 extends along the lower surface of the overhanging slab 101 of the base-isolated building 100 and is a reinforcing plate portion of the present invention.

耐圧壁23の延出板部24の上面には、シール材42が上方へ突出するように設けられている。シール材42は、例えばゴム等の弾性材からなるものである。シール材42は、免震建物100の張出しスラブ101の下面に摺接することによって張出しスラブ101と耐圧壁23との間をシールするものである。   A sealing material 42 is provided on the upper surface of the extension plate portion 24 of the pressure-resistant wall 23 so as to protrude upward. The sealing material 42 is made of an elastic material such as rubber. The sealing material 42 seals between the overhanging slab 101 and the pressure-resistant wall 23 by being in sliding contact with the lower surface of the overhanging slab 101 of the seismic isolation building 100.

基礎側止め付け部材40は、例えば、スクリューネジ等のネジ類、金属拡張アンカーやケミカルアンカー、プラスチックアンカー等から選ぶことができる。   The foundation side fastening member 40 can be selected from, for example, screws such as screw screws, metal expansion anchors, chemical anchors, plastic anchors, and the like.

一方、建物側板状体30は、建物側止め付け部材41によって免震建物100の張出しスラブ101の端面に固定される。免震建物100の張出しスラブ101の端面は、基礎110の基礎壁部112の凹部112aよりも外方に位置しているので、建物側板状体30は基礎側板状体20よりも外方に位置することになる。この建物側板状体30に防水シート10の基礎側とは反対側の端部が接着固定される。建物側板状体30は、基礎側板状体20と同様に鋼板31と樹脂材層32とを有する樹脂被覆鋼板からなるものである。   On the other hand, the building-side plate 30 is fixed to the end face of the overhanging slab 101 of the seismic isolation building 100 by the building-side fastening member 41. Since the end surface of the overhanging slab 101 of the base-isolated building 100 is located outward from the recess 112a of the foundation wall 112 of the foundation 110, the building-side plate 30 is located outward from the foundation-side plate 20. Will do. The end of the waterproof sheet 10 opposite to the base side is bonded and fixed to the building side plate 30. The building side plate-like body 30 is made of a resin-coated steel plate having a steel plate 31 and a resin material layer 32 in the same manner as the base side plate-like body 20.

建物側板状体30は、免震建物100の張出しスラブ101の端面に沿って周方向に延びる長尺状に形成されている。複数の建物側板状体30が、張出しスラブ101を周回するように固定される。   The building-side plate 30 is formed in a long shape extending in the circumferential direction along the end surface of the overhanging slab 101 of the base-isolated building 100. A plurality of building-side plate-like bodies 30 are fixed so as to go around the overhanging slab 101.

不定形シーリング材Aは、基礎側板状体20と基礎壁部112との間、及び建物側板状体30と張出しスラブ101との間にそれぞれ設けられる。不定形シーリング材Aは、例えば、不定形のコーキング材やシール材を用いることができる。不定形とは、例えば基礎側板状体20と基礎壁部112との間に設けた際に、基礎側板状体20や基礎壁部112の形状に沿って容易に変形して隙間ができないように密着することであり、この不定形シーリング材Aを使用することで水密性及び気密性を確保することができる。不定形シーリング材Aは、例えば、ウレタン系、シリコーン系、変成シリコ−ン系、エポキシ系、アクリル系、ブチルゴム系、チオコール系等のものを用いることができる。   The amorphous sealing material A is provided between the foundation-side plate-like body 20 and the foundation wall portion 112 and between the building-side plate-like body 30 and the overhanging slab 101, respectively. As the amorphous sealing material A, for example, an amorphous caulking material or a sealing material can be used. An indeterminate shape means that, for example, when it is provided between the foundation side plate-like body 20 and the foundation wall portion 112, it is easily deformed along the shape of the foundation side plate-like body 20 and the foundation wall portion 112 so that no gap is formed. By using this irregular sealing material A, water tightness and air tightness can be secured. As the amorphous sealing material A, for example, urethane-based, silicone-based, modified silicone-based, epoxy-based, acrylic-based, butyl rubber-based, thiocol-based, or the like can be used.

次に、免震建物用止水可とう継手1の施工要領について説明する。免震建物用止水可とう継手1は、免震建物100の新築時に施工することもできるし、築後、年数が経過した後に施工することもできる。   Next, the construction point of the waterproof joint 1 for a seismic isolation building will be described. The waterproof joint 1 for a seismic isolation building can be constructed when the seismic isolation building 100 is newly constructed, or can be constructed after the years have elapsed since the construction.

まず、コーキングガン等(図示せず)を用いて液状の不定形シーリング材Aを、基礎側板状体20の固定部位、即ち、基礎110の基礎壁部112の外面に塗布する。不定形シーリング材Aを塗布する前に、基礎110の基礎壁部112の外面にプライマーを塗布するようにしてもよい。その後、図3に示すように、基礎110の基礎壁部112に塗布した不定形シーリング材Aの上に基礎側板状体20を重ね、さらに、その基礎側板状体20に防水シート10の端部を重ねて防水シート10を基礎側板状体20に接着固定した後、ハンマードリル(図示せず)を用いて防水シート10及び基礎側板状体20に貫通孔を開け、基礎壁部112に下穴を開ける。   First, using a caulking gun or the like (not shown), the liquid amorphous sealing material A is applied to the fixed portion of the foundation side plate-like body 20, that is, the outer surface of the foundation wall portion 112 of the foundation 110. Before applying the irregular sealing material A, a primer may be applied to the outer surface of the foundation wall portion 112 of the foundation 110. After that, as shown in FIG. 3, the foundation side plate-like body 20 is overlaid on the irregular sealing material A applied to the foundation wall portion 112 of the foundation 110, and the end portion of the waterproof sheet 10 is further placed on the foundation side plate-like body 20. After the waterproof sheet 10 is bonded and fixed to the base side plate-like body 20 by using a hammer, a through hole is made in the waterproof sheet 10 and the base side plate-like body 20 using a hammer drill (not shown), and a pilot hole is formed in the base wall portion 112. Open.

尚、防水シート10は、免震建物100の角部では、図7に示すように角部の形状にあわせて直角に折り曲げる必要がある。このとき、防水シート10にシワや不要な重なり部分ができないように、図6に示すような切欠部10bを形成しておく。そして、切欠部10bの縁部を突き合わせるように防水シート10を折り曲げ、切欠部10bの縁部の突き合わせ部分に水密テープ11を貼って水密性及び気密性を確保する。   Note that the waterproof sheet 10 needs to be bent at a right angle in accordance with the shape of the corner at the corner of the base-isolated building 100 as shown in FIG. At this time, a notch 10b as shown in FIG. 6 is formed so that the waterproof sheet 10 does not have wrinkles or unnecessary overlapping portions. And the waterproof sheet 10 is bent so that the edge part of the notch part 10b abuts, and the watertight tape 11 is stuck on the abutting part of the edge part of the notch part 10b, and watertightness and airtightness are ensured.

次いで、防水シート10及び基礎側板状体20の貫通孔と、基礎壁部112の下穴に基礎側止め付け部材40を打設して防水シート10及び基礎側板状体20を基礎壁部112に固定する。この状態では、図3に示すように防水シート10は上下方向に延びている。   Next, the base side fastening member 40 is placed in the through hole of the waterproof sheet 10 and the base side plate-like body 20 and the prepared hole of the base wall portion 112 so that the waterproof sheet 10 and the base side plate-like body 20 are attached to the base wall portion 112. Fix it. In this state, the waterproof sheet 10 extends in the vertical direction as shown in FIG.

複数枚の防水シート10を、基礎壁部112の周方向に隣接するように配置する。隣り合う防水シート10同士は、水密テープTで貼り合わせて一体化する。水密テープTを用いることで防水シート10間の水密性及び気密性を確保できる。   The plurality of waterproof sheets 10 are arranged so as to be adjacent to the circumferential direction of the foundation wall portion 112. Adjacent waterproof sheets 10 are bonded together with a watertight tape T and integrated. By using the watertight tape T, watertightness and airtightness between the waterproof sheets 10 can be secured.

また、図4に示すように、防水シート10の基礎側とは反対側の端部には、建物側板状体30を接着固定しておく。また、不定形シーリング材Aを上記のようにして建物側板状体30の固定部位、即ち、免震建物100の張出しスラブ101の端面に塗布しておく。   Moreover, as shown in FIG. 4, the building-side plate-like body 30 is bonded and fixed to the end of the waterproof sheet 10 opposite to the base side. Further, the amorphous sealing material A is applied to the fixed portion of the building side plate 30, that is, the end surface of the overhanging slab 101 of the seismic isolation building 100 as described above.

その後、防水シート10の下側を図5に示すように上方へ曲げ、免震建物100の張出しスラブ101に塗布した不定形シーリング材Aの上に建物側板状体30を重ねる。そして、防水シート10及び建物側板状体30に貫通孔を開け、免震建物100の張出しスラブ101に下穴を開ける。   Thereafter, the lower side of the waterproof sheet 10 is bent upward as shown in FIG. 5, and the building-side plate-like body 30 is overlaid on the amorphous sealing material A applied to the overhanging slab 101 of the seismic isolation building 100. Then, a through hole is made in the waterproof sheet 10 and the building-side plate-like body 30, and a pilot hole is made in the overhang slab 101 of the seismic isolation building 100.

次いで、防水シート10及び建物側板状体30の貫通孔と、張出しスラブ101の下穴に建物側止め付け部材41を打設して防水シート10及び建物側板状体30を張出しスラブ101に固定する。   Subsequently, the waterproof sheet 10 and the building-side plate 30 are fixed to the overhanging slab 101 by placing the building-side fastening member 41 in the through holes of the waterproof sheet 10 and the building-side plate-like body 30 and the prepared holes of the overhanging slab 101. .

以上のようにして免震建物用止水可とう継手1を取り付けることができ、この免震建物用止水可とう継手1を備えた止水構造を得ることができる。免震建物用止水可とう継手1を取り付ける際には、コンクリート型枠に板状体20,30等を配設する必要はなく、後施工による取付けができ、施工性も良好である。   As described above, the waterproof joint 1 for a base-isolated building can be attached, and a water stop structure provided with the waterproof joint 1 for a base-isolated building can be obtained. When attaching the water-stopping flexible joint 1 for a base-isolated building, it is not necessary to arrange the plate-like bodies 20 and 30 etc. in the concrete formwork, it can be attached by post-construction, and the workability is also good.

取り付け状態では、防水シート10、耐圧壁23及びシール材42によって閉空間Rが形成されている。免震建物用止水可とう継手1の取り付け状態では、図2等に示すように、防水シート10に余長部10aができるので、防水シート10の中間部が下がったような状態となる。   In the attached state, a closed space R is formed by the waterproof sheet 10, the pressure-resistant wall 23, and the sealing material 42. In the attached state of the water-proof flexible joint 1 for seismic isolation building, as shown in FIG. 2 and the like, the extra length 10a is formed in the waterproof sheet 10, so that the middle part of the waterproof sheet 10 is lowered.

例えば地震が発生して図8に示すように基礎110が免震建物100に対して左方向(図中の−方向)に変位した場合には、基礎側板状体20が建物側板状体30から左方向へ離れるように変位することになる。この変位により、防水シート10の基礎110側の端部と免震建物100側の端部とが離れることになるので、防水シート10が引っ張られることになるが、この防水シート10には余長部10aが設けられているので、余長部10aの弛みが減ることで上記地震による変位が許容される。また、耐圧壁23の延出板部24に設けられているシール材42が免震建物100の張出しスラブ101の下面に摺接しながら、左方向へ相対移動する。   For example, when an earthquake occurs and the foundation 110 is displaced in the left direction (the negative direction in the figure) with respect to the base-isolated building 100 as shown in FIG. 8, the foundation side plate 20 is moved from the building side plate 30. It will be displaced away to the left. Due to this displacement, the end of the waterproof sheet 10 on the base 110 side and the end of the seismic isolation building 100 side are separated, so that the waterproof sheet 10 is pulled. Since the part 10a is provided, the displacement by the said earthquake is accept | permitted by the slack of the extra length part 10a reducing. Further, the sealing material 42 provided on the extension plate portion 24 of the pressure-resistant wall 23 moves relative to the left while sliding on the lower surface of the overhanging slab 101 of the seismic isolation building 100.

また、地震時に図9に示すように基礎110が免震建物100に対して右方向(図中の+方向)に変位した場合には、基礎側板状体20が建物側板状体30に接近することになる。この変位は防水シート10の変形によって許容される。また、耐圧壁23の延出板部24に設けられているシール材42が免震建物100の張出しスラブ101の下面に摺接しながら、右方向へ相対移動する。   9, when the foundation 110 is displaced in the right direction (+ direction in the figure) with respect to the base-isolated building 100 as shown in FIG. 9, the foundation side plate-like body 20 approaches the building-side plate-like body 30. It will be. This displacement is allowed by deformation of the waterproof sheet 10. Further, the sealing material 42 provided on the extension plate portion 24 of the pressure-resistant wall 23 moves relative to the right while sliding on the lower surface of the overhanging slab 101 of the seismic isolation building 100.

地震時には、免震建物100と基礎110との相対変位によって閉空間R内の空気が圧縮されたり、閉空間R内の空気を膨張させたりすることになる。この圧縮、膨張の動作によって制振効果が発揮される。   During an earthquake, the air in the closed space R is compressed or the air in the closed space R is expanded by the relative displacement between the base-isolated building 100 and the foundation 110. The damping effect is exhibited by the compression and expansion operations.

一方、図10に示すように、例えば集中豪雨や津波が起こって免震建物100の少なくとも下部が浸水した場合には、免震建物用止水可とう継手1には高い外水圧が作用することになる。この外水圧により、防水シート10が、免震建物100の張出しスラブ101と基礎110の基礎壁部112との隙間Sからピット部113へ入り込もうとするが、その隙間Sを覆う耐圧壁23を設けているので、防水シート10は折り畳まれたような状態で耐圧壁23に接触して支えられる。これにより、防水シート10が隙間Sからピット部113内へ侵入するのが抑制される。よって、高い外水圧にも対応することが可能になる。   On the other hand, as shown in FIG. 10, for example, when a heavy rain or tsunami occurs and at least the lower part of the seismic isolation building 100 is inundated, a high external water pressure acts on the watertight flexible joint 1 for the seismic isolation building. become. With this external water pressure, the waterproof sheet 10 tries to enter the pit portion 113 through the gap S between the overhanging slab 101 of the base-isolated building 100 and the foundation wall portion 112 of the foundation 110, but a pressure-resistant wall 23 is provided to cover the gap S. Therefore, the waterproof sheet 10 is supported in contact with the pressure resistant wall 23 in a folded state. As a result, the waterproof sheet 10 is prevented from entering the pit portion 113 from the gap S. Therefore, it becomes possible to cope with a high external water pressure.

耐圧壁23は、上側へ行くほどピット部113外に位置するように傾斜しているので、外水圧によってピット部113内へ向けて変形しようとした際、上部の延出板部24が張出しスラブ101の下面に当接して支持される。これにより、耐圧壁23がピット部113内に入ることはなく、高い耐圧性能を得ることができる。また、延出板部24を形成していることにより耐圧壁23の剛性が高まっているので、このことによっても高い耐圧性能を得ることができる。   Since the pressure-resistant wall 23 is inclined so as to be located outside the pit portion 113 as it goes upward, the upper extension plate portion 24 protrudes from the slab when it is deformed toward the pit portion 113 by the external water pressure. Abutted on and supported by the lower surface of 101. Thereby, the pressure-resistant wall 23 does not enter the pit portion 113, and high pressure-resistant performance can be obtained. Moreover, since the rigidity of the pressure | voltage resistant wall 23 is increasing by forming the extended board part 24, a high pressure | voltage resistant performance can be obtained also by this.

本実施形態では、通常時には防水シート10を自然に弛ませておくだけでよく、特許文献2のように特定の部位に常に力を加えて弾性変形させておく必要がないので、長期間経過しても所期の防水性能を確保することができる。また、特許文献1で必要な水位管理のような維持管理は不要である。   In the present embodiment, it is only necessary to naturally relax the waterproof sheet 10 at normal times, and it is not necessary to always apply a force to a specific portion and elastically deform it as in Patent Document 2, so that a long time has passed. However, the desired waterproof performance can be ensured. Further, maintenance management such as water level management required in Patent Document 1 is unnecessary.

したがって、実施形態1によれば、基礎側板状体20を基礎壁部112に不定形シーリング材Aを介して基礎側止め付け部材40で固定し、建物側板状体30を免震建物100の外周壁に不定形シーリング材Aを介して建物止め付け部材41で固定し、防水シート10を基礎側板状体20及び建物側板状体30に接着固定し、この防水シート10に余長部10aを設定し、免震建物100と基礎110との隙間Sを覆う耐圧壁23を設けている。これにより、施工及び維持管理を容易なものとしながら、基礎110と免震建物100との間を長期間に亘って確実にシール性できる。   Therefore, according to the first embodiment, the foundation-side plate-like body 20 is fixed to the foundation wall portion 112 with the foundation-side fastening member 40 via the irregular sealing material A, and the building-side plate-like body 30 is fixed to the outer periphery of the seismic isolation building 100. The waterproof sheet 10 is fixed to the base side plate-like body 20 and the building-side plate-like body 30 by fixing the building fixing member 41 to the wall with the irregular sealing material A, and the extra length portion 10a is set on the waterproof sheet 10. In addition, a pressure-resistant wall 23 that covers the gap S between the base-isolated building 100 and the foundation 110 is provided. Thereby, it is possible to reliably seal between the foundation 110 and the seismic isolation building 100 over a long period of time while facilitating construction and maintenance.

また、耐圧壁23を基礎側板状体20に一体成形したので、部品点数を削減できるとともに、施工をより一層容易にすることができる。   In addition, since the pressure-resistant wall 23 is integrally formed with the base side plate-like body 20, the number of parts can be reduced and the construction can be further facilitated.

また、耐圧壁23に、免震建物100の外周壁の一部である張出しスラブ101の下面に沿うように延びる延出板部24を設けたので、高い外水圧が作用した際に延出板部24を張出しスラブ101の下面で支えることができる。これにより、耐圧性能がより一層高まる。   Moreover, since the extension plate part 24 extended along the lower surface of the overhanging slab 101 which is a part of the outer peripheral wall of the base-isolated building 100 is provided on the pressure-resistant wall 23, the extension plate is provided when a high external water pressure acts. The part 24 can be supported by the lower surface of the overhanging slab 101. Thereby, the pressure resistance performance is further enhanced.

また、防水シート10、耐圧壁23及びシール材42によって閉空間Rを形成したので、地震時に閉空間R内の空気を圧縮、膨張させて制振効果を得ることができる。これにより、免震建物100の揺れを早期に収束させることができる。   Further, since the closed space R is formed by the waterproof sheet 10, the pressure-resistant wall 23, and the sealing material 42, it is possible to obtain a vibration damping effect by compressing and expanding the air in the closed space R during an earthquake. Thereby, the shake of the seismic isolation building 100 can be converged at an early stage.

また、図11及び図12に示す変形例1のように、耐圧壁23の傾斜を緩くし、かつ、延出板部24の延出長さを短くしてもよい。この場合も図12に示すように十分な耐圧性能を得ることができる。尚、耐圧壁23の傾斜角度や延出板部24の長さは任意に設定することができる。   Further, as in Modification 1 shown in FIGS. 11 and 12, the pressure-resistant wall 23 may be slanted and the extension length of the extension plate portion 24 may be shortened. Also in this case, sufficient pressure resistance performance can be obtained as shown in FIG. In addition, the inclination angle of the pressure-resistant wall 23 and the length of the extending plate part 24 can be set arbitrarily.

また、図13に示す変形例2のように、免震建物100の張出しスラブ101と基礎110の基礎壁部112との隙間S内へ延びる延出板部25を耐圧壁23に設けてもよい。この変形例2では、延出板部25の上面にシール材42を設けている。また、延出板部25の先端部は、隙間S内に位置している。延出板部25の先端部には、下方へ延びる縦板部26が設けられている。縦板部26の下端部は、基礎110の基礎壁部112の上端面に当接した状態で支えられている。これにより、外水圧によって耐圧壁23が隙間S側へ変形しようとした際、延出板部25が張出しスラブ101の上面で支えられるとともに、縦板部26が基礎壁部112で支えられるので、耐圧壁23の変形を抑制できる。よって、十分な耐圧性能を得ることができる。   Further, as in Modification 2 shown in FIG. 13, an extension plate portion 25 extending into the gap S between the overhanging slab 101 of the base-isolated building 100 and the foundation wall portion 112 of the foundation 110 may be provided on the pressure-resistant wall 23. . In the second modification, a sealing material 42 is provided on the upper surface of the extension plate portion 25. Further, the distal end portion of the extension plate portion 25 is located in the gap S. A vertical plate portion 26 extending downward is provided at the distal end portion of the extension plate portion 25. The lower end portion of the vertical plate portion 26 is supported while being in contact with the upper end surface of the foundation wall portion 112 of the foundation 110. Thereby, when the pressure-resistant wall 23 is going to deform | transform into the clearance gap S side by external water pressure, while the extension board part 25 is supported by the upper surface of the overhang | projection slab 101, the vertical board part 26 is supported by the foundation wall part 112, The deformation of the pressure-resistant wall 23 can be suppressed. Therefore, sufficient pressure resistance performance can be obtained.

また、図14に示す変形例3のように、耐圧壁23の延出板部24の先端部に、下方へ延びる板部27を設けてもよい。板部27は下側へ行くほど耐圧壁23の基端に接近するように傾斜している。この変形例によれば、耐圧壁23の剛性をより一層高めることができるとともに、板部27によっても外水圧を受けることができるので、十分な耐圧性能を得ることができる。   Moreover, you may provide the board part 27 extended below in the front-end | tip part of the extension plate part 24 of the pressure | voltage resistant wall 23 like the modification 3 shown in FIG. The plate portion 27 is inclined so as to approach the proximal end of the pressure-resistant wall 23 as it goes downward. According to this modification, the rigidity of the pressure-resistant wall 23 can be further increased, and the external pressure can be received also by the plate portion 27, so that sufficient pressure-resistant performance can be obtained.

(実施形態2)
図15及び図16は、本発明の実施形態2に係る免震建物用止水可とう継手1を示すものである。この実施形態2の免震建物用止水可とう継手1は、実施形態1のものに対して、耐圧壁23が延出板部を有していない点で異なっている。以下、実施形態1と異なる部分について説明する。
(Embodiment 2)
FIG.15 and FIG.16 shows the waterproof joint 1 for seismic isolation buildings which concerns on Embodiment 2 of this invention. The water-proof flexible joint 1 for a seismic isolation building according to the second embodiment is different from that according to the first embodiment in that the pressure-resistant wall 23 does not have an extension plate portion. Hereinafter, a different part from Embodiment 1 is demonstrated.

実施形態2の耐圧壁23は、基礎側板状体20に一体成形されており、免震建物100の張出しスラブ101へ向かって上方へ突出している。耐圧壁23は、略鉛直に延びている。耐圧壁23の先端部(上端部)は、免震建物100の張出しスラブ101の下面に接近している。   The pressure-resistant wall 23 according to the second embodiment is integrally formed with the foundation-side plate-like body 20 and protrudes upward toward the overhanging slab 101 of the base-isolated building 100. The pressure-resistant wall 23 extends substantially vertically. The tip (upper end) of the pressure-resistant wall 23 is close to the lower surface of the overhanging slab 101 of the seismic isolation building 100.

この実施形態2においても、実施形態1と同様にして地震時の変位を許容することができる。また、図16に示すように高い外水圧が作用した際には、防水シート10が隙間Sからピット部113内へ侵入するのが耐圧壁23によって抑制される。   Also in the second embodiment, the displacement at the time of the earthquake can be allowed as in the first embodiment. Further, as shown in FIG. 16, when a high external water pressure is applied, the pressure-resistant wall 23 prevents the waterproof sheet 10 from entering the pit portion 113 from the gap S.

したがって、実施形態2によれば、実施形態1と同様に、施工及び維持管理を容易なものとしながら、耐圧壁23の加工性も良好で、基礎110と免震建物100との間を長期間に亘って確実にシール性できる。   Therefore, according to the second embodiment, as in the first embodiment, the workability of the pressure-resistant wall 23 is good and the work between the foundation 110 and the base-isolated building 100 is long-time while facilitating construction and maintenance. It is possible to reliably seal over the entire area.

また、本発明は、基礎壁部112における外面の上側に凹部112aが形成されていない場合においても有効である。   The present invention is also effective when the concave portion 112a is not formed on the upper side of the outer surface of the foundation wall portion 112.

上述の実施形態はあらゆる点で単なる例示に過ぎず、限定的に解釈してはならない。さらに、特許請求の範囲の均等範囲に属する変形や変更は、全て本発明の範囲内のものである。   The above-described embodiment is merely an example in all respects and should not be interpreted in a limited manner. Further, all modifications and changes belonging to the equivalent scope of the claims are within the scope of the present invention.

以上説明したように、本発明に係る免震建物用止水可とう継手及び止水構造は、免震装置により支承された免震建物に適用できる。   As described above, the waterproof joint and the waterproof structure for a base isolation building according to the present invention can be applied to a base isolation building supported by a base isolation device.

1 免震建物用止水可とう継手
10 防水シート
10a 余長部
20 基礎側板状体(第1板状体)
23 耐圧壁
24、25 延出板部(補強板部)
30 建物側板状体(第2板状体)
40 基礎側止め付け部材(第1止め付け部材)
41 建物側止め付け部材(第2止め付け部材)
42 シール材
100 免震建物
101 張出しスラブ
110 基礎
112 基礎壁部
113 ピット部
114 免震装置
A 不定形シーリング材
R 閉空間
S 隙間
DESCRIPTION OF SYMBOLS 1 Water-proof flexible joint 10 for seismic isolation buildings Waterproof sheet 10a Extra length part 20 Foundation side plate-like body (1st plate-like body)
23 Pressure-resistant walls 24, 25 Extension plate (reinforcement plate)
30 Building side plate (2nd plate)
40 Foundation side fastening member (first fastening member)
41 Building side fastening member (second fastening member)
42 Seal material 100 Base-isolated building 101 Overhang slab 110 Foundation 112 Foundation wall 113 Pit 114 114 Seismic isolation device A Indeterminate sealing material R Closed space S Gap

Claims (5)

地盤に設けられた基礎のピット部内に配設された免震装置により該基礎の上方で免震支承された免震建物の外周壁と、上記ピット部の外周部との隙間をシールするための免震建物用止水可とう継手において、
可とう性を有するとともに、上記免震建物の外周壁に沿って周回する長尺状の防水シートと、
上記基礎のピット部の外周部に固定される第1板状体と、
上記免震建物の外周壁に固定される第2板状体と、
上記第1板状体と上記基礎のピット部の外周部との間、及び上記第2板状体と上記免震建物の外周壁との間にそれぞれ設けられる不定形シーリング材と、
上記第1板状体を上記基礎のピット部の外周部に固定するための第1止め付け部材と、
上記第2板状体を上記免震建物の外周壁に固定するための第2止め付け部材とを備え、
上記防水シートは、上記ピット部の外部において上記第1板状体及び上記第2板状体に接着固定された状態で、上記第1板状体及び上記第2板状体の間に余長部を有し、
上記第1板状体は、上記免震建物の外周壁と上記ピット部の外周部との隙間を覆う耐圧壁を有していることを特徴とする免震建物用止水可とう継手。
For sealing a gap between the outer peripheral wall of the base-isolated building and the outer peripheral portion of the pit portion, which is seismically isolated above the foundation by the base isolation device disposed in the pit portion of the foundation provided on the ground In the waterproof joint for seismic isolation buildings,
A long waterproof sheet that has flexibility and circulates along the outer peripheral wall of the base-isolated building,
A first plate body fixed to the outer peripheral portion of the pit portion of the foundation;
A second plate-like body fixed to the outer peripheral wall of the base-isolated building;
An indeterminate sealing material provided between the first plate and the outer periphery of the foundation pit, and between the second plate and the outer wall of the base-isolated building,
A first fastening member for fixing the first plate-like body to the outer peripheral portion of the pit portion of the foundation;
A second fastening member for fixing the second plate-like body to the outer peripheral wall of the base-isolated building,
The waterproof sheet has an extra length between the first plate-like body and the second plate-like body in a state where the waterproof sheet is bonded and fixed to the first plate-like body and the second plate-like body outside the pit portion. Part
The first plate-like body has a pressure-resistant wall that covers a gap between the outer peripheral wall of the base-isolated building and the outer peripheral portion of the pit portion.
請求項1に記載の免震建物用止水可とう継手において、
上記耐圧壁は、上記第1板状体に一体成形されていることを特徴とする免震建物用止水可とう継手。
In the waterproof joint for a seismic isolation building according to claim 1,
The watertight flexible joint for a base-isolated building, wherein the pressure-resistant wall is integrally formed with the first plate-like body.
請求項1または2に記載の免震建物用止水可とう継手において、
上記第1板状体の耐圧壁は、上記免震建物へ向けて突出し、該耐圧壁の突出方向先端部には、上記免震建物の外周壁の下面に沿うように延びる補強板部が設けられていることを特徴とする免震建物用止水可とう継手。
In the waterproof joint for a seismic isolation building according to claim 1 or 2,
The pressure-resistant wall of the first plate-like body protrudes toward the base-isolated building, and a reinforcing plate portion that extends along the lower surface of the outer peripheral wall of the base-isolated building is provided at the tip of the pressure-proof wall in the protruding direction. A waterproof joint for seismic isolation buildings, characterized by
請求項1から3のいずれか1つに記載の免震建物用止水可とう継手において、
上記第1板状体及び上記第2板状体と、上記防水シートとは気密性を有するように接合され、
上記第1板状体の耐圧壁には、上記免震建物の外周壁に摺接するシール材が設けられ、
上記防水シート、上記耐圧壁及び上記シール材によって閉空間が形成されていることを特徴とする免震建物用止水可とう継手。
In the watertight flexible joint for seismic isolation buildings according to any one of claims 1 to 3,
The first plate-like body, the second plate-like body, and the waterproof sheet are joined so as to have airtightness,
The pressure-resistant wall of the first plate-like body is provided with a seal material that is in sliding contact with the outer peripheral wall of the base-isolated building,
A watertight flexible joint for a base-isolated building, wherein a closed space is formed by the waterproof sheet, the pressure-resistant wall, and the sealing material.
地盤に設けられた基礎のピット部内に配設された免震装置により該基礎の上方で免震支承された免震建物の外周壁と、上記ピット部の外周部との隙間をシールする止水構造において、
可とう性を有するとともに、上記免震建物の外周壁に沿って周回するように形成された長尺状の防水シートと、
上記基礎のピット部の外周部に固定される第1板状体と、
上記免震建物の外周壁に固定される第2板状体と、
上記第1板状体と上記基礎のピット部の外周部との間、及び上記第2板状体と上記免震建物の外周壁との間にそれぞれ設けられる不定形シーリング材と、
上記第1板状体を上記基礎のピット部の外周部に固定するための第1止め付け部材と、
上記第2板状体を上記免震建物の外周壁に固定するための第2止め付け部材とを備え、
上記防水シートは、上記ピット部の外部において上記第1板状体及び上記第2板状体に接着固定された状態で、上記第1板状体及び上記第2板状体の間に余長部を有し、
上記第1板状体は、上記免震建物の外周壁と上記ピット部の外周部との隙間を覆う耐圧壁を有していることを特徴とする止水構造。
A water stop that seals the gap between the outer peripheral wall of the base isolation building that is seismically isolated above the foundation and the outer peripheral portion of the pit portion by a base isolation device disposed in the pit portion of the foundation provided on the ground. In structure
A long waterproof sheet that has flexibility and is formed to circulate along the outer peripheral wall of the base-isolated building,
A first plate body fixed to the outer peripheral portion of the pit portion of the foundation;
A second plate-like body fixed to the outer peripheral wall of the base-isolated building;
An indeterminate sealing material provided between the first plate and the outer periphery of the foundation pit, and between the second plate and the outer wall of the base-isolated building,
A first fastening member for fixing the first plate-like body to the outer peripheral portion of the pit portion of the foundation;
A second fastening member for fixing the second plate-like body to the outer peripheral wall of the base-isolated building,
The waterproof sheet has an extra length between the first plate-like body and the second plate-like body in a state where the waterproof sheet is bonded and fixed to the first plate-like body and the second plate-like body outside the pit portion. Part
The water stop structure, wherein the first plate-like body has a pressure-resistant wall that covers a gap between the outer peripheral wall of the base-isolated building and the outer peripheral portion of the pit portion.
JP2013033669A 2013-02-22 2013-02-22 Waterproof joint for seismic isolation buildings and waterproof structure Active JP6023608B2 (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104452982A (en) * 2014-10-20 2015-03-25 胡志强 House industrial building outer wall waterproof part

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JP2001020393A (en) * 1999-07-12 2001-01-23 Seibu Polymer Corp Joint-water-stop joint of concrete structure
JP2007198014A (en) * 2006-01-26 2007-08-09 Sekisui House Ltd Gap blocking member
JP2007285078A (en) * 2006-04-20 2007-11-01 Takenaka Komuten Co Ltd Base-isolated building
JP2014043709A (en) * 2012-08-27 2014-03-13 Ki Intekku Kk Structure for preventing flooding to lower side of base isolation building

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2001020393A (en) * 1999-07-12 2001-01-23 Seibu Polymer Corp Joint-water-stop joint of concrete structure
JP2007198014A (en) * 2006-01-26 2007-08-09 Sekisui House Ltd Gap blocking member
JP2007285078A (en) * 2006-04-20 2007-11-01 Takenaka Komuten Co Ltd Base-isolated building
JP2014043709A (en) * 2012-08-27 2014-03-13 Ki Intekku Kk Structure for preventing flooding to lower side of base isolation building

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104452982A (en) * 2014-10-20 2015-03-25 胡志强 House industrial building outer wall waterproof part

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