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JP2022163986A - Building column-beam structure, building, and building construction method - Google Patents

Building column-beam structure, building, and building construction method Download PDF

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JP2022163986A
JP2022163986A JP2021069156A JP2021069156A JP2022163986A JP 2022163986 A JP2022163986 A JP 2022163986A JP 2021069156 A JP2021069156 A JP 2021069156A JP 2021069156 A JP2021069156 A JP 2021069156A JP 2022163986 A JP2022163986 A JP 2022163986A
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frame
bolt
column
building
joint
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JP7015592B1 (en
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進䞀 接村
Shinichi Tsumura
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JTS Inc
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JTS Inc
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Priority to JP2021213919A priority patent/JP7061822B1/en
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Priority to PCT/JP2022/005094 priority patent/WO2022219899A1/en
Priority to TW111110343A priority patent/TWI800316B/en
Priority to TW111136936A priority patent/TW202307316A/en
Publication of JP2022163986A publication Critical patent/JP2022163986A/en
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Abstract

To improve conveyance easiness and site workability of a joint to be used for a column-beam structure of a steel frame building.SOLUTION: A joint 30 for coupling a lower floor pillar 20 and an upper floor pillar 40 comprises: a frame body 31; a bolt 341 penetrating a frame body side surface; and a solid part 36 obtained by filling expansive concrete inside the frame body and curing the expansive concrete. A composite beam 50 comprises: a beam body made from H-shaped steel; and a connection plate 55 welded to each of both ends in an extension direction of the beam body. On the connection plate 55 is formed an open hole 56 for penetration of a bolt. The joint 30 is fixed to an upper end of the lower floor pillar 20. The bolt 341 is then penetrated through the open hole 56 of the connection plate 55 and a nut 35 is fitted to the bolt. After that, the connection plate 55 and the frame body 31 are welded and joined.SELECTED DRAWING: Figure 3

Description

本発明は、建築物の柱梁構造、建築物、建築物の斜工方法、及び建築郚材に係り、特に鉄骚建築物の柱梁構造に関する。 TECHNICAL FIELD The present invention relates to a beam-to-column structure of a building, a building, a construction method for a building, and a building member, and more particularly to a beam-to-column structure of a steel frame building.

角型鋌管柱を甚いた柱梁構造の䞀䟋ずしお、特蚱文献には、「板状建築物の柱梁構造は、階局構造の各階で耇数の専有郚分が桁行方向に䞊べられるものであり、梁間方向に延びる梁間鉄骚梁ず、桁行方向に延びる桁行鉄骚梁ず、高さ方向に延びるず共に梁間鉄骚梁及び桁行鉄骚梁が接合される鉄筋コンクリヌト柱ずを備える芁玄抜粋」ずの蚘茉が開瀺されおいる。 As an example of a column-beam structure using square steel pipe columns, Patent Document 1 describes, "In a column-beam structure of a plate-shaped building, a plurality of exclusive parts are arranged in the girder direction on each floor of the hierarchical structure. An inter-beam steel beam extending in the inter-beam direction, a girder steel beam extending in the girder direction, and a reinforced concrete column extending in the height direction and to which the inter-beam steel beam and the girder steel beam are joined (summary excerpt)” is disclosed. It is

鉄骚建築物においお、圚来工法では柱ず梁ずの非接合郚に特蚱文献に開瀺されるような柱継ぎ手が甚いられる。図は、圚来工法による柱梁構造を瀺す図である。図は、非特蚱文献に開瀺された圚来工法に甚いられる柱継ぎ手の暡匏図である。 In a steel-frame building, a conventional construction method uses a column joint as disclosed in Patent Document 1 at a non-joining portion between a column and a beam. FIG. 6 is a diagram showing a beam-column structure 200 by a conventional construction method. FIG. 7 is a schematic diagram of a column joint 220 used in the conventional construction method disclosed in Non-Patent Document 1. As shown in FIG.

図に瀺すように、埓来の柱梁構造は、斜工珟堎にお䞋階柱の䞊端郚ず柱継ぎ手の䞋端郚、及び柱継ぎ手の䞊端郚ず䞊階柱ずを溶接し、柱を構成する。䞋階柱、䞊階柱の名称は、泚目する柱継ぎ手を基準ずしお䞋階、䞊階ず称しおいる。埓っお、泚目する柱継ぎ手が倉われば、䞋階、䞊階の呌び名も倉わる。構造物内においお耇数の柱が氎平方向図では梁間方向方向に間隔をあけお立蚭し、それらを梁間方向方向に延䌞する梁により連結される。 As shown in FIG. 6, in the conventional beam-to-column structure 200, the upper end of the lower story column 210u and the lower end of the column joint 220, and the upper end of the column joint 220 and the upper story column 210t are welded at the construction site. , constitute the column 210 . The names of the lower floor pillar 210u and the upper floor pillar 210t are called the lower floor and the upper floor based on the column joint 220 of interest. Therefore, if the column joint 220 of interest changes, the names of the lower floor and the upper floor also change. A plurality of pillars 210 are erected in the structure at intervals in the horizontal direction (in FIG. 6, the inter-beam direction (Z direction)) and are connected by beams 250 extending in the inter-beam direction (Z direction).

図に瀺すように、柱継ぎ手は、鋌管からなるパネル郚ず、パネル郚の䞋端郚に溶接される䞋ダむダフラムず、パネル郚の䞊端郚に溶接される䞊ダむダフラムずを備える。曎に柱継ぎ手は、梁を接合させるための䞀぀以䞊、四぀以䞋のブラケットを備える。 As shown in FIG. 7, the column joint 220 includes a panel portion 221 made of a steel pipe, a lower diaphragm 222u welded to the lower end portion of the panel portion 221, and an upper diaphragm 222t welded to the upper end portion of the panel portion 221. Prepare. Furthermore, the column joint 220 includes one or more and four or less brackets 230 for joining beams.

図、図、図を参照しお、圚来工法による柱梁接合凊理に぀いお説明する。図は、柱継ぎ手ず梁ずの接合凊理を瀺す分解拡倧図である。図は、柱継ぎ手ず梁ずの接合凊理が完了した状態を瀺す郚分拡倧説明図である。図は、柱継ぎ手ず梁ずの接合凊理が完了した状態を瀺す郚分拡倧偎面図である。 The column-to-beam joining process by the conventional method will be described with reference to FIGS. 8, 9 and 10. FIG. FIG. 8 is an enlarged exploded view showing the joining process of the column joint 220 and the beam 250. As shown in FIG. FIG. 9 is a partially enlarged explanatory view showing a state in which the joint processing between the column joint 220 and the beam 250 is completed. FIG. 10 is a partially enlarged side view showing a state in which the joining process between the column joint 220 and the beam 250 is completed.

ブラケットは圢鋌からなり、䞋フランゞ、䞊フランゞ、䞋フランゞ及び䞊フランゞに盎亀するりェブを含む。䞋フランゞは䞋ダむダフラムず、䞊フランゞは䞊ダむダフラムず、りェブはパネル郚ず溶接される。 The bracket 230 is made of H-beam steel and includes a lower flange 231u, an upper flange 231t, and a web 232 perpendicular to the lower flange 231u and the upper flange 231t. The lower flange 231 u is welded to the lower diaphragm 222 u, the upper flange 231 t is welded to the upper diaphragm 222 t, and the web 232 is welded to the panel portion 221 .

柱継ぎ手は、工堎においお䞋ダむダフラム、パネル郚、䞊ダむダフラムにブラケットが溶接されお出荷される。 The column joint 220 is shipped after the bracket 230 is welded to the lower diaphragm 222u, the panel portion 221, and the upper diaphragm 222t at the factory.

斜工珟堎では、圢鋌からなる梁がブラケットに接合される。具䜓的には、䞋スプラむスプレヌト倧及び䞋スプラむスプレヌト倧の半倀幅からなる䞋スプラむスプレヌト小を甚いお、ブラケットの䞋フランゞ及び梁の䞋フランゞを挟み蟌み、高力ボルトで締結する。同様に䞊スプラむスプレヌト倧及び䞊スプラむスプレヌト倧の半倀幅からなる䞊スプラむスプレヌト小を甚いお、ブラケットの䞊フランゞ及び梁の䞊フランゞを挟み蟌み、高力ボルトで締結する。曎に、ブラケットのりェブず梁のりェブずは、二枚の偎方スプラむスプレヌト、を甚いおブラケットのりェブず梁のりェブの板厚方向に沿っお挟み蟌み、高力ボルトで締結する。ブラケット、梁のそれぞれず䞊スプラむスプレヌト倧、䞊スプラむスプレヌト小、䞋スプラむスプレヌト倧、䞋スプラむスプレヌト小、偎方スプラむスプレヌト、ずは溶接する。 At the construction site, a beam 250 made of H-shaped steel is joined to the bracket 230 . Specifically, the lower splice plate (large) 240u and the lower splice plate (small) 240uh1, 240uh2 having half widths of the lower splice plate (large) 240u are used to form the lower flange 231u of the bracket 230 and the lower flange of the beam 250. 251u is sandwiched and fastened with a high-strength bolt 260.䟋文垳に远加Similarly, upper splice plates (large) 240t and upper splice plates (small) 240th1 and 240th2 each having a half width of the upper splice plate (large) 240t are used to sandwich the upper flange 231t of the bracket 230 and the upper flange 251t of the beam 250. , are fastened with high-strength bolts 260 . Further, the web 232 of the bracket 230 and the web 252 of the beam 250 are sandwiched along the plate thickness direction of the web 232 of the bracket 230 and the web 252 of the beam 250 using two lateral splice plates 240w1 and 240w2, thereby Tighten with force bolts 260 . Bracket 230, beam 250, upper splice plate (large) 240t, upper splice plate (small) 240th1, 240th2, lower splice plate (large) 240u, lower splice plate (small) 240uh1, 240uh2, side splice plate 240w1, Weld with 240w2.

こうしお圚来工法に係る柱梁構造では、柱継ぎ手にブラケットを予め溶接するこずで、䞋階柱ず䞊階柱ずを柱継ぎ手を介しお連結するず共に、ブラケットに梁を接合するこずで柱ず梁ずを連結した剛接合を実珟しおいる。 Thus, in the column-beam structure 200 according to the conventional construction method, the bracket 230 is welded to the column joint 220 in advance, thereby connecting the lower floor column 210u and the upper floor column 210t via the column joint 220, and attaching the beam to the bracket 230. By joining the pillars 250, a rigid joint connecting the columns and the beams 250 is realized.

特開号公報JP 2017-155415 A

https://seko-kanri. com/diaphragm/

埓来の柱継ぎ手は、ブラケットがパネル郚、䞋ダむダフラム、䞊ダむダフラムから突出しおいるため、柱継ぎ手を工堎から斜工珟堎に運搬する際に、柱継ぎ手を運搬車䞡の荷台に䞊列に茉眮したり、積み䞊げたりできず、運搬がしづらいずいう課題がある。 In the conventional column joint 220, the bracket 230 protrudes from the panel portion 221, the lower diaphragm 222u, and the upper diaphragm 222t. There is a problem that it is difficult to transport because it cannot be placed in parallel or stacked.

曎に柱継ぎ手に梁を接合する際に、䞀぀の梁を接合するために䞋スプラむスプレヌト倧、䞋スプラむスプレヌト小、䞊スプラむスプレヌト倧、䞊スプラむスプレヌト小、偎方スプラむスプレヌト、ずブラケット及び梁ずを溶接する必芁があり、溶接箇所が倚いずいう課題がある。 Furthermore, when joining the beams 250 to the column joint 220, in order to join one beam 250, a lower splice plate (large) 240u, a lower splice plate (small) 240uh1, 240uh2, an upper splice plate (large) 240t, and an upper splice It is necessary to weld the plates (small) 240th1, 240th2, the side splice plates 240w1, 240w2, the bracket 230 and the beam 250, and there is a problem that there are many welding points.

たた、䞀぀の梁を接合するために䞋スプラむスプレヌト倧、䞋スプラむスプレヌト小、䞊スプラむスプレヌト倧、䞊スプラむスプレヌト小、偎方スプラむスプレヌト、を芁するこずから、接合金具を枛らしおコストダりンを図りたいずいう芁望には応えられおいない。 In order to join one beam 250, lower splice plate (large) 240u, lower splice plate (small) 240uh1, 240uh2, upper splice plate (large) 240t, upper splice plate (small) 240th1, 240th2, side splice Since the plates 240w1 and 240w2 are required, the demand for cost reduction by reducing the number of joint fittings has not been met.

加えお、柱継ぎ手に梁からかかる力に察する剛性は高い方が奜たしい。柱継ぎ手では、䞋ダむダフラム及び䞊ダむダフラムを甚いお剛性を高めおいるものの、パネル郚は鋌管柱を甚いお構成されるので、曎なる工倫の䜙地がある。 In addition, it is preferable that the column joint 220 has a high rigidity against the force applied from the beam 250 . In the column joint 220, the lower diaphragm 222u and the upper diaphragm 222t are used to increase the rigidity, but since the panel section 221 is configured using a steel pipe column, there is room for further improvement.

本発明は䞊蚘課題及び実情に鑑みおなされたものであり、運搬性及び斜工䜜業性の改善、柱継ぎ手の剛性の向䞊、及び柱梁接合に必芁な郚品点数の削枛を実珟するこずを目的ずする。 The present invention has been made in view of the above problems and circumstances, and aims to improve transportability and construction workability, improve the rigidity of column joints, and reduce the number of parts required for column-to-beam joints. do.

䞊蚘課題を解決するため、本発明は特蚱請求の範囲に蚘茉の構成を備える。その䞀䟋をあげるならば、本発明に係る建築物の柱梁構造は、
建築物の柱梁構造であっお、
角型鋌管からなる䞋階柱及び䞊階柱ず、
前蚘䞋階柱及び䞊階柱を高さ方向に連結しお柱を圢成する継ぎ手ず、
前蚘建築物の桁行方向又は梁間方向に延䌞する合成梁ず、を備え、
前蚘継ぎ手は、
前蚘䞋階柱及び前蚘䞊階柱の倖呚埄ず同䞀ずみなせる倪さの角型鋌管からなる枠䜓ず、
前蚘枠䜓の内偎に備えられた内底面ず、
前蚘枠䜓の四぀の偎面のうち、䞀組の察向する偎面を前蚘枠䜓から䞡端郚を突出させお貫通する第ボルト及び前蚘枠䜓の四぀の偎面のうち、残りの䞀組の察向する偎面を前蚘枠䜓から䞡端郚を突出させお貫通する第ボルトず、
前蚘枠䜓の内郚に膚匵コンクリヌトを充填しお硬化させた充実郚ず、を備え、
前蚘第ボルト及び前蚘第ボルトの各先端にはねじ溝が圢成され、
前蚘合成梁は、
圢鋌からなる梁本䜓ず、
前蚘梁本䜓の延䌞方向の䞡端郚のそれぞれに溶接された仕口プレヌトず、を備え、
前蚘合成梁の仕口プレヌトには、前蚘第ボルト又は前蚘第ボルトを貫通させるための貫通孔が圢成され、
前蚘仕口プレヌトの貫通孔に前蚘第ボルト又は前蚘第ボルトを貫通させおナットをはめ合わせるこずで前蚘合成梁を前蚘継ぎ手に接合し、前蚘仕口プレヌトず前蚘枠䜓ずが溶接される、
こずを特城ずする。
In order to solve the above problems, the present invention has the configuration described in the claims. As an example, the column-to-beam structure of the building according to the present invention is
A beam-column structure of a building,
lower floor pillars and upper floor pillars made of square steel pipes;
a joint that connects the lower floor pillar and the upper floor pillar in the height direction to form a pillar;
A composite beam extending in the girder direction or inter-beam direction of the building,
The joint is
a frame made of a square steel pipe having a thickness that can be regarded as the same as the outer diameters of the lower floor pillars and the upper floor pillars;
an inner bottom surface provided inside the frame;
A first bolt penetrating a pair of opposing side surfaces of the four side surfaces of the frame with both ends protruding from the frame, and a remaining pair of opposing side surfaces of the four side surfaces of the frame. a second bolt penetrating the side surface of the frame with both ends protruding from the frame;
a solid portion filled with expansive concrete inside the frame and hardened,
A thread groove is formed at each tip of the first bolt and the second bolt,
The composite beam is
a beam body made of H-shaped steel;
a connection plate welded to each of the ends of the beam body in the extending direction,
A through hole for passing the first bolt or the second bolt is formed in the joint plate of the composite beam,
The composite beam is joined to the joint by passing the first bolt or the second bolt through the through-hole of the joint plate and fitting a nut, thereby welding the joint plate and the frame. ,
It is characterized by

本発明によれば、運搬性及び斜工䜜業性の改善、柱継ぎ手の剛性の向䞊、及び柱梁接合に必芁な郚品点数の削枛を実珟するこずができる。なお、䞊述した以倖の目的、構成、効果に぀いおは以䞋の実斜圢態においお明らかにされる。 According to the present invention, it is possible to improve transportability and construction workability, improve the rigidity of column joints, and reduce the number of parts required for column-to-beam joints. Objects, configurations, and effects other than those described above will be clarified in the following embodiments.

本実斜圢態に係る柱梁構造を瀺す図。The figure which shows the beam-column structure which concerns on this embodiment. 柱梁構造の斜工手順の䞀郚を瀺す図。The figure which shows a part of construction procedure of column beam structure. 継ぎ手の分解説明図。Exploded explanatory view of the joint. 継ぎ手の梁の接合郚の郚分拡倧図偎面芖。FIG. 3 is a partially enlarged view of the joint of the beam of the joint (side view). 継ぎ手の梁ずの接合郚の郚分拡倧断面図偎面芖。FIG. 3 is a partially enlarged cross-sectional view of a joint portion of a joint with a beam (side view); 圚来工法による柱梁構造を瀺す図。The figure which shows the beam-column structure by the conventional construction method. 圚来工法に甚いられる柱継ぎ手の暡匏図。Schematic diagram of a column joint used in a conventional construction method. 柱継ぎ手ず梁ずの接合凊理を瀺す分解拡倧図。The exploded enlarged view which shows the joining process of a column joint and a beam. 柱継ぎ手ず梁ずの接合凊理が完了した状態を瀺す郚分拡倧説明図。FIG. 4 is a partially enlarged explanatory view showing a state in which joining processing between a column joint and a beam is completed; 柱継ぎ手ず梁ずの接合凊理が完了した状態を瀺す郚分拡倧偎面図。FIG. 4 is a partially enlarged side view showing a state in which the joint processing between the column joint and the beam is completed;

以䞋、図面を参照しながら本発明の実斜圢態を説明する。党図ず通じお同䞀の構成には同䞀の笊号を付し、重耇説明を省略する。 Embodiments of the present invention will be described below with reference to the drawings. The same reference numerals are given to the same components throughout the drawings, and redundant explanations will be omitted.

柱梁構造
図は、本実斜圢態に係る柱梁構造を瀺す図である。図は、柱梁構造の斜工手順の䞀郚を瀺す図である。
<Column beam structure>
FIG. 1 is a diagram showing a beam-column structure 100 according to this embodiment. FIG. 2 is a diagram showing a part of the construction procedure of the beam-column structure 100. As shown in FIG.

図に瀺す柱梁構造は、鉄骚造りの建築物に甚いられる構造である。柱梁構造は、基瀎、のそれぞれに角型鋌管からなる䞋階柱、を立蚭し、䞋階柱、の䞊端に接合された継ぎ手、を介しお氎平方向の䞀方向である梁間方向方向を合成梁し、曎に継ぎ手、の䞊端に角型鋌管からなる䞊階柱、をそれぞれ立蚭しお構成される。 A beam-to-column structure 100 shown in FIG. 1 is a structure used in a steel frame building. The column-beam structure 100 has lower floor columns 20a and 20b made of square steel pipes erected on foundations 10a and 10b, respectively. Composite beams 50a are provided in one direction (the Z direction), and upper floor columns 40a and 40b made of square steel pipes are erected at the upper ends of joints 30a and 30b, respectively.

図に瀺すように、継ぎ手、には、桁行方向方向にも合成梁が連結される。䞋階柱ず継ぎ手ずの接合郚、及び䞊階柱ず継ぎ手ずの接合郚のそれぞれは溶接により固定する。継ぎ手は䞋階柱及び䞊階柱の倖呚埄ずほが等しい同䞀ずみなせる倪さでよく予め定めた蚱容範囲内の倖呚埄の差があっおもよい。角柱状に圢成される。継ぎ手ず継ぎ手ずは同䞀郚材であるので、以䞋の説明では継ぎ手、ず合成梁、ずを特に区別する必芁がない堎合は継ぎ手、合成梁ずしお説明する。 As shown in FIG. 2, a composite beam 50b is also connected to the joints 30a and 30b in the row direction (X direction). The joint between the lower floor pillar 20a and the joint 30 and the joint between the upper floor pillar 40a and the joint 30 are fixed by welding. The joint 30a is formed in the shape of a prism which is substantially equal to the outer diameter of the lower floor pillar 20a and the upper floor pillar 40a (the thickness may be considered to be the same, and the outer diameter may differ within a predetermined allowable range). . Since the joint 30a and the joint 30b are the same member, the joints 30a and 30b and the composite beams 50a and 50b will be referred to as the joint 30 and the composite beam 50 unless it is necessary to distinguish them.

図は、継ぎ手の分解説明図である。図は、継ぎ手の合成梁の接合郚の郚分拡倧図偎面芖である。図は、継ぎ手の合成梁の接合郚の郚分拡倧断面図偎面芖である。 FIG. 3 is an exploded explanatory view of the joint 30. FIG. FIG. 4 is a partially enlarged view (side view) of the joint portion of the composite beam 50 of the joint 30. As shown in FIG. FIG. 5 is a partially enlarged cross-sectional view (side view) of the joint portion of the composite beam 50 of the joint 30. As shown in FIG.

図に瀺すように、継ぎ手は、鋌管からなる枠䜓ず、枠䜓の内偎に蚭けられた内底面図参照ずを備える。 As shown in FIG. 3, the joint 30 includes a frame 31 made of steel pipe and an inner bottom surface 32 (see FIG. 5) provided inside the frame 31. As shown in FIG.

枠䜓の板厚図参照は、䞋階柱及び䞊階柱の板厚図参照の倍以䞊ずする。䞊蚘“倍以䞊”ず芏定したのは、建築基準法からの芁請に埓うためであり、建築基準法の曎改に䌎っお、鋌管柱の板厚に察する継ぎ手の板厚の比は適宜倉曎される。 The plate thickness d2 (see FIG. 5) of the frame 31 is set to be at least twice the plate thickness d1 (see FIG. 5) of the lower floor pillar 20a and the upper floor pillar 40a. The above definition of "more than twice" is to comply with the requirements of the Building Standards Law, and the ratio of the plate thickness d2 of the joint 30 to the plate thickness d1 of the steel pipe column is changed as appropriate in accordance with the revision of the Building Standards Law. be done.

枠䜓の各偎面には、列段、合蚈個の貫通孔が蚭けられる。察向する偎面の各貫通孔に合蚈本のボルトを貫通させる。同様に察向する偎面の各貫通孔に合蚈本のボルトを貫通させる。ボルトは枠䜓の内郚で亀差するので、干枉しないよう高さ方向の䜍眮を替えお枠䜓を貫通しお配眮される。ボルトは、第ボルト、第ボルトに盞圓する。 Each side surface 331 , 332 , 333 , 334 of the frame 31 is provided with a total of six through holes arranged in two rows and three stages. A total of six bolts 341 are passed through the through holes of the opposing side surfaces 331 and 333 . Similarly, a total of six bolts 342 are passed through the through holes of the side surfaces 332 and 334 facing each other. Since the bolts 341 and 342 intersect inside the frame 31, they are arranged so as to pass through the frame 31 by changing their positions in the height direction so as not to interfere with each other. The bolts 341 and 342 correspond to first and second bolts.

ボルトのそれぞれは䞡端郚を枠䜓の倖に向けお突出させる。ボルトの端郚にはねじ溝が蚭けられおおり、ナットが着脱可胜にははめ蟌たれる。ナットは、ボルトの各先端、合蚈個が装着される。継ぎ手の出荷時にはナットがボルトにはめ蟌たれた状態で出荷される。 Both ends of the bolts 341 and 342 protrude outward from the frame 31 . The ends of the bolts 341 and 342 are threaded, and the nuts 35 are detachably fitted therein. A total of 24 nuts 35 are attached to the ends of the bolts 341 and 342 . When the joint 30 is shipped, the nuts 35 are fitted to the bolts 341 and 342 when shipped.

継ぎ手は、枠䜓に本のボルトを貫通させた状態で、枠䜓の内郚を膚匵コンクリヌトで充填し硬化させた充実郚を圢成する。枠䜓の内郚を膚匵コンクリヌトで充填するこずにより、枠䜓の内偎衚面は硬化過皋における膚匵コンクリヌトの膚匵に拘束を䞎え、枠䜓ず充実郚ずの間に隙間が生じにくくなる。充実郚は枠䜓の内偎衚面に察しお倖偎に向かう力を䞎えるこずで、枠䜓が合成梁から受ける力による倉圢を抑制する。すなわち、圚来工法の柱継ぎ手に甚いた平板䞊のダむダフラムを甚いるこずなく、継ぎ手に合成梁から加わる力に察する剛性を向䞊させるこずができる。 The joint 30 forms a solid portion 36 in which the inside of the frame 31 is filled with expanded concrete and hardened while twelve bolts 341 and 342 are passed through the frame 31 . By filling the inside of the frame 31 with expansive concrete, the inner surface of the frame 31 restricts expansion of the expansive concrete during the hardening process, and a gap is less likely to occur between the frame 31 and the solid portion 36 . The solid portion 36 applies an outward force to the inner surface of the frame 31 , thereby suppressing deformation of the frame 31 due to the force received from the composite beam 50 . That is, it is possible to improve the rigidity against the force applied to the joint 30 from the composite beam 50 without using the flat diaphragm used for the column joint 220 of the conventional construction method.

合成梁は、圢鋌からなる梁本䜓ず、梁本䜓の延䌞方向䞡端郚のそれぞれに、延䌞方向に察しお盎亀する仕口プレヌトを予め溶接しお圢成される。梁本䜓は、りェブず、りェブを䞊䞋に挟んで察向する䞊フランゞ及び䞋フランゞを含む。 The composite beam 50 is formed by previously welding a beam body 53 made of H-shaped steel and joint plates 55 orthogonal to the extension direction to both ends of the beam body 53 in the extension direction. The beam body 53 includes a web 52, and an upper flange 51t and a lower flange 51u facing each other with the web 52 interposed therebetween.

仕口プレヌトは鉄板により構成され、䞊フランゞりェブ䞋フランゞのそれぞれに溶接される。 The connection plate 55 is made of an iron plate and welded to the upper flange 51t, the web 52, and the lower flange 51u.

仕口プレヌトは、枠䜓の偎面から突出しおいるボルト、又はボルトを貫通させるためのボルト孔を぀備える。ボルトずボルトずは高さ方向の䜍眮を倉えお継ぎ手に備えられおいるので、ボルト孔の䜍眮もそれに応じお倉える。埓っお、継ぎ手の偎面に接合する合成梁ず、継ぎ手の偎面に接合する合成梁ずは、仕口プレヌトに蚭けられるボルト孔の䜍眮が異なる。図では説明の䟿宜のため、枠䜓の偎面に接合する仕口プレヌトに぀いおは、この仕口プレヌトに溶接されおいる合成梁の䞊フランゞりェブ䞋フランゞの図瀺を省略しおいる。 The connection plate 55 has six bolt holes 56 for passing bolts 341 or 342 protruding from the side surface 331 of the frame 31 . Since the bolts 341 and 342 are provided in the joint 30 with different positions in the height direction, the positions of the bolt holes 56 are also changed accordingly. Therefore, the position of the bolt hole 56 provided in the joint plate 55 differs between the composite beam 50 joined to the side surfaces 331 and 333 of the joint 30 and the composite beam 50 joined to the side surfaces 332 and 334 of the joint 30 . For convenience of explanation, in FIG. Illustration is omitted.

本実斜圢態にかかる柱梁構造を含む建築物の斜工方法に぀いお説明する。工堎では、継ぎ手ず合成梁ずを含む建築郚材を補造し、これらの建築郚材建築郚材のキットが斜工珟堎に運び蟌たれる。 A construction method of a building including the beam-column structure 100 according to the present embodiment will be described. At the factory, building members including joints 30 and composite beams 50 are manufactured, and these building members (building member kits) are brought to the construction site.

継ぎ手は、枠䜓にボルトを貫通させた状態で膚匵コンクリヌトを枠䜓に流し蟌み、硬化させる。そしおボルトにナットをはめた状態で出荷する。 The joint 30 is made by pouring expansive concrete into the frame 31 with the bolts 341 and 342 penetrating the frame 31 and hardening it. The bolts 341 and 342 are shipped with the nuts 35 fitted thereon.

合成梁は、圢鋌からなる梁本䜓の䞡端郚に仕口プレヌトを溶接しおから出荷する。 The composite beam 50 is shipped after welding connection plates 55 to both ends of a beam body 53 made of H-section steel.

斜工珟堎における斜工方法継ぎ手ず合成梁ずの接合凊理は以䞋のずおりである。
䞋階柱の䞊端郚に継ぎ手を溶接する。
ボルトにはたっおいるナットを取り倖す。
合成梁の仕口プレヌトを継ぎ手の偎面に察向させ、仕口プレヌトのボルト孔にボルトを貫通させお仕口プレヌトを枠䜓の偎面に圓接する。
ボルトにナットをはめ合わせる。
仕口プレヌトず継ぎ手ずを溶接する。
継ぎ手の䞊端郚に䞊階柱を溶接する。
The construction method (joining process of the joint 30 and the composite beam 50) at the construction site is as follows.
(1) Weld the joint 30 to the upper end of the lower floor pillar 20 .
(2) Remove the nut 35 fitted on the bolt 341 .
(3) The connection plate 55 of the composite beam 50 is opposed to the side surface 331 of the joint 30 , and the bolt 311 is passed through the bolt hole 56 of the connection plate 55 to bring the connection plate 55 into contact with the side surface 331 of the frame 31 . .
(4) Fit the nut 35 onto the bolt 341 .
(5) Weld the connection plate 55 and the joint 30 together.
(6) Weld the upper floor pillar 40 to the upper end of the joint 30 .

埓っお、図、図に瀺すように、仕口プレヌトをはさんでボルトにナットをはめ合わせた状態ずなる。 Therefore, as shown in FIGS. 4 and 5, the nut 35 is fitted to the bolt 341 with the joint plate 55 interposed therebetween.

本実斜圢態によれば、継ぎ手は、枠䜓を基本ずし、ボルトがわずかに突出した倖埄圢状ずしお構成できる。よっお、継ぎ手がほが盎方䜓圢状に圢成でき、車䞡に積茉しお、又は䞊列させお積茉でき、運搬効率を向䞊させるこずができる。 According to this embodiment, the joint 30 can be configured to have an outer diameter shape based on the frame 31 with the bolts 341 and 342 projecting slightly. Therefore, the joint 30 can be formed in a substantially rectangular parallelepiped shape, can be loaded on a vehicle or can be loaded side by side, and transportation efficiency can be improved.

曎に圚来工法では図、図に瀺すように柱継ぎ手に合成梁を溶接する際は、䞋スプラむスプレヌト倧、䞋スプラむスプレヌト小、䞊スプラむスプレヌト倧、䞊スプラむスプレヌト小、偎方スプラむスプレヌト、をブラケット及び梁のそれぞれに溶接する。これに察しお本実斜圢態によれば、スプラむスプレヌトを䜿うこずなく、合成梁の仕口プレヌトの四蟺を継ぎ手に溶接すればよい。そのため、圚来工法に比べお柱梁接合に際しお接合金具を枛らし、曎に柱梁接合時の溶接箇所を枛らし斜工䜜業性を向䞊させるこずができる。 Furthermore, in the conventional construction method, when welding the composite beam 50 to the column joint 220 as shown in FIGS. ) 240t, upper splice plates (small) 240t1, 240t2, and side splice plates 240w1, 240w2 are welded to bracket 230 and beam 250, respectively. In contrast, according to the present embodiment, the four sides of the joint plate 55 of the composite beam 50 can be welded to the joint 30 without using a splice plate. Therefore, compared with the conventional construction method, it is possible to reduce the number of joint metal fittings when joining columns and beams, and further reduce the number of welding points when joining columns and beams, thereby improving construction workability.

䞊蚘実斜圢態は本発明の䞀実斜圢態を衚したにすぎず、本発明の趣旚を逞脱しない各皮倉圢態様は、本発明に含たれる。 The above embodiment merely represents one embodiment of the present invention, and various modifications that do not depart from the gist of the present invention are included in the present invention.

䟋えば、枠䜓に蚭けるボルトの本数は、枠䜓の䞀偎面に本に限定されない。 For example, the number of bolts 341 and 342 provided on the frame 31 is not limited to six on one side surface of the frame 31 .

たた本発明は、䞋階柱及び䞊階柱を構成する角型鋌管からなる柱郚材ず、仕口プレヌトを延䌞方向の䞡端に備える圢鋌梁鋌材ず、継ぎ手ずを含む建築郚材のキット、継ぎ手、合成梁の各建築郚材は、本発明に係る建築郚材の暩利範囲に含たれる。たた、継ぎ手、合成梁を甚いた柱梁構造を含む建築物、その斜工方法も本発明に含たれる。 In addition, the present invention includes a column member made of square steel pipes constituting the lower floor column 20 and the upper floor column 40, an H-shaped steel (beam steel material) provided with joint plates 55 at both ends in the extending direction, and a joint 30. Each building member such as the building member kit, the joint 30, and the composite beam 50 is included in the scope of rights of the building member according to the present invention. The present invention also includes a building including a beam-to-column structure 100 using joints 30 and composite beams 50, and a construction method thereof.

 基瀎
 䞋階柱
 継ぎ手
 枠䜓
 内底面
 ナット
 充実郚
 䞊階柱
 合成梁
 䞊フランゞ
 䞋フランゞ
 りェブ
 梁本䜓
 仕口プレヌト
 ボルト孔
 柱梁構造
 柱梁構造圚来工法
 柱
 䞊階柱
 䞋階柱
 柱継ぎ手
 パネル郚
 䞊ダむダフラム
 䞋ダむダフラム
 ブラケット
 䞊フランゞ
 䞋フランゞ
 りェブ
 䞊スプラむスプレヌト倧
䞊スプラむスプレヌト小
 䞋スプラむスプレヌト倧
䞋スプラむスプレヌト小
 偎方スプラむスプレヌト
 梁
 䞊フランゞ
 䞋フランゞ
 りェブ
 高力ボルト
 ボルト
 偎面
 ボルト
 領域
 板厚
 溶接郚
10a, 10b: foundations 20, 20a, 20b: lower pillars 30, 30a, 30b: joints 31: frame 32: inner bottom surface 35: nuts 36: solid portions 40, 40a, 40b: upper pillars 50, 50a, 50b : Composite beam 51t : Upper flange 51u : Lower flange 52 : Web 53 : Beam body 55 : Connection plate 56 : Bolt hole 100 : Column beam structure 200 : Column beam structure (conventional method)
210: Column 210t: Upper floor column 210u: Lower floor column 220: Column joint 221: Panel part 222t: Upper diaphragm 222u: Lower diaphragm 230: Bracket 231t: Upper flange 231u: Lower flange 232: Web 240t: Upper splice plate (large )
240th1, 240th2: Upper splice plate (small)
240u: lower splice plate (large)
240uh1, 240uh2: lower splice plate (small)
240w1, 240w2: Lateral splice plate 250: Beam 251t: Upper flange 251u: Lower flange 252: Web 260: High-strength bolt 311: Bolts 331, 332, 333, 334: Sides 341, 342: Bolts A, B: Area d1 , d2: plate thickness wl: welded portion

本発明は、建築物の柱梁構造、建築物、及び建築物の斜工方法に係り、特に鉄骚建築物の柱梁構造に関する。 TECHNICAL FIELD The present invention relates to a beam-to-column structure of a building, a building, and a construction method for a building , and more particularly to a beam-to-column structure of a steel frame building.

Claims (8)

建築物の柱梁構造であっお、
角型鋌管からなる䞋階柱及び䞊階柱ず、
前蚘䞋階柱及び䞊階柱を高さ方向に連結しお柱を圢成する継ぎ手ず、
前蚘建築物の桁行方向又は梁間方向に延䌞する合成梁ず、を備え、
前蚘継ぎ手は、
前蚘䞋階柱及び前蚘䞊階柱の倖呚埄ず同䞀ずみなせる倪さの角型鋌管からなる枠䜓ず、
前蚘枠䜓の内偎に備えられた内底面ず、
前蚘枠䜓の四぀の偎面のうち、䞀組の察向する偎面を前蚘枠䜓から䞡端郚を突出させお貫通する第ボルト及び前蚘枠䜓の四぀の偎面のうち、残りの䞀組の察向する偎面を前蚘枠䜓から䞡端郚を突出させお貫通する第ボルトず、
前蚘枠䜓の内郚に膚匵コンクリヌトを充填しお硬化させた充実郚ず、を備え、
前蚘第ボルト及び前蚘第ボルトの各先端にはねじ溝が圢成され、
前蚘合成梁は、
圢鋌からなる梁本䜓ず、
前蚘梁本䜓の延䌞方向の䞡端郚のそれぞれに溶接された仕口プレヌトず、を備え、
前蚘合成梁の仕口プレヌトには、前蚘第ボルト又は前蚘第ボルトを貫通させるための貫通孔が圢成され、
前蚘仕口プレヌトの貫通孔に前蚘第ボルト又は前蚘第ボルトを貫通させおナットをはめ合わせるこずで前蚘合成梁を前蚘継ぎ手に接合し、前蚘仕口プレヌトず前蚘枠䜓ずが溶接される、
こずを特城ずする建築物の柱梁構造。
A beam-column structure of a building,
lower floor pillars and upper floor pillars made of square steel pipes;
a joint that connects the lower floor pillar and the upper floor pillar in the height direction to form a pillar;
A composite beam extending in the girder direction or inter-beam direction of the building,
The joint is
a frame made of a square steel pipe having a thickness that can be regarded as the same as the outer diameters of the lower floor pillars and the upper floor pillars;
an inner bottom surface provided inside the frame;
A first bolt penetrating a pair of opposing side surfaces of the four side surfaces of the frame with both ends protruding from the frame, and a remaining pair of opposing side surfaces of the four side surfaces of the frame. a second bolt penetrating the side surface of the frame with both ends protruding from the frame;
a solid portion filled with expansive concrete inside the frame and hardened,
A thread groove is formed at each tip of the first bolt and the second bolt,
The composite beam is
a beam body made of H-shaped steel;
a connection plate welded to each of the ends of the beam body in the extending direction,
A through hole for passing the first bolt or the second bolt is formed in the joint plate of the composite beam,
The composite beam is joined to the joint by passing the first bolt or the second bolt through the through-hole of the joint plate and fitting a nut, thereby welding the joint plate and the frame. ,
A column-beam structure of a building characterized by:
請求項に蚘茉の建築物の柱梁構造であっお、
前蚘枠䜓を構成する角型鋌管の板厚は、前蚘䞋階柱及び前蚘䞊階柱を構成する角型鋌管の壁厚の倍以䞊である、
こずを特城ずする建築物の柱梁構造。
The beam-column structure of the building according to claim 1,
The plate thickness of the square steel pipes forming the frame is at least twice the wall thickness of the square steel pipes forming the lower floor pillars and the upper floor pillars.
A column-beam structure of a building characterized by:
請求項又は請求項に蚘茉の建築物の柱梁構造を有するこずを特城ずする建築物。 A building comprising the column-beam structure of the building according to claim 1 or 2. 柱梁構造を有する建築物の斜工方法であっお、
前蚘柱梁構造は、角型鋌管からなる䞋階柱及び䞊階柱ず、前蚘䞋階柱及び䞊階柱を高さ方向に連結しお柱を圢成する継ぎ手ず、前蚘建築物の桁行方向又は梁間方向に延䌞する合成梁ず、を備え、
前蚘継ぎ手は、前蚘䞋階柱及び前蚘䞊階柱の倖呚埄ず同䞀ずみなせる倪さの角型鋌管からなる枠䜓ず、前蚘枠䜓の内偎に備えられた内底面ず、前蚘枠䜓の四぀の偎面のうち、䞀組の察向する偎面を前蚘枠䜓から䞡端郚を突出させお貫通する第ボルト及び前蚘枠䜓の四぀の偎面のうち、残りの䞀組の察向する偎面を前蚘枠䜓から䞡端郚を突出させお貫通する第ボルトず、前蚘枠䜓の内郚に膚匵コンクリヌトを充填しお硬化させた充実郚ず、を備え、前蚘第ボルト及び前蚘第ボルトの各先端にはねじ溝が圢成され、
前蚘合成梁は、圢鋌からなる梁本䜓ず、前蚘梁本䜓の延䌞方向の䞡端郚のそれぞれに溶接された仕口プレヌトず、を備え、前蚘合成梁の仕口プレヌトには、前蚘第ボルト又は前蚘第ボルトを貫通させるための貫通孔が圢成され、
前蚘䞋階柱の䞊端郚に前蚘継ぎ手を接合するステップず、
前蚘仕口プレヌトの貫通孔に前蚘第ボルト又は前蚘第ボルトを貫通させおナットをはめ合わせるステップず、
前蚘仕口プレヌトず前蚘枠䜓の偎面ずを溶接するステップず、
を含むこずを特城ずする建築物の斜工方法。
A construction method for a building having a column-beam structure,
The column-beam structure includes a lower floor column and an upper floor column made of square steel pipes, a joint that connects the lower floor column and the upper floor column in the height direction to form a column, and a girder direction of the building or Composite beams extending in the inter-beam direction,
The joints are composed of a frame made of a square steel pipe having a thickness that can be regarded as the same as the outer diameter of the lower floor pillar and the upper floor pillar, an inner bottom surface provided inside the frame, and four A first bolt penetrating a pair of opposing side surfaces of the four side surfaces of the frame with both ends projecting from the frame, and a pair of the remaining pair of opposing side surfaces of the four side surfaces of the frame body and a solid portion formed by filling expansive concrete in the interior of the frame body and hardening it. A thread groove is formed,
The composite beam includes a beam body made of H-shaped steel and connection plates welded to both ends of the beam body in the extending direction, and the connection plate of the composite beam includes the first A through hole is formed for the bolt or the second bolt to pass through,
joining the joint to the upper end of the lower floor pillar;
a step of passing the first bolt or the second bolt through the through hole of the joint plate and fitting a nut;
welding the connection plate and the side surface of the frame;
A construction method for a building, comprising:
建築物の柱梁構造に甚いられる建築郚材であっお、
角型鋌管からなる枠䜓ず、
前蚘枠䜓の内偎に備えられた内底面ず、
前蚘枠䜓の四぀の偎面のうち、䞀組の察向する偎面を前蚘枠䜓から䞡端郚を突出させお貫通する第ボルト及び前蚘枠䜓の四぀の偎面のうち、残りの䞀組の察向する偎面を前蚘枠䜓から䞡端郚を突出させお貫通する第ボルトず、
前蚘枠䜓の内郚に膚匵コンクリヌトを充填しお硬化させた充実郚ず、を備え、
前蚘第ボルト及び前蚘第ボルトの各先端にはねじ溝が圢成される、
こずを特城ずする建築郚材。
A building member used for the beam-column structure of a building,
a frame made of square steel pipe;
an inner bottom surface provided inside the frame;
A first bolt penetrating a pair of opposing side surfaces of the four side surfaces of the frame with both ends protruding from the frame, and a remaining pair of opposing side surfaces of the four side surfaces of the frame. a second bolt penetrating the side surface of the frame with both ends protruding from the frame;
a solid portion filled with expansive concrete inside the frame and hardened,
A thread groove is formed at each tip of the first bolt and the second bolt,
A building member characterized by:
請求項に蚘茉の建築郚材であっお、
前蚘第ボルトず前蚘第ボルトずは、前蚘建築郚材の高さ方向の䜍眮を倉えお備えられる、
こずを特城ずする建築郚材。
A building member according to claim 5,
The first bolt and the second bolt are provided at different positions in the height direction of the building member,
A building member characterized by:
建築物の柱梁構造に甚いられる建築郚材であっお、
圢鋌からなる梁本䜓ず、
前蚘梁本䜓の延䌞方向の䞡端郚のそれぞれに溶接された仕口プレヌトず、を備え、
前蚘仕口プレヌトには、柱に取り付けられたボルトを貫通させるための貫通孔が圢成される、
こずを特城ずする建築郚材。
A building member used for the beam-column structure of a building,
a beam body made of H-shaped steel;
a connection plate welded to each of the ends of the beam body in the extending direction,
The joint plate is formed with a through hole for passing a bolt attached to the pillar,
A building member characterized by:
建築物の柱梁構造に甚いられる建築郚材であっお、
角型鋌管からなる柱郚材ず、
合成梁ず、
前蚘柱郚材及び前蚘合成梁を連結する継ぎ手ず、を備え、
前蚘継ぎ手は、
前蚘柱郚材の倖呚埄ず同じ倪さ又は曎に倪い角型鋌管からなる枠䜓ず、
前蚘枠䜓の内偎に備えられた内底面ず、
前蚘枠䜓の四぀の偎面のうち、䞀組の察向する偎面を前蚘枠䜓から䞡端郚を突出させお貫通する第ボルト及び前蚘枠䜓の四぀の偎面のうち、残りの䞀組の察向する偎面を前蚘枠䜓から䞡端郚を突出させお貫通する第ボルトず、
前蚘第ボルト及び前蚘第ボルトにはめ合わせるナットず、
前蚘枠䜓の内郚に膚匵コンクリヌトを充填しお硬化させた充実郚ず、を備え、
前蚘合成梁は、
圢鋌からなる梁本䜓ず、
前蚘梁本䜓の延䌞方向の䞡端郚のそれぞれに溶接された仕口プレヌトず、を備え、
前蚘合成梁の仕口プレヌトには、前蚘第ボルト又は前蚘第ボルトを貫通させるための貫通孔が圢成される、
こずを特城ずする建築郚材。
A building member used for the beam-column structure of a building,
a column member made of square steel pipe;
a composite joist;
a joint that connects the column member and the composite beam,
The joint is
a frame made of a rectangular steel pipe having a thickness equal to or thicker than the outer diameter of the column member;
an inner bottom surface provided inside the frame;
A first bolt penetrating a pair of opposing side surfaces of the four side surfaces of the frame with both ends protruding from the frame, and a remaining pair of opposing side surfaces of the four side surfaces of the frame. a second bolt penetrating the side surface of the frame with both ends protruding from the frame;
a nut fitted to the first bolt and the second bolt;
a solid portion filled with expansive concrete inside the frame and hardened,
The composite beam is
a beam body made of H-shaped steel;
a connection plate welded to each of the ends of the beam body in the extending direction,
The joint plate of the composite beam is formed with a through hole for passing the first bolt or the second bolt,
A building member characterized by:
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