CN203188379U - Steel reinforced concrete beam column joint adopting steel plates with holes above and below core area - Google Patents
Steel reinforced concrete beam column joint adopting steel plates with holes above and below core area Download PDFInfo
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- CN203188379U CN203188379U CN2013202044804U CN201320204480U CN203188379U CN 203188379 U CN203188379 U CN 203188379U CN 2013202044804 U CN2013202044804 U CN 2013202044804U CN 201320204480 U CN201320204480 U CN 201320204480U CN 203188379 U CN203188379 U CN 203188379U
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Abstract
The utility model relates to architectural structure beam column joints, in particular to a steel reinforced concrete beam column joint adopting steel plates with holes above and below a core area. The steel reinforced concrete beam column joint is composed of a columnar steel flange plate (1), a columnar steel web (2), a column horizontal stiffening steel plate (3), a column longitudinal bar (4), a column stirrup (5), an upper steel plate (13) with holes, a lower steel plate (14) with holes, column concrete (6), a beam type steel flange plate (7), a beam type steel web (8), a beam longitudinal bar (9), a beam stirrup (10) and beam concrete (11). The steel reinforced concrete beam column joint is arranged in the joint mode that the steel plates with the holes are arranged above and below the joint core area, namely the upper steel plate (13) with the holes and the lower steel plate (14) with the holes are arranged above and below the joint core area respectively, the upper steel plate (13) with the holes, the lower steel plate (14) with the holes and the beam type steel flange plate (7) are welded together through an upper groove welding line (15) and a lower groove welding line (16) respectively, and side faces of each steel plate with holes are welded together through an edge welding line (17).The steel reinforced concrete beam column joint is wide in application, and can be used in constructions and structures, which use the steel plates with the holes to replace the stirrup above and below the beam column joint core area, of the structural steel concrete structures.
Description
Technical field
The utility model relates to a kind of building structure beam column node, particularly relates to a kind of steel reinforced concrete beam column node that adopts steel plate with holes at core space up and down.
Background technology
Steel reinforced concrete structure (or claim steel reinforced concrete structure) is made of jointly the longitudinal reinforcement of hot rolling or welding shaped steel, colligation and horizontal stirrup, the concrete of building.In recent years, because steel reinforced concrete structure has the advantage of steel work and concrete structure concurrently, the bearing capacity height, anti-seismic performance is good, and can reduce characteristics such as construction costs, reduction of erection time, economical with materials, more and more be widely used among high-rise and the super highrise building.
" reinforced concrete composite structure tecnical regulations " (JGJ 138-2001) in China, among " steel reinforced concrete structure tecnical regulations " (YB 9082-2006), bean column node is by column type steel frange plate 1, column type steel web 2, the post level steel plate 3 of putting more energy into, post is indulged muscle 4, tie muscle 5, post concrete 6 and beam shaped steel frange plate 7, beam shaped steel web 8, beam is indulged muscle 9, beam stirrup 10, beam concrete 11 is formed, for the tie muscle 5 that can make joint cores passes beam shaped steel web 8 smoothly, open through hole 12 at web 8, allow the tie muscle pass this hole so that the stirrup closure is seen accompanying drawing 1-2.
Node is the key position that connects beam and column.The internal force of beam and column is by the node transmission, and the safe and reliable of node is the prerequisite that guarantees structural safety work.Why steel reinforced concrete beam column node has higher shear resistant capacity, be since steel plate under concrete parcel, the buckling problem that need not consider, the shearing at node place is born jointly by steel plate 3 ribs of putting more energy into of shaped steel web 2 and level in core space concrete 6, stirrup 5 and the post respectively, therefore, the shear-carrying capacity of steel reinforced concrete structure bean column node is greater than reinforced concrete structured beam post node and the pure steel structure bean column node shear-carrying capacity sum of same cross-sectional.
Regulation among " reinforced concrete composite structure tecnical regulations " (JGJ 138-2001), " steel reinforced concrete structure tecnical regulations " (YB 9082-2006) " when the reinforcing bar web part arranges the reinforcing bar through hole, the damaged rate in cross section should not surpass the web area 20% ".At present in actual engineering, it mainly is this form of architecture joints of recommending in the code requirement, in the manufacturing process of member, because perforate is less and the position needs accurately location, brought great inconvenience for the making of steel member, position of opening often and the job site actual conditions be not inconsistent, cause the extension of construction speed and the problems such as increase of construction costs.
Summary of the invention
The purpose of this utility model is to provide a kind of steel reinforced concrete beam column node that adopts steel plate with holes at core space up and down.This node solves traditional steel concrete bean column node in order to allow the tie muscle pass and perforate on the section steel beam web, the inconvenient problem of causing for structure manufacture and construction.
The purpose of this utility model is achieved through the following technical solutions:
Adopt the steel reinforced concrete beam column node of steel plate with holes up and down at core space, by column type steel frange plate, column type steel web, post level put more energy into the vertical muscle of steel plate, post, tie muscle, go up steel plate with holes, steel plate with holes, post concrete and the section steel beam edge of a wing, beam shaped steel web, the vertical muscle of beam, beam stirrup, beam concrete are formed down, this node is the joint form of arranging steel plate with holes in joint cores up and down; Namely arrange two steel plates with holes up and down up and down respectively in joint cores, go up steel plate with holes, following steel plate with holes and the section steel beam edge of a wing and weld together by last groove weld, following groove weld respectively,
Describedly adopt the steel reinforced concrete beam column node of steel plate with holes up and down at core space, described steel plate with holes welds together by edge weld between each side.
Advantage of the present utility model and effect are:
1. the reinforcing bar that will make stirrup when the utility model has saved construction earlier runs through the trouble of back bending forming or segmentation welding;
2. steel plate with holes can be welded on the last bottom flange of shaped steel short beam in advance about the utility model, saves the construction period, reduces construction cost.
3. the utility model is widely used, and all bean column node core spaces adopt steel plate with holes to replace building, the structure of the steel reinforced concrete structure of tie muscle all can up and down.
Description of drawings
Fig. 1 is China's " reinforced concrete composite structure tecnical regulations " (JGJ 138-2001), " steel reinforced concrete structure tecnical regulations " (YB 9082-2006) central sill column joint structure form;
Fig. 2 is bean column node section form among China's " reinforced concrete composite structure tecnical regulations " (JGJ 138-2001), " steel reinforced concrete structure tecnical regulations " (YB 9082-2006);
Fig. 3 is the utility model girder with rolled steel section en cased in concrete column joint structure form;
Fig. 4 is the utility model steel reinforced concrete beam column node section form;
Fig. 5 is the side form of steel plate with holes up and down of the present utility model;
Fig. 6 is the structural form of the welding on steel plate with holes up and down of the present utility model and the section steel beam edge of a wing;
The structural form of Fig. 7 for welding between each side of steel plate with holes of the present utility model.
The specific embodiment
Below in conjunction with the accompanying drawing illustrated embodiment the utility model is elaborated.
The utility model solves traditional steel concrete bean column node in order to allow the tie muscle pass and perforate on the section steel beam web, the inconvenient problem of causing for structure manufacture and construction.It is a kind of special shape of steel reinforced concrete structure bean column node that core space replaces the steel reinforced concrete beam column node of stirrup with steel plate with holes up and down, joint cores does not dispose stirrup 5, arrange two steel plates with holes up and down respectively in joint cores, see accompanying drawing 3-5, going up steel plate 13 with holes, following steel plate 14 with holes and the section steel beam edge of a wing 7 welds together by last groove weld 15, following groove weld 16 respectively, see accompanying drawing 6, steel plate with holes welds together by edge weld 17 between each side, sees accompanying drawing 7.This node form need not opened tie muscle through hole 12 on beam shaped steel web, be suitable for the bean column node place structural form as high-rise and super highrise building.
Adopting steel plate with holes to replace the steel reinforced concrete beam column node of tie muscle up and down at core space is not arrange stirrup in joint cores, and arranges the joint form of steel plate with holes up and down in joint cores.
The utility model is made up of the put more energy into vertical muscle 4 of steel plate 3, post, tie muscle 5, steel plate with holes 13, steel plate with holes 14, post concrete 6 and the section steel beam edge of a wing 7, beam shaped steel web 8, the vertical muscle 9 of beam, beam stirrup 10, beam concrete 11 of column type steel frange plate 1, column type steel web 2, post level, during application, the sectional dimension of steel reinforced concrete beam column, shaped steel size, steel plate thickness with holes, longitudinal reinforcement reinforcement ratio, stirrup reinforcement ratio, strength grade of concrete are determined according to engineering actual loading situation, shown in Fig. 3-7.
In the utility model about concrete, the steel member, vertical muscle, stirrup and node connect design, the requirement of processing and construction all can be by " Code for design of concrete structures " (GB50010-2010), " Code for design of steel structures " (GB50017-2003), " seismic design provision in building code " (GB50011-2010), " reinforced concrete composite structure tecnical regulations " (JGJ 138-2001), " steel reinforced concrete structure tecnical regulations " standards such as (YB 9082-2006), rules are carried out.The utility model joint cores is not arranged stirrup, arranges stirrup plate with holes up and down at core space, is suitable for the bean column node place structural form as high-rise and super highrise building.
Claims (2)
1. adopt the steel reinforced concrete beam column node of steel plate with holes up and down at core space, it is characterized in that, by column type steel frange plate (1), column type steel web (2), post level put more energy into the vertical muscle (4) of steel plate (3), post, tie muscle (5), go up steel plate with holes (13), steel plate with holes (14), post concrete (6) and the section steel beam edge of a wing (7), beam shaped steel web (8), the vertical muscle (9) of beam, beam stirrup (10), beam concrete (11) are formed down, this node is the joint form of arranging steel plate with holes in joint cores up and down; Namely arrange two steel plates with holes up and down up and down respectively in joint cores, go up steel plate with holes (13), steel plate with holes (14) and the section steel beam edge of a wing (7) weld together by last groove weld (15), following groove weld (16) respectively down.
2. according to claim 1ly adopt the steel reinforced concrete beam column node of steel plate with holes up and down at core space, it is characterized in that described steel plate with holes welds together by edge weld (17) between each side.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN2013202044804U CN203188379U (en) | 2013-04-22 | 2013-04-22 | Steel reinforced concrete beam column joint adopting steel plates with holes above and below core area |
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CN2013202044804U CN203188379U (en) | 2013-04-22 | 2013-04-22 | Steel reinforced concrete beam column joint adopting steel plates with holes above and below core area |
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CN203188379U true CN203188379U (en) | 2013-09-11 |
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CN2013202044804U Withdrawn - After Issue CN203188379U (en) | 2013-04-22 | 2013-04-22 | Steel reinforced concrete beam column joint adopting steel plates with holes above and below core area |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN103195173A (en) * | 2013-04-22 | 2013-07-10 | 中国建筑东北设计研究院有限公司 | Steel reinforced concrete beam column joint with perforated steel plates above and below core area |
CN104294916A (en) * | 2014-10-20 | 2015-01-21 | 西安建筑科技大学 | Steel reinforced concrete column-steel reinforced concrete inclined beam T-shaped joint |
-
2013
- 2013-04-22 CN CN2013202044804U patent/CN203188379U/en not_active Withdrawn - After Issue
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN103195173A (en) * | 2013-04-22 | 2013-07-10 | 中国建筑东北设计研究院有限公司 | Steel reinforced concrete beam column joint with perforated steel plates above and below core area |
CN103195173B (en) * | 2013-04-22 | 2015-07-29 | 中国建筑东北设计研究院有限公司 | The Steel Reinforced Concrete Beam-column Joints of steel plate with holes is adopted up and down at core space |
CN104294916A (en) * | 2014-10-20 | 2015-01-21 | 西安建筑科技大学 | Steel reinforced concrete column-steel reinforced concrete inclined beam T-shaped joint |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
AV01 | Patent right actively abandoned |
Granted publication date: 20130911 Effective date of abandoning: 20150729 |
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RGAV | Abandon patent right to avoid regrant |