JP3909392B2 - Column base support structure and its construction method - Google Patents

Column base support structure and its construction method Download PDF

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Publication number
JP3909392B2
JP3909392B2 JP2002027699A JP2002027699A JP3909392B2 JP 3909392 B2 JP3909392 B2 JP 3909392B2 JP 2002027699 A JP2002027699 A JP 2002027699A JP 2002027699 A JP2002027699 A JP 2002027699A JP 3909392 B2 JP3909392 B2 JP 3909392B2
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Japan
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base plate
column base
building
ring
receiving
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JP2003227173A (en
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徹 竹内
一弁 鈴木
隆幸 瓜生
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Nippon Steel Corp
Nippon Steel Engineering Co Ltd
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Nippon Steel Corp
Nippon Steel Engineering Co Ltd
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【0001】
【発明の属する技術分野】
本発明は、建造物の柱脚を基礎上に支持するための柱脚支持構造およびその施工方法に関する。
【0002】
【従来の技術】
従来より、基礎上に鉄骨柱等の柱脚を連結して支持するための柱脚支持構造が種々提案されている。
例えば、特開平10−299081号公報には、アンカーボルトのナットとベースプレートとの間にバネを取り付けた柱脚支持構造が開示されている。
また、特開2001−73390号公報には、基礎杭の頭部に設けられる基礎側球面部材と、この基礎側球面部材の球面に沿う球面を有した上部構造物側球面部材とを備え、両球面部材の球面に対して共通する軸線に沿ってストッパピンが貫通された柱脚支持構造が開示されている。
【0003】
【発明が解決しようとする課題】
しかしながら、特開平10−299081号公報に開示された柱脚支持構造では、地震が発生した際に、アンカーボルトが短い範囲で大きなせん断力と引張力を受けるため破断し易い。また、アンカーボルトを降伏させて塑性変形させるため、完全なピン構造とはならず、半剛性の構造となっている。このため、設計時にモデル化することが困難である。さらに、アンカーボルトがずれていた場合には、これを修正することが困難であり、施工に支障を来すおそれがある。
また、特開2001−73390号公報に開示された柱脚支持構造では、長期にわたって、柱脚支持構造の中央部に反力が集中するため、上部構造物側球面部材の面積および厚みを大きくしなければならず、コストが増加してしまう。また、構造物のせん断力が、アンカーボルト(鉄筋)のせん断力として、アンカーボルトから基礎へ伝達されるため、アンカーボルトを太くしなければならず不経済となる。さらに、アンカーボルトがずれていた場合には、これを修正することが困難であり、施工に支障を来すおそれがある。また、引き抜き時の引張力は、ストッパピンから基礎側球面部材を介してアンカーボルトへ伝達される構造となっているため、部材点数が多くなり、構造が複雑となるばかりでなくコストが増加してしまう。さらに、ストッパピンが破断するまでは、両球面部材が固定された剛結合となっているため、柱脚支持構造として十分な機能を発揮することができない。また、ストッパピンが破断した後、ストッパピンを取り替える場合、建築物の柱脚部を露出させ、建築物を持ち上げ取り替えなくてはならず、非常に大きなお金がかかる。
本発明は、上述した事情に鑑み提案されたもので、せん断力を確実に基礎へ伝達することができるとともに、鉛直および水平方向の変形に対する追従性に優れ、さらに構造が単純で低コスト化を図ることができる建造物の柱脚支持構造およびその施工方法を提供することを目的とする。
【0004】
【課題を解決するための手段】
本発明に係る構造物の柱脚支持構造およびその施工方法は、上述した目的を達成するため、以下の特徴点を備えている。
すなわち、本発明に係る構造物の柱脚支持構造は、建造物の柱脚を基礎上に支持するための柱脚支持構造であって、
前記柱脚の下端部に取り付けるためのベースプレートと、前記基礎上に固着して前記ベースプレートを下方から支持するための受け材とを備え、前記ベースプレートには、その下面から下方に向かって突出したリング状突起を設けるとともに、該リング状突起の先端部を、下方に向かって突出した球面状とし、前記受け材には、その上面に、前記リング状突起を摺動可能に支持するための球面部を上方に向かって凹状となるように設ける共に、前記リング状突起の先端部の内周側に位置し、前記リング状突起の左右方向の摺動を規制して、せん断力を受け止めるためのせん断力受け突起を設け、前記ベースプレートと前記基礎とを連結部材により連結したことを特徴とするものである。
【0005】
また、前記建造物の柱脚支持構造において、前記基礎中には、前記受け材の左右方向の動きを規制して、せん断力を受け止めるためのせん断力用定着材を設けることが可能である。
また、前記建造物の柱脚支持構造において、前記ベースプレートには、その外周部の少なくとも3カ所に、前記ベースプレートの傾きを調整するための傾き調整部材を、前記ベースプレートから切り離し可能に設けることが可能である。
更に、球面部の取り付け位置をベースプレートに、リング状突起の取り付け位置を受け材に、前記とは逆にそれぞれ設けることが可能である。
【0006】
本発明に係る建造物の柱脚支持構造の施工方法は、基礎を設置する地表部に筒状の型枠を設置して、該型枠の周囲に基礎コンクリートを打設する工程と、前記型枠の内部にせん断力を受け止めるためのせん断力用定着材を位置させ、前記型枠と前記せん断力用定着材との間に充填材を充填して前記せん断力用定着材を基礎中に固定する工程と、前記基礎の上部に、前記せん断力用定着材と接触するように受け材を固着する工程と、前記受け材の上部に、建造物の柱脚の下端部に取り付けるためのベースプレートを載置する工程と、前記基礎中に埋設した連結部材の上端部と前記ベースプレートとを連結する工程とからなり、前記ベースプレートには、その下面から下方に向かって突出したリング状突起を設けるとともに、該リング状突起の先端部を、下方に向かって突出した球面状とし、前記受け材には、その上面に、前記リング状突起を摺動可能に支持するための球面部を下方に向かって凹状となるように設けたことを特徴とするものである。
【0007】
また、前記建造物の柱脚支持構造の施工方法において、前記ベースプレートには、その外周部の少なくとも3カ所に、前記ベースプレートの傾きを調整するための傾き調整部材を、前記ベースプレートから切り離し可能に設け、前記ベースプレート上に前記建造物の柱脚を取り付ける際に、前記傾き調整部材により前記ベースプレートおよび前記柱脚の傾きを調整する工程と、前記傾き調整部材を前記ベースプレートから切り離して、前記受け材と前記ベースプレートとの摺動を可能とする工程とを含ませることが可能である。
なお、前記工程においても、前記リング状突起と、これを摺動可能に支持するための球面部の取り付け位置をベースプレート、受け材をそれぞれ逆に設ける構成を使用しても良い。
【0008】
【発明の実施の形態】
以下、図面に示す具体的な実施例に基づいて、本発明に係る建造物の柱脚支持構造およびその施工方法の実施形態を説明する。
図1〜3は、本発明の実施形態に係る建造物の柱脚支持構造を示すもので、図1は、柱脚支持構造の縦断面図、図2は、図1におけるA−A’切断面図、図3は、図1におけるB−B’切断面図である。
<全体の概略構成>
本発明の実施形態に係る建造物の柱脚支持構造は、図1〜3に示すように、柱脚1の下端部に取り付けるためのベースプレート2と、基礎コンクリート3上に固着してベースプレート2を下方から支持するための受け材4とを備えている。
【0009】
<ベースプレート>
ベースプレート2は、図1、2に示すように、略正方形状の板状の部材からなり、その下面には、下方に向かって突出したリング状突起5が設けられている。このリング状突起5の先端部は、下方に向かって突出した球面状となっている。また、ベースプレート2のほぼ中央部には、アンカーボルト6の上端部を挿通するためのボルト挿通孔(図示せず)が1箇所でも良い=1箇所以上設けられている。また、ベースプレート2の各外周辺のほぼ中程には、後に詳述する傾き調整用ボルト7を取り付けるためのファスナー部材8がベースプレート2から切り離し可能に接続されている。さらに、ベースプレート2の上面には、建造物の柱脚1を支持するための角柱状のリブ9が上方に向かって突出して設けられている。なお、ベースプレート2の形状は略正方形状に限られず、円盤状等のように、他の形状であってもよい。
【0010】
<受け材>
受け材4は、図1、3に示すように、ドーナッツ状の板状の部材からなり、その上面には、リング状突起5を摺動可能に支持するための球面部10が上方に向かって凹状となるように設けられている。また、受け材4の上面には、リング状突起5の先端部の内周側に位置し、リング状突起5の左右方向の摺動を規制して、せん断力を受け止めるためのせん断力受け突起11が設けられている。
なお、受け材4の形状はドーナッツ状に限られず、外周形状および内周形状が略正方形等のように、他の形状であってもよい。
また、前記実施の形態では、リング状突起5をベースプレートに、またリング状突起5を摺動可能に支持するための球面部10を受け材4に、それぞれ設ける例について述べているが、これらの位置関係を逆とした場合、即ち、ベースプレートに球面部、受け材にリング状突起をそれぞれ設ける構成としても良いことは言うまでもない。
【0011】
<せん断力用定着材>
基礎コンクリート3中には、受け材4の内周部に接触することにより、受け材4の左右方向の動きを規制して、せん断力を受け止めるためのせん断力用定着材12が設置されている。このせん断力用定着材12は、円筒状の鋼材からなり、基礎コンクリート3を打設する際に基礎コンクリート3中に設置される。
なお、せん断力用定着材12の形状は円筒状に限られず、受け材4の中心部に設けられた空部の外周形状に合致していれば、角筒状等のように、他の形状であってもよい。
【0012】
<アンカーボルト>
アンカーボルト6は、基礎コンクリート3中に埋設されたアンカープレート13とベースプレート2とを連結するための連結部材であり、その下端部および上端部に雌ネジ部(図示せず)を形成してある。
アンカーボルト6の下端部は、基礎コンクリート3中に埋設されたアンカープレート13にナットを用いて接続される。一方、アンカーボルト6の上端部は、ベースプレート2にナットを用いて接続される。
ここで、アンカーボルト6の非拘束長を長くすることにより、鉛直、水平方向の追従性が増し、アンカーボルト6の破断を防止することができる。
また、アンカーボルト6の引張−曲げ応力と、圧縮−曲げ応力との合計が降伏応力を超えないように設計することにより、アンカーボルト6を弾性構造としたままピン構造の柱脚支持構造を実現することができ、地震等により応力が作用した場合であっても、柱脚部を交換する必要がない。
なお、アンカーボルト6の太さ、長さ、材質は、支持すべき建造物の構造、重量、予想される圧縮応力、引き抜き応力等に応じて、適宜変更して実施することができる。
【0013】
<傾き調整用ボルト>
傾き調整用ボルト7は、ベースプレート2を設置する際に、ベースプレート2の傾き、すなわち支持すべき柱脚1の傾きを調整するための傾き調整部材であり、ベースプレート2に切り離し可能に接続された4個のファスナー部材8にそれぞれネジ止めされている。また、傾き調整用ボルト7には、ファスナー部材8の下面に位置するようにアジャスタナット14が取り付けられている。
なお、傾き調整用ボルト7の数は4個に限られず、ベースプレート2の外周部を略等分に分割する位置に3個以上設けられていればよい。
【0014】
<施工方法>
次に、図6に基づいて、本実施形態に係る柱脚支持構造の施工方法を説明する。
図6は、柱脚支持構造の施工方法を順をおって説明した説明図である。
本実施形態に係る柱脚支持構造を施工するには、図6(a)に示すように、地表部に筒状の型枠を設置して、型枠15の周囲に基礎コンクリート3を打設する。この際、アンカープレート(図示せず)に固定されたアンカーボルト6も基礎コンクリート3中に埋設される。
続いて、図6(b)に示すように、型枠15の内部にせん断力用定着材12を位置させ、型枠15とせん断力用定着材12との間に充填材16を充填して、せん断力用定着材12を基礎コンクリート3中に固定する。
続いて、図6(c)に示すように、基礎コンクリート3の上部に、せん断力用定着材12と接触するように受け材4を固着する。
その後の工程は図示していないが、受け材4の上部に、建造物の柱脚1の下端部に取り付けるためのベースプレート2を載置し、ベースプレート2にアンカーボルト6の上端部を挿通して、ナットを用いてベースプレート2とアンカーボルト6とを連結する。
また、ベースプレート2上に建造物の柱脚1を取り付ける際に、ファスナー部材8から突出している傾き調整用ボルト7の長さを調整するとともに、アジャスタナット14を締め付けて、ベースプレート2および柱脚1の傾きを調整する。そして、ファスナー部材8をベースプレート2から切り離して、受け材4とベースプレート2との摺動を可能とする。
【0015】
<圧縮および曲げのメカニズム>
次に、建造物に圧縮応力および曲げが作用した場合の柱脚支持構造の動作を説明する。
図4は、建造物に圧縮応力および曲げが作用した場合の柱脚支持構造の動作説明図である。なお、図4においては、太い矢印で示す方向に圧縮応力および曲げが作用するものとする。
建造物に対して圧縮応力および曲げが作用すると、図4に示すように、ベースプレート2と受け材4との接触曲面において、水平方向にa1の応力が作用し、垂直方向にb1の応力が作用する。したがって、ベースプレート2と受け材4との接触曲面には、a1およびb1の合力として、右斜め下方向に向かってc1の応力が作用することとなる。これによって、建造物からの曲げを接触曲面においてせん断力と圧縮力に分解することができ、曲げを曲面で負担できる。
即ち、リング状突起5→受材4→せん断力用定着材12へ、せん断力が伝達し、せん断力を負担し、更に大きなせん断力が生じベースプレートが水平方向に移動した場合、せん断受け突起11とリング状突起5が接触し、せん断力を負担する。
【0016】
<引き抜きおよび曲げのメカニズム>
次に、建造物に引き抜き応力および曲げが作用した場合の柱脚支持構造の動作を説明する。
図5は、建造物に引き抜き応力および曲げが作用した場合の柱脚支持構造の動作説明図である。なお、図5においては、太い矢印で示す方向に引き抜き応力および曲げが作用するものとする。
建造物に対して引き抜き応力およびせん断応力が作用すると、図5に示すように、ベースプレート2と受け材4との接触曲面において、水平方向にa2の応力が作用し、垂直方向にb2の応力が作用する。したがって、ベースプレート2と受け材4との接触曲面には、a2およびb2の合力として、右斜め下方向に向かってc2の応力が作用することとなる。これによって、曲げが作用した場合、接触曲面において、せん断力及び圧縮力に分解でき、曲げを曲面で負担できる。
この状態では、アンカーボルト6が伸張することにより、引き抜き応力を負担する。また、リング状突起5→受材4→せん断力用定着材12へせん断力が伝達し、せん断応力を負担し、更に大きなせん断力が作用し、ベースプレートが水平に移動した場合、せん断受け突起11とリング状突起5が接触し、せん断力を負担する。
【0017】
【発明の効果】
本発明に係る建造物の柱脚支持構造およびその施工方法は、上述した構成を備えているため、以下に説明する効果を奏することができる。
すなわち、本発明に係る建造物の柱脚支持構造は、ベースプレートと受け材とにそれぞれリング状突起5と受材4を球面に接触することによって、せん断力および圧縮力を負担させることができる。両者は回転摺動することにより、ピン構造となり、設計時において容易にモデル化することができる。
また、ベースプレートと受け材との摺動部分をリング状とすることにより、応力集中することなく素直に受け材へ力を伝達でき、そしてかかる形状より、柱脚等の部材断面に近似させることができ、ベースプレートの大きさを効率的に設計することによりコストを低減することができる。
また、基礎とベースプレートとを連結部材により直接連結することにより、部材数が少なくなって、コストの低減を図ることができる。
また、リング状突起の左右方向の摺動を規制して、せん断力を受け止めるためのせん断力受け突起を設けることにより、建造物からのせん断力を連結部材に負担させずに基礎へ伝達することができるため、連結部材の破断を防止することができる。
また、基礎中に、受け材の左右方向の動きを規制して、せん断力を受け止めるためのせん断力用定着材を設けることにより、連結部材は引き抜き時の引張力のみを負担すればよく、連結部材の負担を軽減することができる。
また、施工時において、せん断力用定着材により位置出しを行うことができるとともに、連結部材の非定着長が長くなって修正が容易となる。
また、ベースプレートの傾きを調整するための傾き調整部材を設けることにより、施工時の修正が容易となって施工に支障を来すおそれがない。そして、地震時にアンカーボルトは破断しないので、取り替えることがない。
【図面の簡単な説明】
【図1】本発明の実施形態に係る柱脚支持構造の縦断面図。
【図2】図1におけるA−A’切断面図。
【図3】図1におけるB−B’切断面図。
【図4】建造物に圧縮応力およびせん断応力が作用した場合の柱脚支持構造の動作説明図。
【図5】建造物に引き抜き応力およびせん断応力が作用した場合の柱脚支持構造の動作説明図。
【図6】柱脚支持構造の施工方法を順をおって説明した説明図。
【符号の説明】
1 柱脚
2 ベースプレート
3 基礎コンクリート
4 受け材
5 リング状突起
6 アンカーボルト
7 傾き調整用ボルト
8 ファスナー部材
9 リブ
10 球面部
11 せん断力受け突起
12 せん断力用定着材
13 アンカープレート
14 アジャスタナット
15 型枠
16 充填材
[0001]
BACKGROUND OF THE INVENTION
The present invention relates to a column base support structure for supporting a column base of a building on a foundation and a construction method thereof.
[0002]
[Prior art]
Conventionally, various column base support structures for connecting and supporting a column base such as a steel column on a foundation have been proposed.
For example, Japanese Patent Laid-Open No. 10-299081 discloses a column base support structure in which a spring is attached between an anchor bolt nut and a base plate.
Japanese Patent Laid-Open No. 2001-73390 includes a foundation-side spherical member provided on the head of a foundation pile, and an upper structure-side spherical member having a spherical surface along the spherical surface of the foundation-side spherical member. A column base support structure in which a stopper pin is penetrated along an axis common to the spherical surface of the spherical member is disclosed.
[0003]
[Problems to be solved by the invention]
However, in the column base support structure disclosed in Japanese Patent Application Laid-Open No. 10-299081, when an earthquake occurs, the anchor bolt receives a large shearing force and tensile force in a short range, and thus easily breaks. In addition, since the anchor bolt is yielded and plastically deformed, it does not have a complete pin structure but a semi-rigid structure. For this reason, it is difficult to model at the time of design. Furthermore, when the anchor bolt is displaced, it is difficult to correct the anchor bolt, which may hinder the construction.
In addition, in the column base support structure disclosed in Japanese Patent Application Laid-Open No. 2001-73390, the reaction force concentrates on the center part of the column base support structure over a long period of time, so the area and thickness of the upper structure side spherical member are increased. It must be done and the cost will increase. Further, since the shearing force of the structure is transmitted from the anchor bolt to the foundation as the shearing force of the anchor bolt (rebar), the anchor bolt must be thickened, which is uneconomical. Furthermore, when the anchor bolt is displaced, it is difficult to correct the anchor bolt, which may hinder the construction. In addition, the pulling force during pulling is transmitted from the stopper pin to the anchor bolt via the base spherical member, which increases the number of members, complicates the structure, and increases the cost. End up. Furthermore, until the stopper pin breaks, both spherical members are fixed and rigidly connected, so that a sufficient function as the column base support structure cannot be exhibited. Further, when the stopper pin is replaced after the stopper pin is broken, it is necessary to expose the column base portion of the building and lift and replace the building, which is very expensive.
The present invention has been proposed in view of the above-described circumstances, and can reliably transmit shearing force to the foundation, has excellent followability to vertical and horizontal deformation, and has a simple structure and low cost. An object of the present invention is to provide a column base support structure for a building that can be planned and a construction method thereof.
[0004]
[Means for Solving the Problems]
The column base support structure for a structure and the construction method thereof according to the present invention have the following features in order to achieve the above-described object.
That is, the column base support structure of the structure according to the present invention is a column base support structure for supporting the column base of the building on the foundation,
A base plate that is attached to a lower end portion of the column base; and a receiving member that is fixed on the foundation and supports the base plate from below. The base plate includes a ring that protrudes downward from a lower surface thereof. A ring-shaped protrusion, and a tip of the ring-shaped protrusion is formed in a spherical shape protruding downward, and the receiving member has a spherical surface portion on which the ring-shaped protrusion is slidably supported. together Ru provided so as to be concave upwardly, located on the inner peripheral side of the distal end portion of the ring-shaped projection, thereby restricting the sliding of the lateral direction of the ring-shaped protrusion, for receiving the shear force Shear force receiving projections are provided, and the base plate and the foundation are connected by a connecting member.
[0005]
Further, in the column base support structure of the building, it is possible to provide a fixing member for shearing force in the foundation for restricting movement of the receiving member in the left-right direction and receiving shearing force.
Further, in the column base support structure of the building, the base plate may be provided with an inclination adjusting member for adjusting the inclination of the base plate in at least three positions on the outer periphery thereof so as to be detachable from the base plate. It is.
Furthermore, it is possible to provide the spherical plate mounting position on the base plate and the ring-shaped projection mounting position on the receiving material in the opposite manner.
[0006]
The construction method of the column base support structure for a building according to the present invention includes a step of installing a cylindrical formwork on the surface of the foundation where the foundation is installed, and placing foundation concrete around the formwork, and the mold A shearing force fixing material for receiving shearing force is positioned inside the frame, and a filler is filled between the mold and the shearing force fixing material to fix the shearing force fixing material in the foundation. A step of fixing a receiving material to the upper portion of the foundation so as to come into contact with the fixing member for shearing force; and a base plate for attaching to a lower end portion of a column base of a building on the upper portion of the receiving material. And a step of connecting an upper end portion of a connecting member embedded in the foundation and the base plate, and the base plate is provided with a ring-shaped protrusion protruding downward from a lower surface thereof, The tip of the ring-shaped protrusion The portion is formed in a spherical shape protruding downward, and the receiving member is provided with a spherical portion on the upper surface thereof for slidably supporting the ring-shaped protrusion so as to be concave downward. It is characterized by this.
[0007]
Further, in the construction method of the column base support structure of the building, the base plate is provided with inclination adjusting members for adjusting the inclination of the base plate in at least three places on the outer periphery thereof so as to be separated from the base plate. A step of adjusting the inclination of the base plate and the column base by the inclination adjusting member when attaching the column base of the building on the base plate; and separating the inclination adjusting member from the base plate; A step of allowing sliding with the base plate.
In the step, a configuration may be used in which the base plate and the receiving material are reversely provided at the attachment positions of the ring-shaped protrusion and the spherical portion for slidably supporting the protrusion.
[0008]
DETAILED DESCRIPTION OF THE INVENTION
Hereinafter, based on the concrete Example shown in drawing, embodiment of the column base support structure of the building which concerns on this invention, and its construction method is described.
1-3 show the column base support structure of the building which concerns on embodiment of this invention, FIG. 1 is a longitudinal cross-sectional view of a column base support structure, FIG. 2 is AA 'cutting | disconnection in FIG. FIG. 3 is a sectional view taken along the line BB ′ in FIG.
<Overall schematic configuration>
As shown in FIGS. 1 to 3, the column base support structure for a building according to the embodiment of the present invention is fixed to the base plate 2 for attaching to the lower end portion of the column base 1 and the base concrete 3. And a receiving member 4 for supporting from below.
[0009]
<Base plate>
As shown in FIGS. 1 and 2, the base plate 2 is formed of a substantially square plate-like member, and a ring-shaped protrusion 5 protruding downward is provided on the lower surface thereof. The tip of the ring-shaped protrusion 5 has a spherical shape protruding downward. Further, a bolt insertion hole (not shown) for inserting the upper end portion of the anchor bolt 6 may be provided at almost one central portion of the base plate 2 = 1 or more. Further, a fastener member 8 for attaching a tilt adjusting bolt 7 to be described in detail later is connected to the base plate 2 so that it can be separated from the base plate 2 in the middle of each outer periphery of the base plate 2. Furthermore, a prismatic rib 9 for supporting the column base 1 of the building is provided on the upper surface of the base plate 2 so as to protrude upward. The shape of the base plate 2 is not limited to a substantially square shape, and may be other shapes such as a disk shape.
[0010]
<Receiver>
As shown in FIGS. 1 and 3, the receiving member 4 is formed of a donut-like plate-like member, and on its upper surface, a spherical portion 10 for slidably supporting the ring-shaped protrusion 5 is directed upward. It is provided to be concave. Further, the upper surface of the receiving member 4 is located on the inner peripheral side of the tip end portion of the ring-shaped protrusion 5 and restricts the sliding of the ring-shaped protrusion 5 in the left-right direction to receive the shearing force. 11 is provided.
The shape of the receiving material 4 is not limited to a donut shape, and the outer peripheral shape and the inner peripheral shape may be other shapes such as a substantially square shape.
In the above embodiment, the ring-shaped protrusion 5 is provided on the base plate, and the spherical portion 10 for slidably supporting the ring-shaped protrusion 5 is provided on the receiving member 4. Needless to say, when the positional relationship is reversed, that is, the base plate may be provided with a spherical portion and the receiving member may be provided with a ring-shaped protrusion.
[0011]
<Fixing material for shear force>
In the basic concrete 3, a fixing member 12 for shearing force is installed to contact the inner periphery of the receiving member 4 to restrict the movement of the receiving member 4 in the left-right direction and to receive the shearing force. . The fixing member 12 for shearing force is made of a cylindrical steel material, and is installed in the foundation concrete 3 when the foundation concrete 3 is placed.
The shape of the fixing member 12 for shearing force is not limited to a cylindrical shape, and other shapes such as a rectangular tube shape can be used as long as it matches the outer peripheral shape of the hollow portion provided at the center of the receiving material 4. It may be.
[0012]
<Anchor bolt>
The anchor bolt 6 is a connecting member for connecting the anchor plate 13 embedded in the foundation concrete 3 and the base plate 2, and has a female screw portion (not shown) formed at the lower end and the upper end thereof. .
The lower end portion of the anchor bolt 6 is connected to an anchor plate 13 embedded in the foundation concrete 3 using a nut. On the other hand, the upper end portion of the anchor bolt 6 is connected to the base plate 2 using a nut.
Here, by increasing the unconstrained length of the anchor bolt 6, the followability in the vertical and horizontal directions is increased, and the anchor bolt 6 can be prevented from breaking.
In addition, by designing the anchor bolt 6 so that the sum of the tensile-bending stress and the compressive-bending stress does not exceed the yield stress, a pin-base column base support structure is realized with the anchor bolt 6 remaining in an elastic structure. Even if stress is applied due to an earthquake or the like, there is no need to replace the column base.
The thickness, length, and material of the anchor bolt 6 can be appropriately changed according to the structure of the building to be supported, the weight, the expected compressive stress, the pulling stress, and the like.
[0013]
<Bolt for tilt adjustment>
The inclination adjusting bolt 7 is an inclination adjusting member for adjusting the inclination of the base plate 2, that is, the inclination of the column base 1 to be supported when the base plate 2 is installed, and is connected to the base plate 2 in a detachable manner. Each fastener member 8 is screwed. An adjuster nut 14 is attached to the tilt adjusting bolt 7 so as to be positioned on the lower surface of the fastener member 8.
Note that the number of the inclination adjusting bolts 7 is not limited to four, and three or more may be provided at positions where the outer peripheral portion of the base plate 2 is divided approximately equally.
[0014]
<Construction method>
Next, based on FIG. 6, the construction method of the column base support structure which concerns on this embodiment is demonstrated.
Drawing 6 is an explanatory view explaining the construction method of the column base support structure in order.
In order to construct the column base support structure according to this embodiment, as shown in FIG. 6A, a cylindrical formwork is installed on the ground surface, and the foundation concrete 3 is placed around the formwork 15. To do. At this time, anchor bolts 6 fixed to an anchor plate (not shown) are also embedded in the foundation concrete 3.
Subsequently, as shown in FIG. 6B, the shear force fixing material 12 is positioned inside the mold 15, and the filler 16 is filled between the mold 15 and the shear force fixing material 12. The fixing material 12 for shearing force is fixed in the basic concrete 3.
Subsequently, as shown in FIG. 6C, the receiving material 4 is fixed to the upper portion of the foundation concrete 3 so as to come into contact with the fixing material 12 for shearing force.
Although the subsequent steps are not shown, a base plate 2 for mounting on the lower end portion of the column base 1 of the building is placed on the upper portion of the receiving material 4, and the upper end portion of the anchor bolt 6 is inserted into the base plate 2. The base plate 2 and the anchor bolt 6 are connected using a nut.
Further, when the building column base 1 is mounted on the base plate 2, the length of the inclination adjusting bolt 7 protruding from the fastener member 8 is adjusted, and the adjuster nut 14 is tightened to fix the base plate 2 and the column base 1. Adjust the tilt. Then, the fastener member 8 is separated from the base plate 2 so that the receiving member 4 and the base plate 2 can slide.
[0015]
<Mechanism of compression and bending>
Next, the operation of the column base support structure when compressive stress and bending are applied to the building will be described.
FIG. 4 is an operation explanatory view of the column base support structure when compressive stress and bending act on the building. In FIG. 4, it is assumed that compressive stress and bending act in the direction indicated by the thick arrow.
When compressive stress and bending act on the building, as shown in FIG. 4, the stress of a 1 acts in the horizontal direction and the stress of b 1 in the vertical direction on the contact curved surface between the base plate 2 and the receiving material 4. Works. Therefore, the stress of c 1 acts on the contact curved surface of the base plate 2 and the receiving member 4 as a resultant force of a 1 and b 1 in the diagonally downward direction to the right. Thereby, the bending from the building can be decomposed into the shearing force and the compressive force on the contact curved surface, and the bending can be borne by the curved surface.
That is, when the shearing force is transmitted to the ring-shaped projection 5 → the receiving material 4 → the fixing member 12 for the shearing force and bears the shearing force, and a larger shearing force is generated and the base plate moves in the horizontal direction, the shearing receiving projection 11 And the ring-shaped protrusion 5 come into contact with each other and bear a shearing force.
[0016]
<Drawing and bending mechanism>
Next, the operation of the column base support structure when pulling stress and bending act on the building will be described.
FIG. 5 is an operation explanatory diagram of the column base support structure when the drawing stress and bending act on the building. In FIG. 5, it is assumed that drawing stress and bending act in the direction indicated by the thick arrow.
When pulling stress and shearing stress are applied to the building, as shown in FIG. 5, a 2 stress is applied in the horizontal direction and b 2 is applied in the vertical direction on the contact curved surface between the base plate 2 and the receiving material 4. Stress acts. Therefore, the stress of c 2 acts on the contact curved surface between the base plate 2 and the receiving member 4 as a resultant force of a 2 and b 2 in the diagonally downward direction to the right. Thereby, when bending acts, it can decompose | disassemble into a shear force and a compressive force in a contact curved surface, and can bear bending by a curved surface.
In this state, the anchor bolt 6 is extended to bear a pulling stress. Further, when the shearing force is transmitted to the ring-shaped projection 5 → the receiving material 4 → the fixing member 12 for shearing force, bears a shearing stress, and a larger shearing force acts and the base plate moves horizontally, the shearing receiving projection 11 And the ring-shaped protrusion 5 come into contact with each other and bear a shearing force.
[0017]
【The invention's effect】
Since the column base support structure of a building and the construction method thereof according to the present invention have the above-described configuration, the following effects can be achieved.
That is, the column base support structure for a building according to the present invention can bear a shearing force and a compressive force by bringing the ring-shaped protrusion 5 and the receiving member 4 into contact with the spherical surface on the base plate and the receiving member, respectively. Both of them rotate and slide to form a pin structure, which can be easily modeled at the time of design.
In addition, by making the sliding portion of the base plate and the receiving material into a ring shape, it is possible to transmit the force to the receiving material without concentration of stress, and to approximate the cross section of a member such as a column base from such a shape. In addition, the cost can be reduced by efficiently designing the size of the base plate.
In addition, by directly connecting the base and the base plate by the connecting member, the number of members can be reduced and the cost can be reduced.
Also, by controlling the sliding of the ring-shaped protrusions in the left-right direction and providing a shearing force-receiving protrusion to receive the shearing force, the shearing force from the building is transmitted to the foundation without burdening the connecting member. Therefore, the connecting member can be prevented from being broken.
In addition, by providing a fixing material for shearing force in the foundation that restricts the lateral movement of the receiving material and receives shearing force, the connecting member only has to bear the tensile force at the time of pulling out. The burden on the member can be reduced.
Further, at the time of construction, positioning can be performed with a fixing member for shearing force, and the non-fixing length of the connecting member becomes long, so that correction becomes easy.
In addition, by providing an inclination adjusting member for adjusting the inclination of the base plate, correction during construction is facilitated and there is no possibility of hindering construction. And since an anchor bolt does not fracture at the time of an earthquake, it is not replaced.
[Brief description of the drawings]
FIG. 1 is a longitudinal sectional view of a column base support structure according to an embodiment of the present invention.
FIG. 2 is a cross-sectional view taken along the line AA ′ in FIG.
3 is a sectional view taken along line BB ′ in FIG. 1. FIG.
FIG. 4 is an operation explanatory diagram of a column base support structure when compressive stress and shear stress are applied to a building.
FIG. 5 is an operation explanatory view of a column base support structure when a pulling stress and a shearing stress are applied to a building.
FIG. 6 is an explanatory view illustrating the construction method of the column base support structure in order.
[Explanation of symbols]
DESCRIPTION OF SYMBOLS 1 Column base 2 Base plate 3 Foundation concrete 4 Receiving material 5 Ring-shaped protrusion 6 Anchor bolt 7 Tilt adjusting bolt 8 Fastener member 9 Rib 10 Spherical surface part 11 Shear force receiving protrusion 12 Shear force fixing material 13 Anchor plate 14 Adjuster nut 15 Type Frame 16 Filler

Claims (6)

建造物の柱脚を基礎上に支持するための柱脚支持構造であって、
前記柱脚の下端部に取り付けるためのベースプレートと、
前記基礎上に固着して前記ベースプレートを下方から支持するための受け材とを備え、
前記ベースプレートには、その下面から下方に向かって突出したリング状突起を設けるとともに、該リング状突起の先端部を、下方に向かって突出した球面状とし、
前記受け材には、その上面に、前記リング状突起を摺動可能に支持するための球面部を上方に向かって凹状となるように設ける共に、前記リング状突起の先端部の内周側に位置し、前記リング状突起の左右方向の摺動を規制して、せん断力を受け止めるためのせん断力受け突起を設け、
前記ベースプレートと前記基礎とを連結部材により連結したことを特徴とする建造物の柱脚支持構造。
A column base support structure for supporting a column base of a building on a foundation,
A base plate for attaching to the lower end of the column base;
A receiving material fixed on the foundation and supporting the base plate from below;
The base plate is provided with a ring-shaped protrusion that protrudes downward from the lower surface thereof, and the tip of the ring-shaped protrusion has a spherical shape that protrudes downward,
Wherein the receiving member is provided at its upper surface, both Ru provided so as to be concave spherical portion for slidably supporting the ring-shaped projection upward, the inner circumferential side of the distal end portion of the ring-shaped projection Is provided with a shear force receiving projection for restricting the sliding of the ring-shaped projection in the left-right direction and receiving the shearing force,
A column base support structure for a building, wherein the base plate and the foundation are connected by a connecting member.
前記基礎中には、前記受け材の左右方向の動きを規制して、せん断力を受け止めるためのせん断力用定着材を設けたことを特徴とする請求項記載の建造物の柱脚支持構造。During the foundation, to regulate the lateral movement of the receiving member, the column base support structure of claim 1 building, wherein in that a shearing force for fixing material for receiving the shear force . 前記ベースプレートには、その外周部の少なくとも3カ所に、前記ベースプレートの傾きを調整するための傾き調整部材を、前記ベースプレートから切り離し可能に設けたことを特徴とする請求項1又は2のいずれか1項記載の建造物の柱脚支持構造。Said base plate, at least three locations of the outer periphery thereof, an inclination adjustment member for adjusting the tilt of the base plate, any of claims 1 or 2, characterized in that arranged to be disconnected from the base plate 1 Column base support structure of the building described in the item. 球面部をベースプレートの下面に設け、球面部を摺動可能に支持するためのリング状突起を受け材上面に設けたことを特徴とするから請求項1〜のうちのいずれか1項記載の建造物の柱脚支持構造。Provided the spherical portion on the lower surface of the base plate, because, characterized in that a spherical portion on the receiving member top surface a ring-like protrusion for slidably supporting according to any one of claims 1 to 3 Column base support structure of the building. 基礎を設置する地表部に筒状の型枠を設置して、該型枠の周囲に基礎コンクリートを打設する工程と、
前記型枠の内部にせん断力を受け止めるためのせん断力用定着材を位置させ、前記型枠と前記せん断力用定着材との間に充填材を充填して前記せん断力用定着材を基礎中に固定する工程と、
前記基礎の上部に、前記せん断力用定着材と接触するように受け材を固着する工程と、
前記受け材の上部に、建造物の柱脚の下端部に取り付けるためのベースプレートを載置する工程と、
前記基礎中に埋設した連結部材の上端部と前記ベースプレートとを連結する工程とからなり、
前記ベースプレートには、その下面から下方に向かって突出したリング状突起を設けるとともに、該リング状突起の先端部を、下方に向かって突出した球面状とし、
前記受け材には、その上面に、前記リング状突起を摺動可能に支持するための球面部を下方に向かって凹状となるように設けたことを特徴とする建造物の柱脚支持構造の施工方法。
Installing a cylindrical formwork on the ground surface where the foundation is installed, and placing foundation concrete around the formwork;
A shear force fixing material for receiving shear force is positioned inside the mold, and a filler is filled between the mold and the shear force fixing material, so that the shear force fixing material is used as a basis. Fixing to
Fixing the receiving material to the upper part of the foundation so as to come into contact with the fixing material for shearing force;
Placing a base plate to be attached to the lower end of the column base of a building on the upper part of the receiving material;
The upper end of the connecting member embedded in the foundation and the step of connecting the base plate,
The base plate is provided with a ring-shaped protrusion that protrudes downward from the lower surface thereof, and the tip of the ring-shaped protrusion has a spherical shape that protrudes downward,
A structure of a column base supporting structure for a building, wherein a spherical portion for slidably supporting the ring-shaped protrusion is provided on the upper surface of the receiving member so as to be concave downward. Construction method.
前記ベースプレートには、その外周部の少なくとも3カ所に、前記ベースプレートの傾きを調整するための傾き調整部材を、前記ベースプレートから切り離し可能に設け、
前記ベースプレート上に前記建造物の柱脚を取り付ける際に、前記傾き調整部材により前記ベースプレートおよび前記柱脚の傾きを調整する工程と、
前記傾き調整部材を前記ベースプレートから切り離して、前記受け材と前記ベースプレートとの摺動を可能とする工程とを含むことを特徴とする請求項5記載の建造物の柱脚支持構造の施工方法。
The base plate is provided with an inclination adjusting member for adjusting the inclination of the base plate in at least three locations on the outer periphery thereof so as to be detachable from the base plate,
Adjusting the inclination of the base plate and the column base by the inclination adjusting member when attaching the column base of the building on the base plate;
6. The construction method for a column base support structure for a building according to claim 5, further comprising a step of separating the inclination adjusting member from the base plate and allowing the receiving member and the base plate to slide.
JP2002027699A 2002-02-05 2002-02-05 Column base support structure and its construction method Expired - Fee Related JP3909392B2 (en)

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