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CN203891194U - High-rise tower building corridor steel structure - Google Patents

High-rise tower building corridor steel structure Download PDF

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Publication number
CN203891194U
CN203891194U CN201420225421.XU CN201420225421U CN203891194U CN 203891194 U CN203891194 U CN 203891194U CN 201420225421 U CN201420225421 U CN 201420225421U CN 203891194 U CN203891194 U CN 203891194U
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CN
China
Prior art keywords
support
vestibule
type friction
main girder
main steel
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201420225421.XU
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Chinese (zh)
Inventor
陈钧颐
赵春潮
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Taixing First Construction Group Co ltd
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TAIXING FIRST CONSTRUCTION INSTALLATION CO Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Priority to CN201420225421.XU priority Critical patent/CN203891194U/en
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Publication of CN203891194U publication Critical patent/CN203891194U/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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Abstract

The utility model relates to a high-rise tower building corridor steel structure. The high-rise tower building corridor steel structure comprises two main steel beams and a plurality of corridor channel steel beams; the two main steel beams are arranged in a parallel mode; the plurality of corridor channel steel beams are arranged on the two main steel beams; two ends of each main steel beam are supported on two opposite high-rise tower buildings through two tensile type friction pendulum isolation-proof supports respectively; an extensible joint is formed between the plurality of corridor channel steel beams and each of the two opposite high-rise tower buildings. The simple pendulum movement of an upper portion support of each support is performed through the movement of the spherical sliding surface due to the corresponding support, the horizontal force of each support is the resultant force of the friction force of the sliding surface and the restoring force produced by ascending of the corresponding upper portion support along the spherical surface, and the corresponding tensile type friction pendulum isolation-proof support can rely on the gravity of the corresponding main steel beam which is supported by the tensile type friction pendulum isolation-proof support to reset towards the center of a spherical structure through the restoring resultant force. The automatic reset function is achieved through the main steel beams, the limiting of a limiter on each tensile type friction pendulum isolation-proof support or the corresponding main steel beam is matched when any angle offset of each main steel beam which is supported by the corresponding tensile type friction pendulum isolation-proof support in the horizontal circumferential direction is produced, and accordingly the shock-proof safe support and reset of each main steel beam is ensured and a corridor is safe and stable in use.

Description

High-rise high building vestibule steel work
Technical field
The utility model relates to a kind of high-rise high building vestibule, is a kind of high-rise high building vestibule steel work specifically.
Background technology
Gallery structure, as a kind of building types of modern architecture, has higher viewing and admiring and use value.The gallery structure that tradition adopts comprises that the vestibule that is rigidly connected is connected vestibule with slide, and rigidly connected vestibule and vestibule both sides main building are rigidly connected, and antidetonation, anti-shear performance are poor, easily breaks in vestibule and main building junction, has the vestibule potential safety hazard of caving in; Slide connects vestibule and adopts slip support abutment to connect vestibule and main building, vestibule slides and can effectively prevent the vestibule potential safety hazard that vestibule and intersubjective displacement cause on slip support abutment, but difficulty resets after vestibule displacement, the critical place of restriction that slides onto slip support abutment after long-term use easily deviate from vestibule with intersubjective spacing, there is potential safety hazard.
The existing patent No. is the jointing porch flexible connecting support saddle that 200720047542.X announces, adopt laminated rubber supporting to be fastened between two gripper shoes, damping positive stop strip is evenly distributed on laminated rubber supporting surrounding and is fastened between two gripper shoes, connect the construction of bearing for highrise building gallery structure, borrow its good elastoplasticity, under shearing force effect, produce certain elastic deformation, dissipation seismic energy, and automatically restore to the original state after geological process disappears, effectively prevent vestibule slump.But relative shear effect between the earth all the time vibration on earth, vestibule self vibration and two main bodys, in Flexible change and the lower easy inefficacy that returns to form, there is application life and security hidden trouble for a long time in laminated rubber and damping positive stop strip equally.
Summary of the invention
The use safety problem existing for vestibule syndeton in prior art, it is a kind of simple in structure, easy for installation that the utility model provides, and can effectively guarantee that vestibule uses safe, stable high-rise high building vestibule steel work.
The technical solution adopted in the utility model is: a kind of high-rise high building vestibule steel work, comprise two main girder steels that be arranged in parallel and and many be arranged at two vestibule passage girder steels on main girder steel, its technical characterstic is that the two ends of described main girder steel are supported on two relative high-rise high buildings through tensile type friction-pendulum shock-insulation support respectively, between many vestibule passage girder steels and relative two high-rise high buildings, is provided with shrinkage joint.
Further, described two high-rise high building opposite sides are provided with the semi girder that stretches out high building, and main girder steel is supported on semi girder through tensile type friction-pendulum shock-insulation support.
Further, described tensile type friction-pendulum shock-insulation support periphery is provided with stop.
Further, described stop is arranged on main girder steel corresponding tower and hugs spacingly, or stop is arranged at tower, and to hug the main girder steel of correspondence spacing; Or stop is arranged at respectively on main girder steel and high building mutually spacing.
High-rise high building vestibule steel structure hoisting method, comprises the following steps:
(1) the embedding embedded board of high building post beam above vestibule, arranges and can turn to steel hanging beam on embedded board, can turn to more than two electric winch is set on steel hanging beam;
(2) rotate adjustment steel hanging beam and make the main girder steel of electric winch wire rope vertical lifting, when main girder steel lifting, direction and vestibule design direction are not parallel, and the front and back ends of main girder steel is through cable rope fixed random wire rope vertical lifting;
(3) main girder steel rises and winches to vestibule design attitude top, turns to adjustment steel hanging beam to make main girder steel turn to and move to vestibule design attitude top by the rope that turns to of wire rope and any one or both ends of main girder steel;
(4) below main girder steel and between high-rise high building, be welded to connect tensile type friction-pendulum shock-insulation support, main girder steel is supported on high-rise high building through tensile type friction-pendulum shock-insulation support;
(5) stop that restriction tensile type friction-pendulum shock-insulation support circumferentially moves is set below high-rise high building and/or main girder steel;
(6) lift by crane successively vestibule passage girder steel by above-mentioned steps (2), (3), vestibule passage girder steel is welded to connect on main girder steel, and leaves shrinkage joint between high-rise high building, complete vestibule steel structure hoisting.
Compared with prior art, the utility model has the advantages that: tensile type friction-pendulum shock-insulation support upper, undersetting adopts spherical structure to coordinate, when high building shock effect exceedes stiction between sphere, bearing makes the upper seat generation simple harmonic motion of bearing by the motion of spherical slide plane, to be slide plane frictional force and upper seat rise making a concerted effort of the restoring force that produces along sphere the horizontal force of bearing, this recovery makes a concerted effort to make tensile type friction-pendulum shock-insulation support can rely on the main girder steel gravity of its support to reply toward the center of spherical structure, main girder steel has auto-reset function, in the time of the arbitrarily angled skew of the main girder steel occurred level of seat supports circumferencial direction, cooperation stop is spacing to tensile type friction-pendulum shock-insulation support or main girder steel, the quake-resistant safety of guaranteeing main girder steel supports and resets, vestibule uses safety, stable, between vestibule passage girder steel and high-rise high building, leave shrinkage joint, for the gallery structure of vestibule passage girder steel and main girder steel formation leaves skew space in generation along main girder steel direction vibrations, further guarantee the structural safety of gallery structure.
Brief description of the drawings
Fig. 1 is plan structure schematic diagram of the present utility model.
In figure: high-rise high building 1,2, main girder steel 3, vestibule passage girder steel 4, tensile type friction-pendulum shock-insulation support 5, stop 6,7, semi girder 8.
Detailed description of the invention
Below in conjunction with drawings and Examples, the utility model is described in further detail.
Shown in Fig. 1, a kind of high-rise high building vestibule steel work comprises main girder steel 3, vestibule passage girder steel 4, tensile type friction-pendulum shock-insulation support 5, stop 6,7.Two main girder steels 3 are set in parallel between high-rise high building 1,2, many vestibule passage girder steels 4 are arranged on two main girder steels 3 and form gallery structure, the two ends of main girder steel 3 are supported on the semi girder 8 that two high-rise high building 1,2 opposite sides stretch out through tensile type friction-pendulum shock-insulation support 5 respectively, semi girder 8 is provided with and is limited in horizontal, the longitudinal stop of tensile type friction-pendulum shock-insulation support 5 peripheries 6,7, between many vestibule passage girder steels 4 and relative two high-rise high buildings 1,2, is provided with shrinkage joint.
The high-rise high building vestibule of the utility model steel structure hoisting method, comprises the following steps:
(7) the embedding embedded board of high building post beam above vestibule, arranges and can turn to steel hanging beam on embedded board, can turn to more than two electric winch is set on steel hanging beam;
(8) rotate adjustment steel hanging beam and make the main girder steel of electric winch wire rope vertical lifting, when main girder steel lifting, direction and vestibule design direction are not parallel, and the front and back ends of main girder steel is through cable rope fixed random wire rope vertical lifting;
(9) main girder steel rises and winches to vestibule design attitude top, turns to adjustment steel hanging beam to make main girder steel turn to and move to vestibule design attitude top by the rope that turns to of wire rope and any one or both ends of main girder steel;
(10) below main girder steel and between high-rise high building, be welded to connect tensile type friction-pendulum shock-insulation support, main girder steel is supported on high-rise high building through tensile type friction-pendulum shock-insulation support;
(11) stop that restriction tensile type friction-pendulum shock-insulation support circumferentially moves is set below high-rise high building and/or main girder steel;
(12) lift by crane successively vestibule passage girder steel by above-mentioned steps (2), (3), vestibule passage girder steel is welded to connect on main girder steel, and leaves shrinkage joint between high-rise high building, complete vestibule steel structure hoisting.

Claims (4)

1. a high-rise high building vestibule steel work, comprise two main girder steels that be arranged in parallel and and many be arranged at two vestibule passage girder steels on main girder steel, it is characterized in that: the two ends of described main girder steel are supported on two relative high-rise high buildings through tensile type friction-pendulum shock-insulation support respectively, between many vestibule passage girder steels and relative two high-rise high buildings, be provided with shrinkage joint.
2. high-rise high building vestibule steel work according to claim 1, is characterized in that: described two high-rise high building opposite sides are provided with the semi girder that stretches out high building, and main girder steel is supported on semi girder through tensile type friction-pendulum shock-insulation support.
3. high-rise high building vestibule steel work according to claim 1 and 2, is characterized in that: described tensile type friction-pendulum shock-insulation support periphery is provided with stop.
4. high-rise high building vestibule steel work according to claim 3, is characterized in that: described stop is arranged on main girder steel corresponding tower and hugs spacingly, or stop is arranged at tower, and to hug the main girder steel of correspondence spacing; Or stop is arranged at respectively on main girder steel and high building mutually spacing.
CN201420225421.XU 2014-05-05 2014-05-05 High-rise tower building corridor steel structure Expired - Fee Related CN203891194U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201420225421.XU CN203891194U (en) 2014-05-05 2014-05-05 High-rise tower building corridor steel structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201420225421.XU CN203891194U (en) 2014-05-05 2014-05-05 High-rise tower building corridor steel structure

Publications (1)

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CN203891194U true CN203891194U (en) 2014-10-22

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104018575A (en) * 2014-05-05 2014-09-03 泰兴市第一建筑安装工程有限公司 High-rise tower corridor steel structure
CN105464258A (en) * 2015-12-23 2016-04-06 中国建筑标准设计研究院有限公司 Facade seismic isolation gap device used for seismic isolation building and construction method thereof
CN106522362A (en) * 2016-12-29 2017-03-22 上海市机械施工集团有限公司 Construction device and construction method of steel structure beam of corridor system
CN108643339A (en) * 2016-06-09 2018-10-12 毛强平 Application of the rubber material between adjacent tall building in connecting platform building structure

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104018575A (en) * 2014-05-05 2014-09-03 泰兴市第一建筑安装工程有限公司 High-rise tower corridor steel structure
CN105464258A (en) * 2015-12-23 2016-04-06 中国建筑标准设计研究院有限公司 Facade seismic isolation gap device used for seismic isolation building and construction method thereof
CN105464258B (en) * 2015-12-23 2018-09-18 中国建筑标准设计研究院有限公司 A kind of shock-insulation building alien invasion shock insulation seam device and its construction method
CN108643339A (en) * 2016-06-09 2018-10-12 毛强平 Application of the rubber material between adjacent tall building in connecting platform building structure
CN108643339B (en) * 2016-06-09 2020-06-19 北京纽约建设发展有限公司 Application of rubber material in connecting platform building structure between adjacent high-rise buildings
CN106522362A (en) * 2016-12-29 2017-03-22 上海市机械施工集团有限公司 Construction device and construction method of steel structure beam of corridor system

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C14 Grant of patent or utility model
GR01 Patent grant
CP03 Change of name, title or address
CP03 Change of name, title or address

Address after: No. 87, Jinchuan Road, Taixing City, Taizhou, Jiangsu

Patentee after: TAIXING FIRST CONSTRUCTION GROUP CO.,LTD.

Address before: 225400 Daqing East Road, Taixing City, Taizhou, Jiangsu Province, No. 21

Patentee before: TAIXING FIRST CONSTRUCTION INSTALLATION Co.,Ltd.

CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20141022