JP6438202B2 - Construction method of projecting part of seismic isolation building - Google Patents

Construction method of projecting part of seismic isolation building Download PDF

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JP6438202B2
JP6438202B2 JP2014052900A JP2014052900A JP6438202B2 JP 6438202 B2 JP6438202 B2 JP 6438202B2 JP 2014052900 A JP2014052900 A JP 2014052900A JP 2014052900 A JP2014052900 A JP 2014052900A JP 6438202 B2 JP6438202 B2 JP 6438202B2
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projecting part
seismic isolation
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construction method
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JP2015175172A (en
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藤原 智
智 藤原
敬造 東間
敬造 東間
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Maeda Corp
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Description

本発明は、基礎上に免震装置を設置して構築される免震建築物のせり出し部の施工方法に関する。   The present invention relates to a method for constructing a protruding portion of a seismic isolation building constructed by installing a seismic isolation device on a foundation.

大地震対策のため、基礎上に免震装置を設置して構築される免震建築物が広まっており、その免震に用いられる装置や地震動を吸収可能な滑り支承が種々存在する(例えば特許文献1参照)。   Seismic isolation buildings that are constructed by installing seismic isolation devices on the foundation have become widespread as countermeasures against large earthquakes, and there are various devices used for such seismic isolation and sliding bearings that can absorb seismic motion (for example, patents) Reference 1).

特開2011−214583号公報JP 2011-214583 A

免震建築物の構築において、例えば2階以上が片持ちのせり出し部となる場合、そのせり出し部を支えるための仮設構台と免震装置を用いると、その仮設工事が大掛かりとなってコストもアップしてしまう。   In the construction of seismic isolation buildings, for example, if the second floor or more is a cantilever projecting part, using a temporary construction base and seismic isolation device to support the projecting part will increase the cost of the temporary construction and increase the cost. Resulting in.

本発明の課題は、免震建築物のせり出し部を必要最小限の仮設工事で施工できてコストも抑えられるようにすることである。   The subject of this invention is that it can construct the protrusion part of a seismic isolation building by the minimum necessary temporary construction, and can also suppress cost.

以上の課題を解決するため、請求項1に記載の発明は、
基礎上に免震装置を設置して構築される免震建築物のせり出し部の施工方法であって、
前記基礎上に、前記せり出し部の床梁の先端部を支持する主柱と、前記せり出し部の下の階の床梁の端部上に一端部を載せて前記主柱に先端部が剛接合された梁材と、その梁材の上に設置して前記せり出し部の床梁の中間部を支持する支柱と、を備える支保工を仮設するとともに、その支保工に地震動を吸収可能な滑り支承を設置した状態で、前記せり出し部の床梁から上の前記せり出し部を施工することを特徴とする。
In order to solve the above problems, the invention described in claim 1
It is a construction method for the projecting part of a seismic isolation building constructed by installing a seismic isolation device on the foundation,
On the foundation, a main column that supports the tip of the floor beam of the protruding portion, and one end portion is placed on the end of the floor beam on the floor below the protruding portion, and the tip is rigidly joined to the main column. a beam member that is, a post for supporting an intermediate portion of the floor beams of the protruding portion is disposed on the beam members, as well as temporary the支保Engineering comprise absorbable slip bearing ground motion to the shoring The above-described protruding portion is constructed from the floor beam of the protruding portion in a state where the is installed.

請求項2に記載の発明は、
請求項1に記載の免震建築物のせり出し部の施工方法であって、
前記基礎上に設置した前記滑り支承の上に前記支保工の前記主柱を仮設することを特徴とする。
The invention described in claim 2
It is a construction method of the protruding part of the seismic isolation building according to claim 1,
The main pillar of the support work is temporarily installed on the sliding bearing installed on the foundation.

請求項3に記載の発明は、
請求項1または2に記載の免震建築物のせり出し部の施工方法であって、
前記せり出し部の床梁の上にコンクリートを打設したり鉄骨を建て込んで前記せり出し部を施工することを特徴とする。
The invention according to claim 3
It is a construction method of the protruding part of the seismic isolation building according to claim 1 or 2,
The projecting part is constructed by placing concrete on the floor beam of the projecting part or building a steel frame.

請求項4に記載の発明は、
請求項1から3のいずれか一項に記載の免震建築物のせり出し部の施工方法であって、
前記せり出し部の少なくとも一階層を施工した後、前記支保工及び滑り支承を撤去することを特徴とする。
The invention according to claim 4
It is the construction method of the protruding part of the seismic isolation building according to any one of claims 1 to 3,
After the construction of at least one layer of the protruding portion, the support work and the sliding bearing are removed.

本発明によれば、免震建築物のせり出し部を必要最小限の仮設工事で施工できてコストも抑えることができる。   According to the present invention, the protruding portion of the seismic isolation building can be constructed with the minimum necessary temporary work, and the cost can be reduced.

本発明を適用した免震建築物のせり出し部の施工の一実施形態の構成を示すもので、せり出し部の支保工設置状態で1階立ち上がりコンクリート打設時を示した側面図である。It is the side view which showed the structure of one Embodiment of the construction of the protrusion part of the seismic isolation building to which this invention is applied, and showed the time of 1st-rise concrete placement in the support installation state of the protrusion part. 同じく、せり出し部の支保工設置状態で2階立ち上がりコンクリート打設時であって、地震発生時を示した図である。Similarly, it is the figure which showed the time of an earthquake occurrence at the time of the second-floor standing concrete placement with the support installation state of the protruding part. 支保工撤去後で3階立ち上がりコンクリート打設時を示した図である。It is the figure which showed the time of the 3rd floor rise concrete placement after the support construction removal.

以下、図を参照して本発明を実施するための形態を詳細に説明する。
(実施形態)
図1は本発明を適用した免震建築物10のせり出し部20の施工の一実施形態の構成としてせり出し部20の支保工30の設置状態で1階立ち上がりコンクリートの打設時を示すもので、1は杭、2は基礎、3は床下の支保工、4は各階の型枠、5は各階の支保工、11は1階床梁、40は免震装置、50は滑り支承である。
DESCRIPTION OF EMBODIMENTS Hereinafter, embodiments for carrying out the present invention will be described in detail with reference to the drawings.
(Embodiment)
FIG. 1 shows the time of placing the first floor standing concrete in the installed state of the support 30 of the projecting portion 20 as a configuration of an embodiment of the construction of the projecting portion 20 of the base-isolated building 10 to which the present invention is applied. 1 is a pile, 2 is a foundation, 3 is a support work under the floor, 4 is a formwork for each floor, 5 is a support work for each floor, 11 is a first floor beam, 40 is a seismic isolation device, and 50 is a sliding bearing.

図示のように、杭1の上に構築された基礎2の上には、支柱による支保工3及び免震装置40を設置して免震建築物10の1階床梁11が支持されて、その1階床梁11の上には、1階立ち上がり部及び2階床部の型枠4が支柱による支保工5で支持してセットされている。
ここで、免震建築物10は、2階からのせり出し部20を備え、そのせり出し部20の型枠4を支持する支保工30及び滑り支承50が設置されている。
As shown in the figure, on the foundation 2 constructed on the pile 1, the support beam 3 and the seismic isolation device 40 are installed by the support column, and the first floor beam 11 of the seismic isolation building 10 is supported. On the first-floor floor beam 11, the first-floor rising part and the second-floor floor formwork 4 are supported and set by a support 5 by a support column.
Here, the seismic isolation building 10 includes a protruding portion 20 from the second floor, and a supporting work 30 and a sliding bearing 50 that support the mold 4 of the protruding portion 20 are installed.

せり出し部20の支保工30は、図示例では、基礎2の上でせり出し部20の先端位置に設置する下部主柱31と、1階床梁11の端部上に一端部を載せる梁材32と、その梁材32の先端部上に設置してせり出し部20の先端位置の型枠4を支持する上部主柱33と、梁材32の上に設置して型枠4を支持する支柱34とから構成されている。   In the illustrated example, the support 30 of the protruding portion 20 includes a lower main pillar 31 installed at the tip position of the protruding portion 20 on the foundation 2 and a beam member 32 on which one end is placed on the end of the first floor beam 11. An upper main column 33 that is installed on the tip of the beam member 32 and supports the mold 4 at the tip of the protruding portion 20, and a column 34 that is installed on the beam 32 and supports the mold 4 It consists of and.

すなわち、下部主柱31の直上に上部主柱33が位置している。
そして、基礎4の上面と下部主柱31の下端との間に滑り支承50を挟み込む。
さらに、下部主柱31の上端と梁材32と上部主柱33の下端とを剛接合する。
また、1階床梁11の端部上に梁材32の一端部をボルト固定し、上部主柱31の上端に型枠4をボルト固定する。
That is, the upper main pillar 33 is located immediately above the lower main pillar 31.
Then, the sliding bearing 50 is sandwiched between the upper surface of the foundation 4 and the lower end of the lower main column 31.
Further, the upper end of the lower main column 31, the beam member 32, and the lower end of the upper main column 33 are rigidly joined.
In addition, one end of the beam member 32 is bolted onto the end of the first floor beam 11, and the mold 4 is bolted to the upper end of the upper main column 31.

以上において、免震装置40としては、例えば硬質ゴム製のものを用いる。
また、滑り支承50としては、例えば4フッ化エチレン樹脂(PTFE:ポリテトラフルオロエチレン)による滑り板とステンレス板を重ねた構成のものを用いる。そして、その滑り板とステンレス板の一方を基礎2の上面に固定して他方を支保工30の下部主柱31の下端面に固定する。
In the above, as the seismic isolation device 40, the thing made from a hard rubber is used, for example.
As the sliding bearing 50, for example, a sliding plate made of tetrafluoroethylene resin (PTFE: polytetrafluoroethylene) and a stainless steel plate are used. Then, one of the sliding plate and the stainless plate is fixed to the upper surface of the foundation 2 and the other is fixed to the lower end surface of the lower main column 31 of the support work 30.

なお、支保工3、支保工30の設置に当たっては、図示しないジャッキを用いるが、そのジャッキの位置は基礎2上または支保工3、支保工30の中間部や上端など何処でもよい。   Note that a jack (not shown) is used to install the support 3 and the support 30, but the position of the jack may be anywhere on the foundation 2 or the intermediate part or the upper end of the support 3 or the support 30.

図2はせり出し部20の支保工30の設置状態で2階立ち上がりコンクリートの打設時であって、地震発生時を示したもので、12は2階床梁、22はせり出し部20の2階床梁である。   FIG. 2 shows the state when the concrete is set up on the second floor with the support 30 of the protruding portion 20 installed, and shows the time of the occurrence of the earthquake. 12 is the second floor beam, 22 is the second floor of the protruding portion 20. It is a floor beam.

すなわち、1階立ち上がりコンクリートを打設して養生後、1階床梁11の支保工3と、1階立ち上がり部の型枠4を撤去して、図示のように、2階床梁12、及びせり出し部20の2階床梁22の上に、2階立ち上がり部及び3階床部の型枠4が支柱による支保工5で支持してセットされる。   That is, after placing and curing the first floor rising concrete, the support 3 of the first floor beam 11 and the formwork 4 of the first floor rising portion are removed, and the second floor beam 12 and On the second floor floor beam 22 of the protruding portion 20, the formwork 4 of the second floor rising portion and the third floor portion is supported and set by a support 5 using a support column.

図示例においては、地震発生時につき、免震建築物10の下の免震装置40が水平方向に弾性変形すると同時に、せり出し部20の支保工30が滑り支承50の滑りにより免震建築物10と一体に同期して水平往復移動する。
従って、免震建築物10の構築中での地震発生時において、有効な免震機能を具備することができる。
In the illustrated example, the seismic isolation device 40 under the seismic isolation building 10 is elastically deformed in the horizontal direction at the time of the occurrence of the earthquake, and at the same time, the support 30 of the protruding portion 20 is caused by the sliding support 50 to slide. Synchronously with the horizontal reciprocating movement.
Therefore, an effective seismic isolation function can be provided when an earthquake occurs during the construction of the seismic isolation building 10.

図3はせり出し部20の支保工30の撤去後で3階立ち上がりコンクリートの打設時を示したもので、13は3階床梁、23はせり出し部20の3階床梁である。   FIG. 3 shows a case where the third-floor standing concrete is placed after the support 30 of the protruding portion 20 is removed. 13 is a third-floor floor beam, and 23 is a third-floor floor beam of the protruding portion 20.

すなわち、2階立ち上がりコンクリートを打設して養生後、2階床梁11の支保工5と、2階立ち上がり部の型枠4と、せり出し部20の支保工30及び滑り支承50を撤去して、図示のように、3階床梁13、及びせり出し部20の3階床梁23の上に、3階立ち上がり部及び4階床部の型枠4が支柱による支保工5で支持してセットされる。   That is, after placing and curing the second-floor rising concrete, the support 5 of the second-floor floor 11, the mold 4 of the second-floor rising portion, the support 30 and the sliding bearing 50 of the protruding portion 20 are removed. As shown in the figure, on the 3rd floor floor beam 13 of the 3rd floor floor beam 13 and the projecting portion 20, the formwork 4 of the 3rd floor rising portion and the 4th floor floor portion is supported and set by a support 5 using a support column. Is done.

そして、3階立ち上がりコンクリートを打設する。
なお、図示しないが、4階以上も同様にして構築される。
And the third floor rises concrete.
Although not shown, the fourth floor and above are constructed in the same manner.

以上、実施形態の免震建築物10のせり出し部20の施工によれば、基礎2上に設置した滑り支承50の上に、せり出し部20の床梁22を支持する支保工30を仮設した状態で、床梁22の上に2階立ち上がりコンクリートを打設してせり出し部20を施工することにより、免震建築物10のせり出し部20を必要最小限の仮設工事で施工できてコストも抑えることができる。   As described above, according to the construction of the protruding portion 20 of the seismic isolation building 10 according to the embodiment, the support 30 that supports the floor beam 22 of the protruding portion 20 is temporarily installed on the sliding bearing 50 installed on the foundation 2. Thus, by setting up the second floor standing concrete on the floor beam 22 and constructing the projecting part 20, the projecting part 20 of the seismic isolation building 10 can be constructed with the minimum necessary temporary work and the cost can be reduced. Can do.

(変形例)
以上の実施形態の他、建築物、免震装置、支保工、及び滑り支承の構成、さらには具体的な細部構造等について適宜に変更可能であることは勿論である。
例えば、SRC(鉄骨鉄筋コンクリート)造やCFT(コンクリート充填鋼管)造やS(鉄骨)造の建築物であってもよく、また、実施形態の2階以上のせり出し部に限らず、1階のせり出し部であってもよい。
(Modification)
In addition to the embodiments described above, it is needless to say that the structure of the building, the seismic isolation device, the support work, and the sliding bearing, and the specific detailed structure can be appropriately changed.
For example, an SRC (steel reinforced concrete) structure, a CFT (concrete filled steel pipe) structure, or an S (steel frame) structure may be used. Part.

1 杭
2 基礎
3 床下の支保工
4 各階の型枠
5 各階の支保工
10 免震建築物
11 1階床梁
12 2階床梁
13 3階床梁
20 せり出し部
22 2階床梁
23 3階床梁
30 せり出し部の支保工
31 下部主柱
32 梁材
33 上部主柱
34 支柱
40 免震装置
50 滑り支承
DESCRIPTION OF SYMBOLS 1 Pile 2 Foundation 3 Underfloor support 4 Form on each floor 5 Support on each floor 10 Base-isolated building 11 First-floor floor beam 12 Second-floor floor beam 13 Third-floor floor beam 20 Projection part 22 Second-floor floor beam 23 Third floor Floor beam 30 Supporting part of protruding part 31 Lower main pillar 32 Beam material 33 Upper main pillar 34 Post 40 Seismic isolation device 50 Sliding bearing

Claims (4)

基礎上に免震装置を設置して構築される免震建築物のせり出し部の施工方法であって、
前記基礎上に、前記せり出し部の床梁の先端部を支持する主柱と、前記せり出し部の下の階の床梁の端部上に一端部を載せて前記主柱に先端部が剛接合された梁材と、その梁材の上に設置して前記せり出し部の床梁の中間部を支持する支柱と、を備える支保工を仮設するとともに、その支保工に地震動を吸収可能な滑り支承を設置した状態で、前記せり出し部の床梁から上の前記せり出し部を施工することを特徴とする免震建築物のせり出し部の施工方法。
It is a construction method for the projecting part of a seismic isolation building constructed by installing a seismic isolation device on the foundation,
On the foundation, a main column that supports the tip of the floor beam of the protruding portion, and one end portion is placed on the end of the floor beam on the floor below the protruding portion, and the tip is rigidly joined to the main column. a beam member that is, a post for supporting an intermediate portion of the floor beams of the protruding portion is disposed on the beam members, as well as temporary the支保Engineering comprise absorbable slip bearing ground motion to the shoring A construction method for a projecting part of a base-isolated building, wherein the projecting part is constructed from the floor beam of the projecting part in a state where the base is installed.
前記基礎上に設置した前記滑り支承の上に前記支保工の前記主柱を仮設することを特徴とする請求項1に記載の免震建築物のせり出し部の施工方法。 The construction method of the projecting part of the seismic isolation building according to claim 1, wherein the main pillar of the support work is temporarily installed on the sliding bearing installed on the foundation. 前記せり出し部の床梁の上にコンクリートを打設したり鉄骨を建て込んで前記せり出し部を施工することを特徴とする請求項1または2に記載の免震建築物のせり出し部の施工方法。 The construction method of the projecting part of the seismic isolation building according to claim 1, wherein concrete is placed on the floor beam of the projecting part or the steel part is built to construct the projecting part. 前記せり出し部の少なくとも一階層を施工した後、前記支保工及び滑り支承を撤去することを特徴とする請求項1から3のいずれか一項に記載の免震建築物のせり出し部の施工方法。   The construction method of the projecting part of the seismic isolation building according to any one of claims 1 to 3, wherein after the construction of at least one layer of the projecting part, the support and the sliding bearing are removed.
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