JP4296101B2 - Mounting structure of erection piece to steel column - Google Patents

Mounting structure of erection piece to steel column Download PDF

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JP4296101B2
JP4296101B2 JP2004028966A JP2004028966A JP4296101B2 JP 4296101 B2 JP4296101 B2 JP 4296101B2 JP 2004028966 A JP2004028966 A JP 2004028966A JP 2004028966 A JP2004028966 A JP 2004028966A JP 4296101 B2 JP4296101 B2 JP 4296101B2
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steel column
steel
erection piece
erection
attached
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充洋 内藤
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Technos Co Ltd
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Description

本発明は、矩形の断面形状を有する下方の鉄骨柱及びこれに接続される上方の鉄骨柱に適用されるエレクションピースの取り付け構造、より詳細には、下方の鉄骨柱が、上下一対のフランジを有する鉄骨梁が接続される上下一対のダイヤフラムを有する場合におけるエレクションピースの取り付け構造に関する。   The present invention relates to a lower steel column having a rectangular cross-sectional shape and an erection piece mounting structure applied to an upper steel column connected to the lower steel column, more specifically, the lower steel column has a pair of upper and lower flanges. The present invention relates to an attachment structure for an erection piece in the case of having a pair of upper and lower diaphragms to which a steel beam is connected.

柱の建方における下方の鉄骨柱(既設の鉄骨柱)への上方の鉄骨柱(新設の鉄骨柱)の接続に際し、これらの鉄骨柱に吊り上げのために取り付けられた板片からなるエレクションピースが、下方の鉄骨柱に対する上方の鉄骨柱の位置調整又は転倒防止に利用されている。   When connecting the upper steel columns (new steel columns) to the lower steel columns (existing steel columns) in the construction of the columns, there is an erection piece consisting of plate pieces attached to these steel columns for lifting. It is used for position adjustment of the upper steel column relative to the lower steel column or prevention of falling.

具体的には、エレクションピースは下方の鉄骨柱の各側面の上端部及び上方の鉄骨柱の各側面の下端部にこれと直角をなすようにそれぞれ取り付けられており、下方の鉄骨梁上への上方の鉄骨梁の載置後、上下の両エレクションピースからなる4組のそれぞれに治具を取り付け、これを操作することにより、上方の鉄骨柱についての位置調整又は転倒防止が行われる。   Specifically, the erection pieces are respectively attached to the upper end of each side of the lower steel column and the lower end of each side of the upper steel column so as to be perpendicular to the lower steel column. After placing the upper steel beam, a jig is attached to each of the four sets of upper and lower erection pieces, and by operating the jigs, position adjustment or fall prevention is performed for the upper steel column.

下方の鉄骨柱が上下一対のダイヤフラムを有する場合にあっては、下方の鉄骨梁の両ダイヤフラム間における側面及び両ダイヤフラムにそれぞれ鉄骨梁のウエブ及び両フランジが接続される関係上、下方の鉄骨梁への前記エレクションピースの取り付け位置は前記鉄骨梁の側方に制限される(後記特許文献1参照)。   When the lower steel column has a pair of upper and lower diaphragms, the steel beam on the lower side is connected to the side surface between the diaphragms of the lower steel beam and the webs and flanges of the steel beam to the two diaphragms. The position where the erection piece is attached to is limited to the side of the steel beam (see Patent Document 1 below).

特開平6−158717号公報JP-A-6-158717

ところで、鉄骨梁の幅寸法(フランジの幅寸法)は、前記特許文献1の記載におけるように下方の鉄骨梁の側面の幅寸法より小さいとは限らず、実際には、むしろそれ以上であることが多い。この場合には、前記鉄骨梁の側方にエレクションピースを取り付けるためのスペースを確保することができず、該エレクションピースを利用した上方の鉄骨柱の位置調整等を行うことができない。   By the way, the width dimension of the steel beam (the width dimension of the flange) is not necessarily smaller than the width dimension of the side surface of the lower steel beam as described in the above-mentioned Patent Document 1, but actually it is more than that. There are many. In this case, it is not possible to secure a space for attaching the erection piece to the side of the steel beam, and it is not possible to adjust the position of the upper steel column using the erection piece.

本発明の目的は、上下一対のダイヤフラムを有する下方の鉄骨柱の側面の幅寸法がこれに接続される鉄骨梁の幅寸法よりも小さい場合にあってもこれに適用可能であるエレクションピースの取り付け構造を提供することにある。   An object of the present invention is to attach an erection piece that can be applied even when the width dimension of the side surface of a lower steel column having a pair of upper and lower diaphragms is smaller than the width dimension of a steel beam connected thereto. To provide a structure.

本発明は、上下一対のフランジを有する鉄骨梁が接続される側面を有しかつ上下一対のダイヤフラムを有する断面矩形状の下方の鉄骨柱とこれに接続される上方の鉄骨柱とに適用されるエレクションピースの取り付け構造に係り、前記下方の鉄骨柱について、エレクションピースが前記下方の鉄骨柱の側面に該側面から水平方向へ両ダイヤフラム間及び前記鉄骨梁の両フランジ間を経て該両フランジ間外へ伸びるように取り付けられ、また前記上方の鉄骨柱について、エレクションピースが前記上方の鉄骨柱の側面に前記下方の鉄骨柱の側面に取り付けられるエレクションピースと対をなして取り付けられる。本発明において、前記鉄骨柱の「側面」は該鉄骨柱のコーナ部を含まない。   The present invention is applied to a lower steel column having a rectangular cross section having a side surface to which a steel beam having a pair of upper and lower flanges is connected and having a pair of upper and lower diaphragms and an upper steel column connected thereto. According to the mounting structure of the erection piece, with respect to the lower steel column, the erection piece is placed on the side surface of the lower steel column horizontally from the side surface between the diaphragms and between the flanges of the steel beam. The upper steel column is attached to the side of the upper steel column in a pair with the erection piece attached to the side of the lower steel column. In the present invention, the “side surface” of the steel column does not include a corner portion of the steel column.

前記エレクションピースは、例えば前記鉄骨柱の側面と非直角に交差する平板、あるいは前記鉄骨柱の側面と直交し、次いで折れ曲がる山形の板体からなる。   The erection piece is formed of, for example, a flat plate that intersects the side surface of the steel column non-perpendicularly or a mountain-shaped plate body that is orthogonal to the side surface of the steel column and then bends.

本発明によれば、エレクションピースは、鉄骨梁が接続される下方の鉄骨柱の側面に該側面から水平方向へ両ダイヤフラム間及び前記鉄骨梁の両フランジ間を経て該両フランジ間外へ伸びるように取り付けられることから、前記下方の鉄骨柱の側面の幅寸法及び前記鉄骨梁の幅寸法の大小に拘わらず、前記下方の鉄骨柱へのエレクションピースの取り付けが可能である。また、前記下方の鉄骨柱から伸びるエレクションピースが前記鉄骨梁の両フランジ間からその外部に突出しており、かつ前記上方の鉄骨柱から伸びるエレクションピースが前記下方の鉄骨柱に取り付けられるエレクションピースと対をなして取り付けられていることから、これらのエレクションピースの突出端部を、前記上方の鉄骨柱の位置修正又は転倒防止に用いられる治具の取り付けに供することができる。   According to the present invention, the erection piece extends from the side surface to the side surface of the lower steel column to which the steel beam is connected, horizontally between the diaphragms and between the flanges of the steel beam, and extends between the flanges. Therefore, it is possible to attach the erection piece to the lower steel column regardless of the width dimension of the side surface of the lower steel column and the width dimension of the steel beam. Further, an erection piece extending from the lower steel column projects to the outside from between both flanges of the steel beam, and an erection piece extending from the upper steel column is paired with an erection piece attached to the lower steel column. Therefore, the protruding end portions of these erection pieces can be used for fixing the position of the upper steel column or for attaching a jig used for preventing overturning.

このようなエレクションピースとして、例えば、前記下方の鉄骨柱からその側面と非直角に交差して伸びる平板からなるもの、あるいは前記下方の鉄骨柱の側面から前記鉄骨の側面と直交、次いで折れ曲がる山形の板体からなるものの使用が可能である。   As such an erection piece, for example, a flat plate extending from the lower steel column crossing the side surface thereof at a non-right angle, or a mountain shape perpendicular to the side surface of the steel frame and then bent from the side surface of the lower steel column. It is possible to use a plate.

図1及び図2、並びに図3及び図4を参照すると、本発明に係るエレクションピースの取り付け構造が適用された下方の鉄骨柱及び該鉄骨柱に接続される上方の鉄骨柱が、それぞれ、全体に符号10及び12で示されている。   1 and 2, and FIGS. 3 and 4, the lower steel column to which the attachment structure of the erection piece according to the present invention is applied and the upper steel column connected to the steel column are respectively And 10 and 12.

下方の鉄骨柱10は、その上部に、互いに平行に配置された上下一対のダイヤフラム14を有する。より詳細には、下方の鉄骨柱10は下部鉄骨16と上部鉄骨18とからなり、下方のダイヤフラム14は下部及び上部の両鉄骨16,18間に配置されかつこれらに固定され、また、上方のダイヤフラム14は上部鉄骨18上に載置されかつこれに固定されている。   The lower steel column 10 has a pair of upper and lower diaphragms 14 arranged in parallel with each other at the upper part thereof. More specifically, the lower steel column 10 is composed of a lower steel frame 16 and an upper steel frame 18, and the lower diaphragm 14 is disposed between and fixed to both the lower and upper steel frames 16, 18, The diaphragm 14 is placed on and fixed to the upper steel frame 18.

両ダイヤフラム14は、それぞれ、鉄骨柱10,12の断面形状と相似をなす、面積がより大きい矩形の平面形状を有する。両ダイヤフラム14と両鉄骨柱10,12とは、前記矩形の四辺が互いに平行であるように配置されている。鉄骨柱10,12の断面形状である前記矩形は、通常は正方形であるが、それ以外の長方形であることを妨げない。   Both diaphragms 14 each have a rectangular planar shape with a larger area, which is similar to the cross-sectional shape of the steel columns 10 and 12. Both diaphragms 14 and both steel columns 10 and 12 are arranged such that the four sides of the rectangle are parallel to each other. The rectangle which is the cross-sectional shape of the steel columns 10 and 12 is usually a square, but it does not prevent other rectangles from being formed.

上方の鉄骨柱12は、下方の鉄骨柱10に対する接合のため、上方のダイヤフラム14上に載置され、これに固定される。上方の鉄骨柱12は、下方の鉄骨柱10への鉄骨梁20の接続後、クレーン等の使用により下方の鉄骨柱10の上方に配置される。鉄骨梁10,12にはその吊り下げ移動のために板状のエレクションピースが取り付けられる。エレクションピースについては後に詳述する。上方の鉄骨柱12は、その後、前記エレクションピースに取り付けて使用される後記治具を介してその位置の調整及びその転倒防止措置が図られる。   The upper steel column 12 is mounted on and fixed to the upper diaphragm 14 for joining to the lower steel column 10. The upper steel column 12 is disposed above the lower steel column 10 by using a crane or the like after the steel beam 20 is connected to the lower steel column 10. A plate-shaped erection piece is attached to the steel beams 10 and 12 for the suspension movement. The erection piece will be described in detail later. After that, the upper steel column 12 is adjusted in position and measures for preventing its fall through a postscript jig which is used by being attached to the erection piece.

下方の鉄骨柱10の4つの側面22には、上部鉄骨18において、側面22に直交する4つの取り付けブラケット24が固定されている。各取り付けブラケット24と両ダイヤフラム14とを介して、下方の鉄骨柱10に鉄骨梁20が接続される。図示の例では、下方の鉄骨梁の4つの側面22に4つの鉄骨梁20がそれぞれに接続される。建物における鉄骨柱の位置により、下方の鉄骨梁10に接続される鉄骨梁20の数は2〜4の間で変動する。また、鉄骨梁20が接続される下方の鉄骨柱の側面22は、互いに相対する2つの側面、互いに隣接する2つの側面、3つの側面又は図示の例のような全側面となる。   Four mounting brackets 24 that are orthogonal to the side surface 22 of the upper steel frame 18 are fixed to the four side surfaces 22 of the lower steel column 10. A steel beam 20 is connected to the lower steel column 10 via each mounting bracket 24 and both diaphragms 14. In the illustrated example, four steel beams 20 are connected to four side surfaces 22 of the lower steel beam. The number of steel beams 20 connected to the lower steel beam 10 varies between 2 and 4 depending on the position of the steel column in the building. Further, the side surface 22 of the lower steel column to which the steel beam 20 is connected is two side surfaces facing each other, two side surfaces adjacent to each other, three side surfaces, or all side surfaces as in the illustrated example.

鉄骨梁20はH形鋼からなり、上下一対のフランジ26とこれらに連なるウエブ28とを有する。下方の鉄骨柱10への鉄骨梁20の接続のため、両ダイヤフラム14の各縁部に各鉄骨梁20の各フランジ26が突き合わされ、後に溶接され、また、各取り付けブラケット24に各鉄骨梁のウエブ28がボルト止めされる(図1及び図3において、ボルト止めの個所を縦横の仮想線の交点で示す)。   The steel beam 20 is made of H-shaped steel, and has a pair of upper and lower flanges 26 and a web 28 connected to them. For connection of the steel beam 20 to the lower steel column 10, each flange 26 of each steel beam 20 is abutted to each edge of both diaphragms 14 and welded later, and each steel beam is attached to each mounting bracket 24. The web 28 is bolted (in FIG.1 and FIG.3, the location of bolting is shown by the intersection of the vertical and horizontal imaginary lines).

本発明においては、下方の鉄骨柱10に次のような態様でエレクションピース30が取り付けられる。すなわち、エレクションピース30は、鉄骨梁20が取り付けられる下方の鉄骨柱の側面22に、該側面から水平方向へ両ダイヤフラム14間及び鉄骨梁の両フランジ26間を経て両フランジ26間外へ伸びるように取り付けられている。また、上方の鉄骨柱12については、エレクションピース32が、上方の鉄骨柱の側面34に下方の鉄骨柱の側面33に取り付けられるエレクションピース30と対をなして、例えば上下対称に取り付けられている。   In the present invention, the erection piece 30 is attached to the lower steel column 10 in the following manner. That is, the erection piece 30 extends from the side surface to the side surface 22 of the lower steel column to which the steel beam 20 is attached, horizontally between the diaphragms 14 and between the flanges 26 of the steel beam, and to the outside between the flanges 26. Is attached. For the upper steel column 12, the erection piece 32 is paired with the erection piece 30 attached to the side 33 of the lower steel column on the side 34 of the upper steel column, for example, vertically attached. .

具体的には、図1及び図2に示す例においては、エレクションピース30が平板からなり、下方の鉄骨柱の各側面22に対してこれと非直角に交差している。交差角度は任意に設定することができる。上方の鉄骨柱の各側面34から伸びるエレクションピース32も、また、下方の鉄骨柱10に対応して同様の交差角度で側面34に対して非直角に交差している。   Specifically, in the example shown in FIGS. 1 and 2, the erection piece 30 is formed of a flat plate and intersects each side surface 22 of the lower steel column at a non-right angle. The crossing angle can be set arbitrarily. The erection piece 32 extending from each side surface 34 of the upper steel column also crosses the side surface 34 at a non-right angle at the same crossing angle corresponding to the lower steel column 10.

また、図3及び図4に示す例においては、エレクションピース30が山形に折れ曲がる板体からなり、下方の鉄骨柱の側面22と直交し、次いで折れ曲がっている。折れ曲がり角度は任意に設定することができる。上方の鉄骨柱の各側面34から伸びるエレクションピース32も、また、下方の鉄骨柱10に対応して、同様に側面34と直交した後、同様の折れ曲がり角度で折れ曲がっている。鉄骨柱10,12に対するエレクションピース30,32の取り付けは、例えば溶接により行われる。   Moreover, in the example shown in FIG.3 and FIG.4, the erection piece 30 consists of a plate body bent in a mountain shape, orthogonal to the side surface 22 of the lower steel column, and then bent. The bending angle can be arbitrarily set. The erection piece 32 extending from each side 34 of the upper steel column is also bent at the same bending angle after being orthogonal to the side 34 in the same manner, corresponding to the lower steel column 10. The erection pieces 30 and 32 are attached to the steel columns 10 and 12, for example, by welding.

これによれば、鉄骨梁20の存在に拘わらず、また、鉄骨梁20の幅寸法すなわちフランジ22の幅寸法が下方の鉄骨柱10の側面22の幅寸法より大きい場合にあっても、下方の鉄骨柱10へのエレクションピース30の取り付けが可能であり、また、鉄骨梁の両フランジ22間外に突出する部分に、上方の鉄骨柱12の位置の調整又は転倒防止のために用いられる任意の治具36を取り付けることができる。   According to this, regardless of the presence of the steel beam 20, even when the width dimension of the steel beam 20, that is, the width dimension of the flange 22 is larger than the width dimension of the side surface 22 of the lower steel column 10, the lower The erection piece 30 can be attached to the steel column 10, and any portion used for adjusting the position of the upper steel column 12 or preventing the fall of the steel beam 12 at a portion protruding between the flanges 22 of the steel beam. A jig 36 can be attached.

ところで、図示の例では、鉄骨柱10,12の各側面22,34に取り付けられたエレクションピース30,32が各側面22,34に対して同一の角度をなして伸び、また鉄骨柱10,12の周方向におけるその取り付け位置が同一とされている。しかし、これに限定されない。すなわち、下方の鉄骨梁のある側面22と、該側面の直上にあって該側面と同方向を向く、上方の鉄骨梁の側面(対応側面)34とにそれぞれ取り付けられる2つのエレクションピース30,32を1組とする各組のエレクションピース30,32についてのみ、これらが側面22,34に対して互いに同一の角度をなして伸び、かつ、鉄骨柱10,12の前記周方向における取り付け位置が同一であればよい。   In the illustrated example, the erection pieces 30 and 32 attached to the side surfaces 22 and 34 of the steel columns 10 and 12 extend at the same angle with respect to the side surfaces 22 and 34, and the steel columns 10 and 12. The mounting position in the circumferential direction is the same. However, it is not limited to this. That is, the two erection pieces 30 and 32 respectively attached to the side surface 22 having the lower steel beam and the side surface (corresponding side surface) 34 of the upper steel beam directly above the side surface and facing the same direction as the side surface. Only for each set of erection pieces 30 and 32, each of which extends at the same angle with respect to the side surfaces 22 and 34, and the mounting positions of the steel columns 10 and 12 in the circumferential direction are the same. If it is.

但し、治具36による上方の鉄骨梁12の位置の調整又は修正についての操作を容易にすべく、鉄骨柱10の互いに相対する二側面22及び鉄骨梁12の互いに相対する対応二側面34にそれぞれ取り付けられる2組のエレクションピース30,32は、図示の例のように、前記鉄骨柱の軸線上の点に関して対称であることが望ましい。   However, in order to facilitate the operation for adjusting or correcting the position of the upper steel beam 12 by the jig 36, the two opposite side surfaces 22 of the steel column 10 and the two corresponding side surfaces 34 of the steel beam 12 are respectively opposite to each other. It is desirable that the two sets of erection pieces 30 and 32 to be attached are symmetric with respect to a point on the axis of the steel column as in the illustrated example.

一例として図示した治具36は、上下1組のエレクションピース30,32を受入れ可能であるリング上の本体38と、本体38の両側部に螺合され下方のエレクションピース30に向けて伸びる1対のボルト40と、本体30の一方の側部に螺合され上方のエレクションピース32に向けて伸びる2つのボルト42と、本体38の下部に螺合され下方のエレクションピース30に向けて伸びるボルト44とを備える。さらに、治具36は、本体38内に挿入され両エレクションピース30,32間に配置された梃子部材46と、本体38に螺合され梃子部材46の一端に向けて伸びるボルト48とを備える。   The jig 36 illustrated as an example is a pair of a main body 38 on a ring that can receive a pair of upper and lower erection pieces 30 and 32, and a pair of screws that are screwed to both sides of the main body 38 and extend toward the lower erection piece 30. A bolt 40, two bolts 42 that are screwed to one side of the main body 30 and extending toward the upper erection piece 32, and a bolt 44 that is screwed to the lower part of the main body 38 and extend toward the lower erection piece 30 With. Furthermore, the jig 36 includes a lever member 46 inserted into the main body 38 and disposed between the two erection pieces 30 and 32, and a bolt 48 that is screwed into the main body 38 and extends toward one end of the lever member 46.

この治具36によれば、治具36は、ボルト42,44の締め付け操作により両エレクションピース30,32に固定され、両ボルト40の一方の締め付け操作及び他方の緩める操作により、下方の鉄骨柱10を反力支持体として、上方の鉄骨柱12を水平方向へ移動させ、これにより、上方の鉄骨柱12の水平方向位置が調整される。また、ボルト48の締め付け操作により、梃子部材46の前記一端部を押し下げると、楔部材50を介して下方のエレクションピース30に接しかつ上方のエレクションピース32に接する梃子部材46の他端部が、下方のエレクションピース30との接点を支点として回転し、上方の鉄骨柱12を押し上げることができ、これにより、上方の鉄骨の傾きが調整される。これらの調整後、治具36を取り付けたままにしておけば、これらの治具36により上方の鉄骨柱12の転倒が防止される。   According to this jig 36, the jig 36 is fixed to the both erection pieces 30 and 32 by tightening the bolts 42 and 44, and the lower steel column is fixed by tightening one of the bolts 40 and loosening the other. The upper steel column 12 is moved in the horizontal direction using 10 as a reaction force support, whereby the horizontal position of the upper steel column 12 is adjusted. Further, when the one end portion of the lever member 46 is pushed down by the tightening operation of the bolt 48, the other end portion of the lever member 46 that is in contact with the lower erection piece 30 and the upper erection piece 32 through the wedge member 50 is The upper steel column 12 can be pushed up by rotating with the contact point with the lower erection piece 30 as a fulcrum, thereby adjusting the inclination of the upper steel frame. If the jig 36 is left attached after these adjustments, the upper steel column 12 is prevented from falling by these jigs 36.

図示の実施例では、下方の鉄骨柱10にその全ての側面22において鉄骨梁26が接続されているが、前記したように、下方の鉄骨柱10の1又は2つの側面22について鉄骨梁26が接続されないことがある。この場合には、鉄骨梁26が接続されない側面22に対し、従来におけると同様、好ましくは前記側面の幅方向中央部に該側面と直交するように、エレクションピースを取り付けることができる。   In the illustrated embodiment, the steel beam 26 is connected to the lower steel column 10 at all the side surfaces 22, but as described above, the steel beam 26 is connected to one or two side surfaces 22 of the lower steel column 10. May not be connected. In this case, the erection piece can be attached to the side surface 22 to which the steel beam 26 is not connected, preferably in the widthwise central portion of the side surface so as to be orthogonal to the side surface, as in the prior art.

しかし、好ましくは、鉄骨梁26が接続されない側面22が存在する場合にあっても、治具36による修正操作を容易にすべく、図示の例と同様にエレクションピースを配置することが望ましい。いずれの場合にあっても、上方の鉄骨柱12の前記対応側面に取り付けられるエレクションピースは、その下方の鉄骨柱10の側面に取り付けられるエレクションピースと上下対称をなす。   However, it is preferable to arrange the erection piece as in the illustrated example in order to facilitate the correction operation by the jig 36 even when the side surface 22 to which the steel beam 26 is not connected exists. In any case, the erection piece attached to the corresponding side surface of the upper steel column 12 is vertically symmetrical with the erection piece attached to the side surface of the lower steel column 10.

本発明の一例を示す部分正面図である。It is a partial front view which shows an example of this invention. 図1に示す一例の部分平面図である。It is a partial top view of an example shown in FIG. 本発明の他の例を示す部分正面図である。It is a partial front view which shows the other example of this invention. 図3に示す他の例の部分平面図である。It is a fragmentary top view of the other example shown in FIG.

符号の説明Explanation of symbols

10,12 下方の鉄骨梁及び上方の鉄骨柱
14 ダイヤフラム
20,26 鉄骨梁及びそのフランジ
22,34 鉄骨梁の側面
30,32 エレクションピース
36 治具
DESCRIPTION OF SYMBOLS 10,12 Lower steel beam and upper steel column 14 Diaphragm 20,26 Steel beam and its flange 22,34 Steel beam side surface 30,32 Erection piece 36 Jig

Claims (3)

上下一対のフランジを有する鉄骨梁が接続される側面を有しかつ上下一対のダイヤフラムを有する断面矩形状の下方の鉄骨柱とこれに接続される上方の鉄骨柱とに適用されるエレクションピースの取り付け構造であって、前記下方の鉄骨柱について、エレクションピースが前記下方の鉄骨柱の側面に該側面から水平方向へ両ダイヤフラム間及び前記鉄骨梁の両フランジ間を経て該両フランジ間外へ伸びるように取り付けられ、また前記上方の鉄骨柱について、エレクションピースが前記上方の鉄骨柱の側面に前記下方の鉄骨柱の側面に取り付けられるエレクションピースと対をなして取り付けられる、取り付け構造。   Attachment of an erection piece applied to a lower steel column having a rectangular cross section having a side surface to which a steel beam having a pair of upper and lower flanges is connected and having a pair of upper and lower diaphragms and an upper steel column connected thereto In the structure, with respect to the lower steel column, the erection piece extends to the side surface of the lower steel column from the side surface in the horizontal direction between both diaphragms and between both flanges of the steel beam and to the outside between the two flanges. In addition, the upper steel column is attached to the side of the upper steel column in a pair with the erection piece attached to the side of the lower steel column. 前記エレクションピースは、前記鉄骨柱の側面と非直角に交差する平板からなる、請求項1に記載の取り付け構造。   The attachment structure according to claim 1, wherein the erection piece is formed of a flat plate that intersects a side surface of the steel column at a non-right angle. 前記エレクションピースは、前記鉄骨柱の側面と直交し、次いで折れ曲がる山形の板体からなる、請求項1に記載の取り付け構造。   The attachment structure according to claim 1, wherein the erection piece is formed of a mountain-shaped plate body that is orthogonal to a side surface of the steel column and then bends.
JP2004028966A 2004-02-05 2004-02-05 Mounting structure of erection piece to steel column Expired - Lifetime JP4296101B2 (en)

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