JP2011122317A - Structure of reinforced concrete construction member - Google Patents

Structure of reinforced concrete construction member Download PDF

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JP2011122317A
JP2011122317A JP2009279258A JP2009279258A JP2011122317A JP 2011122317 A JP2011122317 A JP 2011122317A JP 2009279258 A JP2009279258 A JP 2009279258A JP 2009279258 A JP2009279258 A JP 2009279258A JP 2011122317 A JP2011122317 A JP 2011122317A
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main
muscle
core
joint
reinforcement
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JP5459773B2 (en
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Makoto Kayashima
誠 萱嶋
Kazuhiro Kaneda
和浩 金田
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Taisei Corp
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<P>PROBLEM TO BE SOLVED: To provide a reinforced concrete construction member, which can suppress an increase in construction costs even using a mechanical joint. <P>SOLUTION: A column 10 includes main reinforcements 11 and 12 which are arranged with their ends butting against each other in a joint portion 101, and two types of shear reinforcements 13 and 20. The main reinforcements 11 and 12 comprise the first main reinforcement 11 which is joined by means of the mechanical joint 113, and the second main reinforcement 12 which is not joined by means of the mechanical joint. The joint portion 101 of the column 10 is shear-reinforced with a core reinforcement 20 alone; a general portion 102 except the joint portion 101 is shear-reinforced with a hoop 13. According to the invention, since the core reinforcement 20 is not locked to the first main reinforcement 11, a covering depth can be secured without an increase in the cross-sectional area of the column 10 even using the mechanical joint 113 for the first main reinforcement 11; and the increase of the construction cost can be suppressed. <P>COPYRIGHT: (C)2011,JPO&INPIT

Description

本発明は、鉄筋コンクリート造部材の構造に関する。詳しくは、柱や梁などの鉄筋コンクリート造部材の主筋の継手部の構造に関する。   The present invention relates to a structure of a reinforced concrete member. In detail, it is related with the structure of the joint part of the main reinforcement of reinforced concrete members, such as a column and a beam.

従来より、鉄筋コンクリート造の柱梁架構では、柱や梁の主筋を鉛直あるいは水平の在軸方向に連続させて、長期荷重および短期荷重に対して必要な剛性および耐力を確保している。また、以上の主筋の周囲には、全長に亘って所定間隔で、せん断補強筋が配されている。   2. Description of the Related Art Conventionally, in reinforced concrete column beam structures, columns and beam main bars are continuous in the vertical or horizontal axis direction to ensure the necessary rigidity and proof strength for long-term loads and short-term loads. Further, around the above main bars, shear reinforcement bars are arranged at predetermined intervals over the entire length.

近年、鉄筋やコンクリートの高強度化が進み、高層建物ないし超高層建物にもRC構造が採用されるようになっている。このような建物では、現場の施工性を高めるため、柱や梁などの部材をプレキャストコンクリート構造とし、この部材の主筋同士を機械式継手で接合することが多い。
例えば、柱の主筋には、一般の建物よりも高強度あるいは太径の同一種類の鉄筋材が用いられ、これらの鉄筋同士は、モルタル充填式やねじ固定式などの機械式継手で接合される(例えば、特許文献1参照)。
In recent years, strengthening of reinforcing bars and concrete has progressed, and RC structures have been adopted for high-rise buildings or super-high-rise buildings. In such a building, in order to improve workability at the site, members such as columns and beams are often made of a precast concrete structure, and the main bars of these members are often joined by mechanical joints.
For example, the same type of reinforcing bars with higher strength or larger diameter than ordinary buildings are used for the main reinforcing bars of the columns, and these reinforcing bars are joined by mechanical joints such as mortar filling type and screw fixing type. (For example, refer to Patent Document 1).

モルタル充填式の継手を用いる場合、スリーブの両端に鉄筋を挿入し、スリーブ内にモルタルを充填することにより、鉄筋同士を接合する。一方、ねじ固定式の継手を用いる場合、スリーブの両端に鉄筋を挿入し、スリーブに取り付けたねじを締め付けることにより接合する。   When using a mortar filling type joint, reinforcing bars are joined to each other by inserting reinforcing bars into both ends of the sleeve and filling the sleeve with mortar. On the other hand, when using a screw-fixed joint, rebars are inserted into both ends of the sleeve and joined by tightening screws attached to the sleeve.

特開2002−356953号公報JP 2002-356953 A

しかしながら、上記の機械式継手では、スリーブの外径は鉄筋径よりも大きくなるため、スリーブを外側から拘束するためには、他よりも一回り大きいせん断補強筋を設ける必要があった。よって、かぶり厚を確保するために、継手部分に合わせて断面寸法を全長に亘って大きくする必要があり、構造上、必要以上に大きい部材になって、コンクリート量や鉄筋量が増大し、施工コストも高くなる虞があった。
そこで、継手部にせん断補強筋を設けず、この継手部の両脇にせん断補強筋を集中配置することで、断面寸法を増大させることなく機械式継手を用いる手法が考えられる。しかしながら、この手法では、継手部がせん断補強筋のない無筋コンクリートとなり、ひび割れが発生しやすくなって、継手部の耐力を確保できない虞があった。
However, in the mechanical joint described above, the outer diameter of the sleeve is larger than the diameter of the reinforcing bar. Therefore, in order to restrain the sleeve from the outside, it is necessary to provide a shear reinforcing bar that is slightly larger than the other. Therefore, in order to secure the cover thickness, it is necessary to increase the cross-sectional dimension over the entire length in accordance with the joint part, and the structure becomes a member larger than necessary, and the amount of concrete and rebar increases, and the construction There was a risk that the cost would also increase.
In view of this, it is conceivable to use a mechanical joint without increasing the cross-sectional dimension by providing a shear reinforcement bar centrally on both sides of the joint part without providing the joint part with a shear reinforcement bar. However, with this method, the joint portion becomes unreinforced concrete without a shear reinforcement, and cracks are likely to occur, and the strength of the joint portion may not be ensured.

本発明は、機械式継手を用いても、継手部の耐力を確保でき、かつ、施工コストが増大するのを抑制できる鉄筋コンクリート造部材の構造を提供することを目的とする。   An object of this invention is to provide the structure of the reinforced concrete member which can ensure the yield strength of a joint part and can suppress that construction cost increases even if it uses a mechanical joint.

請求項1に記載の鉄筋コンクリート造部材の構造は、継手部で端部が突き合わされた状態で配される主筋と、2種類以上のせん断補強筋と、を備える鉄筋コンクリート造部材の構造であって、前記主筋は、機械式継手で接合される第1主筋と、当該機械式継手で接合されない第2主筋と、からなり、前記鉄筋コンクリート造部材の継手部は、中子筋のみでせん断補強され、前記鉄筋コンクリート造部材の継手部以外の部分は、外周筋でせん断補強されることを特徴とする。   The structure of the reinforced concrete member according to claim 1 is a structure of a reinforced concrete member comprising a main reinforcing bar arranged in a state in which the end is abutted at the joint part, and two or more kinds of shear reinforcing bars, The main reinforcement is composed of a first main reinforcement joined by a mechanical joint and a second principal reinforcement not joined by the mechanical joint, and the joint portion of the reinforced concrete member is shear-reinforced only by a core reinforcement, The portion other than the joint portion of the reinforced concrete member is shear-reinforced by the outer periphery reinforcement.

ここで、主筋の材質としては、例えば、SD345、SD390、SD490、SD590、およびSD685などが挙げられる。
また、主筋の呼び径としては、スリーブの大きさを考慮すると、例えば、D25、D29、D32、D35、D38、D41、D51などが挙げられる。
また、第2主筋を突き合わせる場合、2本の鉄筋の端面同士を当接させてもよいし、これら端面同士の間に隙間を形成してもよい。
Here, examples of the material of the main muscle include SD345, SD390, SD490, SD590, and SD685.
In addition, the nominal diameter of the main muscle includes, for example, D25, D29, D32, D35, D38, D41, and D51 in consideration of the size of the sleeve.
Moreover, when a 2nd main reinforcement is faced | matched, the end surfaces of two reinforcing bars may be contact | abutted, and a clearance gap may be formed between these end surfaces.

この発明によれば、第1主筋のみを機械式継手により接合したので、継手箇所を削減できるから、施工誤差を吸収できるうえに、施工コストを低減できる。また、継手部のコンクリートの充填性を確保でき、施工性を向上できる。   According to this invention, since only the 1st main reinforcement was joined by the mechanical joint, since a joint location can be reduced, a construction error can be absorbed and construction cost can be reduced. Moreover, the filling property of the concrete of a joint part can be ensured, and workability can be improved.

さらに、継手部には、せん断補強筋として、第1主筋および第2主筋を囲む外周補強筋ではなく、第2主筋のみをせん断補強する中子筋を設けた。よって、中子筋を第1主筋に係止させないので、第1主筋に機械式継手を用いても、柱の断面積を従来よりも外周筋の分だけ小さくしてかぶり厚さを確保でき、施工コストが増大するのを抑制できる。
また、継手部に過大な力が作用しても、継手部では中子筋がせん断補強筋として機能するため、柱が継手部で損傷するのを防止でき、地震時応力に対して継手部の耐力を確保できる。
Further, the joint portion is provided with a core reinforcement that shears and reinforces only the second main reinforcement, not the outer peripheral reinforcement surrounding the first and second main reinforcements, as the shear reinforcement. Therefore, since the core bar is not locked to the first main bar, even if a mechanical joint is used for the first main bar, the cross-sectional area of the column can be made smaller by the amount of the outer side bar than before, and the cover thickness can be secured. An increase in construction costs can be suppressed.
Even if an excessive force is applied to the joint, the core bar functions as a shear reinforcement in the joint, so that the column can be prevented from being damaged at the joint. Yield strength can be secured.

また、鉄筋を地上で先組みしておき、この先組みした鉄筋をクレーンで揚重して、所定位置に取り付けるようにすれば、施工速度も向上できる。   In addition, if the reinforcing bars are pre-assembled on the ground, and the pre-assembled reinforcing bars are lifted by a crane and attached to a predetermined position, the construction speed can be improved.

請求項2に記載の鉄筋コンクリート造部材の構造は、前記第1主筋は、前記部材断面の四隅に配置され、前記第2主筋は、互いに接合されないことを特徴とする。   The structure of the reinforced concrete member according to claim 2 is characterized in that the first main bars are arranged at the four corners of the member cross section, and the second main bars are not joined to each other.

この発明によれば、柱や梁などの鉄筋コンクリート造の部材の四隅に第1主筋を配置したので、平面視でのX、Y両方向に対して、曲げ応力を効果的に負担できる。また、第2主筋は、部材の曲げ応力を考慮して任意の位置で突合せればよいが、四隅の主筋だけで必要な曲げを負担できる箇所で突き合わせれば、第2主筋同士の接合を省略できる。また、主筋同士は必ずしも当接する必要はなく、隙間があってもよい。   According to this invention, since the first main bars are arranged at the four corners of the reinforced concrete members such as columns and beams, the bending stress can be effectively borne in both the X and Y directions in plan view. In addition, the second main reinforcing bar may be abutted at any position in consideration of the bending stress of the member, but if it is abutted at a place where the necessary bending can be borne only by the main reinforcing elements at the four corners, the joining of the second main reinforcing bars is omitted. it can. Further, the main bars do not necessarily have to contact each other, and there may be a gap.

請求項3に記載の鉄筋コンクリート造部材の構造は、前記第2主筋の突き合わる端部には、係止部が設けられることを特徴とする。   The structure of the reinforced concrete member according to claim 3 is characterized in that a locking portion is provided at an end portion where the second main reinforcing bar abuts.

この発明によれば、第2主筋の突き合わせる端部に係止部を設けたので、中子筋が第2主筋から脱落するのを防止できる。   According to this invention, since the latching | locking part was provided in the edge part which the 2nd main muscles face, it can prevent that a core muscle falls from the 2nd main muscle.

請求項4に記載の鉄筋コンクリート造部材の構造は、前記鉄筋コンクリート造部材は、前記前記継手部に貫通孔が設けられた梁であり、前記中子筋は、前記貫通孔の両側に配された開口補強筋であることを特徴とする。   The structure of the reinforced concrete member according to claim 4, wherein the reinforced concrete member is a beam in which a through hole is provided in the joint portion, and the core bars are openings arranged on both sides of the through hole. It is a reinforcing bar.

機械式継手のスリーブが配されて他の部位より剛性が高い位置に貫通孔を設け、その両側に開口補強筋として中子筋を配することで、この中子筋でせん断補強と開口補強とを兼用する。よって、剛性差に起因して応力が不連続になり易い継手部に、損傷が集まったり、ひび割れが拡幅したりするのを防ぐことができるとともに、意匠設計や設備配管の自由度が向上する。   By providing a through hole in a position where the sleeve of the mechanical joint is arranged and having rigidity higher than that of other parts, and arranging core bars as opening reinforcing bars on both sides thereof, shear reinforcement and opening reinforcing Is also used. Therefore, it is possible to prevent damage from being gathered in the joint portion where the stress is likely to be discontinuous due to the difference in rigidity and the cracks from being widened, and the degree of freedom in design design and equipment piping is improved.

本発明によれば、継手部には、せん断補強筋として、第1主筋および第2主筋を囲む外周補強筋ではなく、第2主筋のみをせん断補強する中子筋を設けた。よって、中子筋を第1主筋に係止させないので、第1主筋に機械式継手を用いても、柱の断面積を大きくすることなくかぶり厚さを確保でき、施工コストが増大するのを抑制できる。また、主筋に想定以上の過大な引張力が作用しても、継手部では中子筋がせん断補強筋として機能するため、柱が継手部で損傷するのを防止でき、地震時応力に対して継手部の耐力を確保できる。   According to the present invention, the joint portion is provided with a core reinforcement that shears and reinforces only the second main reinforcement, not the outer peripheral reinforcement surrounding the first and second main reinforcements, as the shear reinforcement. Therefore, since the core bar is not locked to the first main bar, even if a mechanical joint is used for the first main bar, the cover thickness can be secured without increasing the cross-sectional area of the column, and the construction cost is increased. Can be suppressed. In addition, even if an excessive tensile force is applied to the main bars, the core bars function as shear reinforcement bars in the joints, so that the columns can be prevented from being damaged at the joints. The joint strength can be secured.

本発明の第1実施形態に係る鉄筋コンクリート造部材としての柱のおよび縦断面図である。It is a longitudinal section of a column as a reinforced concrete member according to the first embodiment of the present invention. 本発明の第2実施形態に係る柱の横断面図および縦断面図である。It is the cross-sectional view and longitudinal cross-sectional view of the pillar which concern on 2nd Embodiment of this invention. 本発明の第3実施形態に係る柱の横断面図である。It is a cross-sectional view of the pillar which concerns on 3rd Embodiment of this invention. 本発明の第4実施形態に係る柱の横断面図である。It is a cross-sectional view of the pillar which concerns on 4th Embodiment of this invention.

以下、本発明の各実施形態について、図面を参照しながら説明する。なお、以下の実施形態の説明にあたって、同一構成要件については同一符号を付し、その説明を省略もしくは簡略化する。
〔第1実施形態〕
図1は、本発明の第1実施形態に係る鉄筋コンクリート造部材としての柱10の横断面図および縦断面図である。
柱10は、鉛直方向に延びる四角柱状の柱である。この柱10の4つの側面を10A、10B、10C、10Dとする。
Hereinafter, embodiments of the present invention will be described with reference to the drawings. In the following description of the embodiments, the same constituent elements are denoted by the same reference numerals, and the description thereof is omitted or simplified.
[First Embodiment]
FIG. 1 is a transverse sectional view and a longitudinal sectional view of a column 10 as a reinforced concrete member according to a first embodiment of the present invention.
The column 10 is a quadrangular columnar column extending in the vertical direction. The four side surfaces of the pillar 10 are 10A, 10B, 10C, and 10D.

柱10は、鉛直方向に延びる複数本の主筋11、12と、鉛直方向に所定間隔おきに設けられて主筋11に係止する複数のせん断補強筋としてのフープ筋13および中子筋20と、を備える。
主筋11、12は、柱10の断面の四隅に配置された4本の第1主筋11と、隣り合う第1主筋11同士の間に柱10の側面10A〜10Dに沿って3本ずつ配置された計12本の第2主筋12と、からなる。この第2主筋12のうち、側面10Aに沿って配置されたものを第2主筋12Aとし、側面10Bに沿って配置されたものを第2主筋12Bとし、側面10Cに沿って配置されたものを第2主筋12Cとし、側面10Dに沿って配置されたものを第2主筋12Dとする。
The column 10 includes a plurality of main bars 11 and 12 extending in the vertical direction, a plurality of hoop bars 13 and core bars 20 serving as shear reinforcement bars provided at predetermined intervals in the vertical direction and locked to the main bar 11, Is provided.
The main bars 11 and 12 are arranged three by four along the side surfaces 10A to 10D of the column 10 between the four first main bars 11 arranged at the four corners of the cross section of the column 10 and the adjacent first main bars 11. A total of 12 second main muscles 12. Of the second main muscles 12, the one arranged along the side surface 10A is the second main muscle 12A, the one arranged along the side surface 10B is the second main muscle 12B, and the one arranged along the side surface 10C. The second main muscle 12C is the one arranged along the side surface 10D as the second main muscle 12D.

第1主筋11は、第2主筋12よりも太径であり、上階側の鉄筋111と下階側の鉄筋112とが突き合わされて機械式継手113で接合されたものである。具体的には、機械式継手113は、円筒形状であり、この機械式継手113の一端側には、上階側の鉄筋111の端部が挿入され、他端側には、下階側の鉄筋112の端部が挿入されている。   The first main reinforcing bar 11 has a diameter larger than that of the second main reinforcing bar 12, and an upper floor side reinforcing bar 111 and a lower floor side reinforcing bar 112 are abutted and joined by a mechanical joint 113. Specifically, the mechanical joint 113 has a cylindrical shape, and the end of the upper floor side reinforcing bar 111 is inserted into one end side of the mechanical joint 113, and the lower floor side has the other end side. The end of the reinforcing bar 112 is inserted.

一方、第2主筋12は、上階側の鉄筋121と下階側の鉄筋122とが突き合わされた状態であり、溶接や圧接などで互いに接合されていない。第2主筋12の突き合わされる端部には、係止部としてのプレート123が溶接されている。これら第2主筋12の突き合わせ位置は、ほぼ同じ高さとなっている。   On the other hand, the second main reinforcing bar 12 is a state in which the upper floor side reinforcing bar 121 and the lower floor side reinforcing bar 122 are in contact with each other, and are not joined to each other by welding or pressure welding. A plate 123 serving as a locking portion is welded to the end of the second main reinforcement 12 that is abutted. The butting positions of these second main bars 12 are substantially the same height.

ここで、柱10のうち第1主筋11の機械式継手113が設けられた部分を継手部101とし、この継手部101以外の部分を一般部102とする。
この継手部101は、施工性の観点から、床レベルより1〜1.5m程度上に位置しており、第1主筋11の継手位置および第2主筋12の突き合わせ位置は、この継手部101に設けられている。
Here, a portion of the column 10 where the mechanical joint 113 of the first main bar 11 is provided is referred to as a joint portion 101, and a portion other than the joint portion 101 is referred to as a general portion 102.
The joint portion 101 is located about 1 to 1.5 m above the floor level from the viewpoint of workability, and the joint position of the first main bar 11 and the butting position of the second main bar 12 are in the joint part 101. Is provided.

一般部102には、第1主筋11および第2主筋12を囲んでせん断補強する外周補強筋としてのフープ筋13が設けられる。一方、継手部101には、第2主筋12のみをせん断補強する中子筋20が設けられる。   The general portion 102 is provided with a hoop bar 13 as an outer peripheral bar that surrounds and reinforced the first main bar 11 and the second main bar 12. On the other hand, the joint portion 101 is provided with a core bar 20 that shear-reinforces only the second main bar 12.

フープ筋13は、矩形枠状のせん断補強筋であり、第1主筋11および第2主筋12を外側から囲むように配置されている。すなわち、各第1主筋11は、フープ筋13の四隅に配置され、第2主筋12は、フープ筋13の各辺に沿って配置される。   The hoop bar 13 is a rectangular frame-shaped shear reinforcement bar, and is arranged so as to surround the first main bar 11 and the second main bar 12 from the outside. That is, each first main muscle 11 is arranged at the four corners of the hoop muscle 13, and the second main muscle 12 is arranged along each side of the hoop muscle 13.

中子筋20は、4つの中子筋21、22、23、24で構成される。
中子筋21は、矩形枠状であり、互いに対向する第2主筋12A、12Cを外側から囲むように配置される。すなわち、両端側の第2主筋12A、12Cは、中子筋21の角部に配置され、中央の第2主筋12A、12Cは、中子筋21の辺に沿って配置される。
中子筋22は、棒状であり、この中子筋22の一端側は、中央の第2主筋12Aに係止し、他端側は、中央の第2主筋12Cに係止している。
The core muscle 20 includes four core muscles 21, 22, 23, and 24.
The core muscle 21 has a rectangular frame shape, and is disposed so as to surround the second principal muscles 12A and 12C facing each other from the outside. That is, the second main muscles 12 </ b> A and 12 </ b> C on both ends are disposed at the corners of the core muscle 21, and the central second main muscles 12 </ b> A and 12 </ b> C are disposed along the side of the core muscle 21.
The core muscle 22 has a rod shape, and one end side of the core muscle 22 is locked to the central second main muscle 12A, and the other end side is locked to the central second main muscle 12C.

中子筋23は、矩形枠状であり、互いに対向する第2主筋12B、12Dを外側から囲むように配置される。すなわち、両端側の第2主筋12B、12Dは、中子筋23の角部に配置され、中央の第2主筋12B、12Dは、中子筋23の辺に沿って配置される。
中子筋24は、棒状であり、この中子筋24の一端側は、中央の第2主筋12Bに係止し、他端側は、中央の第2主筋12Dに係止している。
The core muscle 23 has a rectangular frame shape, and is disposed so as to surround the second principal muscles 12B and 12D facing each other from the outside. That is, the second principal muscles 12B and 12D on both ends are disposed at the corners of the core muscle 23, and the central second principal muscles 12B and 12D are disposed along the sides of the core muscle 23.
The core muscle 24 has a rod shape, and one end side of the core muscle 24 is locked to the central second main muscle 12B, and the other end side is locked to the central second main muscle 12D.

本実施形態によれば、以下のような効果がある。
(1)第1主筋11を第2主筋12に比べて太径とすることで、接合される主筋の比率を高めることができ、柱主筋の応力が確実に伝達されて、継手位置での断面の曲げ耐力を大きくできる。よって、地震時に曲げ応力が想定以上に過大となっても、従来のように全ての主筋に同じ強度の鉄筋を用いた場合に比べて、曲げ応力を第1主筋11で確実に負担できる。
According to this embodiment, there are the following effects.
(1) By making the 1st main reinforcement 11 thicker than the 2nd main reinforcement 12, the ratio of the main reinforcement joined can be raised, the stress of a column main reinforcement is transmitted reliably, and the section in a joint position The bending strength of can be increased. Therefore, even if the bending stress becomes excessive than expected during an earthquake, the bending stress can be reliably borne by the first main bar 11 as compared to the case where reinforcing bars having the same strength are used for all main bars as in the past.

また、第1主筋11のみを機械式継手113により接合したので、継手箇所を削減できるから、施工誤差を吸収できるうえに、施工コストを低減できる。また、継手部のコンクリートの充填性を確保でき、施工性を向上できる。   Moreover, since only the 1st main reinforcement 11 was joined by the mechanical coupling 113, since a joint location can be reduced, a construction error can be absorbed and construction cost can be reduced. Moreover, the filling property of the concrete of a joint part can be ensured, and workability can be improved.

さらに、継手部101には、せん断補強筋として、外周補強筋であるフープ筋13の代わりに、第2主筋12のみをせん断補強する中子筋20を設けた。よって、中子筋20を第1主筋11に係止させないので、第1主筋11に機械式継手113を用いても、柱10の断面積を大きくすることなくかぶり厚さを確保でき、施工コストが増大するのを抑制できる。
また、継手部101に想定以上の過大な引張力が作用しても、継手部101では中子筋20がせん断補強筋として機能するため、柱10が継手部101で損傷するのを防止でき、地震時応力に対して継手部101の耐力を確保できる。
Furthermore, the joint part 101 is provided with a core bar 20 that shears and reinforces only the second main bar 12 instead of the hoop bar 13 that is an outer peripheral bar as a shear bar. Therefore, since the core reinforcement 20 is not locked to the first main reinforcement 11, even if the mechanical joint 113 is used for the first main reinforcement 11, the cover thickness can be secured without increasing the cross-sectional area of the column 10, and the construction cost can be secured. Can be prevented from increasing.
Further, even if an excessive tensile force more than expected is applied to the joint part 101, the core part 20 functions as a shear reinforcement in the joint part 101, so that the column 10 can be prevented from being damaged by the joint part 101. The proof stress of the joint part 101 can be ensured against the stress at the time of earthquake.

(2)柱10の四隅に第1主筋11を配置したので、平面視でのX、Y両方向に対して、曲げ応力を効果的に負担できる。   (2) Since the first main bars 11 are arranged at the four corners of the column 10, bending stress can be effectively borne in both the X and Y directions in plan view.

(3)第2主筋12の突き合わせる端部にプレート123を設けたので、中子筋20が第2主筋12から脱落するのを防止できる。   (3) Since the plate 123 is provided at the end portion where the second main muscle 12 abuts, the core muscle 20 can be prevented from falling off the second main muscle 12.

〔第2実施形態〕
図2は、本発明の第2実施形態に係る柱10の横断面図および縦断面図である。
本実施形態では、中子筋30の構成が、第1実施形態と異なる。
すなわち、中子筋30は、6つの棒状の中子筋31、32、33、34、35、36で構成される。
[Second Embodiment]
FIG. 2 is a transverse sectional view and a longitudinal sectional view of a column 10 according to the second embodiment of the present invention.
In the present embodiment, the configuration of the core muscle 30 is different from that of the first embodiment.
That is, the core muscle 30 includes six rod-shaped core muscles 31, 32, 33, 34, 35, and 36.

中子筋31〜33の一端側は、それぞれ、第2主筋12Aに係止し、他端側は、この第2主筋12Aに対向する第2主筋12Cに係止している。
中子筋34〜36の一端側は、それぞれ、第2主筋12Bに係止し、他端側は、この第2主筋12Bに対向する第2主筋12Dに係止している。
One end side of the core muscles 31 to 33 is locked to the second main muscle 12A, and the other end side is locked to the second main muscle 12C facing the second main muscle 12A.
One end side of the core muscles 34 to 36 is locked to the second main muscle 12B, and the other end side is locked to the second main muscle 12D facing the second main muscle 12B.

本実施形態によれば、上述の(1)〜(3)と同様の効果がある。   According to this embodiment, the same effects as the above (1) to (3) are obtained.

〔第3実施形態〕
図3(a)は、本発明の第3実施形態に係る柱10の横断面図である。
本実施形態では、第2主筋12A〜12Dの本数、および、中子筋40の形状および配置が、第1実施形態と異なる。
すなわち、第2主筋12A〜12Dは、柱10の側面10A〜10Dに沿って2本ずつ計8本配置されている。
[Third Embodiment]
Fig.3 (a) is a cross-sectional view of the pillar 10 which concerns on 3rd Embodiment of this invention.
In the present embodiment, the number of the second main muscles 12A to 12D and the shape and arrangement of the core muscle 40 are different from those in the first embodiment.
That is, a total of eight second principal muscles 12A to 12D are arranged along the side surfaces 10A to 10D of the column 10 by two.

また、中子筋40は、2つの中子筋41、42で構成される。
中子筋41は、矩形枠状であり、互いに対向する第2主筋12A、12Cを外側から囲むように配置される。すなわち、第2主筋12A、12Cは、中子筋41の角部に配置される。
中子筋42は、矩形枠状であり、互いに対向する第2主筋12B、12Dを外側から囲むように配置される。すなわち、第2主筋12B、12Dは、中子筋42の角部に配置される。
The core muscle 40 is composed of two core muscles 41 and 42.
The core muscle 41 has a rectangular frame shape, and is disposed so as to surround the second principal muscles 12A and 12C facing each other from the outside. That is, the second main muscles 12 </ b> A and 12 </ b> C are arranged at the corners of the core muscle 41.
The core muscle 42 has a rectangular frame shape, and is disposed so as to surround the second principal muscles 12B and 12D facing each other from the outside. That is, the second main muscles 12 </ b> B and 12 </ b> D are arranged at the corners of the core muscle 42.

これに限らず、図3(b)に示すように、中子筋40を1つの中子筋43で構成してもよい。
具体的には、中子筋43は、八角形状であり、第2主筋12A〜12Dを外側から囲むように配置される。すなわち、第2主筋12A〜12Dは、中子筋43の各角部に配置される。
Not limited to this, as shown in FIG. 3B, the core muscle 40 may be configured by one core muscle 43.
Specifically, the core muscle 43 has an octagonal shape and is arranged so as to surround the second main muscles 12A to 12D from the outside. That is, the second main muscles 12 </ b> A to 12 </ b> D are arranged at each corner of the core muscle 43.

また、図3(c)に示すように、中子筋40を2つの中子筋44、45で構成してもよい。
具体的には、中子筋44は、矩形枠状であり、図3(c)中左上に位置する第1主筋11と、図3(c)中右下に位置する第1主筋11と、を一組とすると、これら一組の第1主筋11に隣接する第2主筋12A〜12Dを外側から囲むように配置される。すなわち、第2主筋12A〜12Dは、中子筋44の各角部に配置される。
また、中子筋45は、矩形枠状であり、図3(c)中右上に位置する第1主筋11と、図3(c)中左下に位置する第1主筋11と、を一組とすると、これら一組の第1主筋11に隣接する第2主筋12A〜12Dを外側から囲むように配置される。すなわち、第2主筋12A〜12Dは、中子筋45の各角部に配置される。
Further, as shown in FIG. 3C, the core muscle 40 may be composed of two core muscles 44 and 45.
Specifically, the core muscle 44 has a rectangular frame shape, the first main muscle 11 located at the upper left in FIG. 3C, the first main muscle 11 located at the lower right in FIG. 3C, Are set so as to surround the second main bars 12A to 12D adjacent to the set of first main bars 11 from the outside. That is, the second main muscles 12 </ b> A to 12 </ b> D are arranged at each corner of the core muscle 44.
Further, the core muscle 45 has a rectangular frame shape, and the first main muscle 11 located at the upper right in FIG. 3C and the first main muscle 11 located at the lower left in FIG. Then, it arrange | positions so that 2nd main muscle 12A-12D adjacent to these 1st set 1st main muscles 11 may be enclosed from an outer side. In other words, the second main muscles 12 </ b> A to 12 </ b> D are disposed at each corner of the core muscle 45.

本実施形態によれば、上述の(1)〜(3)と同様の効果がある。   According to this embodiment, the same effects as the above (1) to (3) are obtained.

〔第4実施形態〕
図4は、本発明の第4実施形態に係る柱10の横断面図である。
本実施形態では、第2主筋12A〜12Dの本数、および、中子筋50の形状および配置が、第1実施形態と異なる。
すなわち、第2主筋12A〜12Dは、柱10の側面10A〜10Dに沿って1本ずつ計4本配置されている。
また、中子筋50は、2つの棒状の中子筋51、52で構成される。
中子筋51の一端側は、第2主筋12Aに係止し、他端側は、この第2主筋12Aに対向する第2主筋12Cに係止している。
中子筋52の一端側は、第2主筋12Bに係止し、他端側は、この第2主筋12Bに対向する第2主筋12Dに係止している。
[Fourth Embodiment]
FIG. 4 is a cross-sectional view of the pillar 10 according to the fourth embodiment of the present invention.
In the present embodiment, the number of the second main muscles 12A to 12D and the shape and arrangement of the core muscle 50 are different from those in the first embodiment.
That is, a total of four second main bars 12A to 12D are arranged along the side surfaces 10A to 10D of the column 10 one by one.
The core muscle 50 is composed of two rod-shaped core muscles 51 and 52.
One end side of the core muscle 51 is locked to the second main muscle 12A, and the other end side is locked to the second main muscle 12C facing the second main muscle 12A.
One end side of the core muscle 52 is locked to the second main muscle 12B, and the other end side is locked to the second main muscle 12D facing the second main muscle 12B.

これに限らず、図4(b)に示すように、中子筋50を1つの中子筋53で構成してもよい。
具体的には、中子筋53は、矩形枠状であり、第2主筋12A〜12Dを外側から囲むように配置される。すなわち、第2主筋12A〜12Dは、中子筋53の各角部に配置される。
Not limited to this, as shown in FIG. 4B, the core muscle 50 may be composed of one core muscle 53.
Specifically, the core muscle 53 has a rectangular frame shape and is arranged so as to surround the second main muscles 12A to 12D from the outside. In other words, the second main muscles 12 </ b> A to 12 </ b> D are arranged at each corner of the core muscle 53.

本実施形態によれば、上述の(1)〜(3)と同様の効果がある。   According to this embodiment, the same effects as the above (1) to (3) are obtained.

なお、本発明は前記実施形態に限定されるものではなく、本発明の目的を達成できる範囲での変形、改良等は本発明に含まれるものである。
例えば、本実施形態では、柱10に本発明を適用したが、これに限らず、梁に本発明を適用してもよい。
また、本実施形態では、第1主筋11を4本配したが、これに限らず、第1主筋を5本以上配してもよい。
また、本実施形態では、第2主筋12の突き合わされる端部にプレート123を溶接したが、これに限らず、第2主筋の突き合わされる端部を瘤状としてもよいし、第2主筋がねじ鉄筋である場合には、この第2主筋の突き合わされる端部にナットを螺合してもよい。
また、本実施形態では、第2主筋12の突き合わせ位置をほぼ同じとしたが、これに限らず、第2主筋同士の突き合わせ位置を千鳥にしてもよい。
It should be noted that the present invention is not limited to the above-described embodiment, and modifications, improvements, etc. within a scope that can achieve the object of the present invention are included in the present invention.
For example, in the present embodiment, the present invention is applied to the pillar 10, but the present invention is not limited thereto, and the present invention may be applied to a beam.
In the present embodiment, four first main bars 11 are arranged. However, the present invention is not limited to this, and five or more first main bars may be arranged.
Moreover, in this embodiment, although the plate 123 was welded to the edge part to which the 2nd principal muscle 12 is faced, not only this but the edge part to which the 2nd principal muscle is faced is good also as a knob shape, and the 2nd principal muscle. In the case where is a threaded reinforcing bar, a nut may be screwed onto the end of the second main reinforcing bar.
In this embodiment, the butting position of the second main muscles 12 is substantially the same. However, the present invention is not limited to this, and the butting positions of the second main muscles may be staggered.

10…柱
10A、10B、10C、10D…柱の側面
11…第1主筋
12、12A、12B、12C、12D…第2主筋
13…フープ筋(外周補強筋)
20〜24、30〜36、40〜45、50〜53…中子筋
101…継手部
102…一般部
111、112、121、122…鉄筋
113…機械式継手
123…プレート
DESCRIPTION OF SYMBOLS 10 ... Column 10A, 10B, 10C, 10D ... Side surface of column 11 ... 1st main reinforcement 12, 12A, 12B, 12C, 12D ... 2nd main reinforcement 13 ... Hoop reinforcement (outer periphery reinforcement)
20 to 24, 30 to 36, 40 to 45, 50 to 53 ... core rod 101 ... joint portion 102 ... general portion 111, 112, 121, 122 ... rebar 113 ... mechanical joint 123 ... plate

Claims (4)

継手部で端部が突き合わされた状態で配される主筋と、2種類以上のせん断補強筋と、を備える鉄筋コンクリート造部材の構造であって、
前記主筋は、機械式継手で接合される第1主筋と、当該機械式継手で接合されない第2主筋と、からなり、
前記鉄筋コンクリート造部材の継手部は、中子筋のみでせん断補強され、
前記鉄筋コンクリート造部材の継手部以外の部分は、外周筋でせん断補強されることを特徴とする鉄筋コンクリート造部材の構造。
A structure of a reinforced concrete member comprising a main bar arranged in a state in which the end part is abutted at a joint part, and two or more kinds of shear reinforcement bars,
The main bar is composed of a first main bar joined by a mechanical joint and a second main bar not joined by the mechanical joint,
The joint portion of the reinforced concrete member is shear reinforced only with core bars,
The structure of the reinforced concrete member is characterized in that a portion other than the joint portion of the reinforced concrete member is subjected to shear reinforcement with a peripheral reinforcement.
前記第1主筋は、前記部材断面の四隅に配置され、
前記第2主筋は、互いに接合されないことを特徴とする請求項1に記載の鉄筋コンクリート造部材の構造。
The first main bars are arranged at the four corners of the member cross section,
The structure of a reinforced concrete member according to claim 1, wherein the second main bars are not joined to each other.
前記第2主筋の突き合わされる端部には、係止部が設けられることを特徴とする請求項1または2に記載の鉄筋コンクリート造部材の構造。   The structure of a reinforced concrete member according to claim 1 or 2, wherein a locking portion is provided at an end portion of the second main reinforcing bar. 前記鉄筋コンクリート造部材は、前記前記継手部に貫通孔が設けられた梁であり、
前記中子筋は、前記貫通孔の両側に配された開口補強筋であることを特徴とする請求項1から3のいずれかに記載の鉄筋コンクリート造部材の構造。
The reinforced concrete member is a beam in which a through hole is provided in the joint portion,
The structure of a reinforced concrete member according to any one of claims 1 to 3, wherein the core bars are opening reinforcing bars arranged on both sides of the through hole.
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102758485A (en) * 2012-03-22 2012-10-31 中国建筑第四工程局有限公司 Anti-seismic beam-column joint column hoop fixing method and structure

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH10311087A (en) * 1997-05-09 1998-11-24 Kajima Corp Connecting method for columnar prefabricated reinforcements
JP2004131960A (en) * 2002-10-08 2004-04-30 Shimizu Corp Coupling structure of column main reinforcement

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH10311087A (en) * 1997-05-09 1998-11-24 Kajima Corp Connecting method for columnar prefabricated reinforcements
JP2004131960A (en) * 2002-10-08 2004-04-30 Shimizu Corp Coupling structure of column main reinforcement

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102758485A (en) * 2012-03-22 2012-10-31 中国建筑第四工程局有限公司 Anti-seismic beam-column joint column hoop fixing method and structure

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