CN115596097B - A spliced base for a steel structure factory building - Google Patents

A spliced base for a steel structure factory building

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Publication number
CN115596097B
CN115596097B CN202211192239.4A CN202211192239A CN115596097B CN 115596097 B CN115596097 B CN 115596097B CN 202211192239 A CN202211192239 A CN 202211192239A CN 115596097 B CN115596097 B CN 115596097B
Authority
CN
China
Prior art keywords
seat
groove
damping
base
block
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.)
Active
Application number
CN202211192239.4A
Other languages
Chinese (zh)
Other versions
CN115596097A (en
Inventor
吕狄
王鹏
华珊珊
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
China First Metallurgical Group Co Ltd
Original Assignee
China First Metallurgical Group 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.)
Filing date
Publication date
Application filed by China First Metallurgical Group Co Ltd filed Critical China First Metallurgical Group Co Ltd
Priority to CN202211192239.4A priority Critical patent/CN115596097B/en
Publication of CN115596097A publication Critical patent/CN115596097A/en
Application granted granted Critical
Publication of CN115596097B publication Critical patent/CN115596097B/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04BGENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
    • E04B1/00Constructions in general; Structures which are not restricted either to walls, e.g. partitions, or floors or ceilings or roofs
    • E04B1/36Bearings or like supports allowing movement
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04BGENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
    • E04B1/00Constructions in general; Structures which are not restricted either to walls, e.g. partitions, or floors or ceilings or roofs
    • E04B1/62Insulation or other protection; Elements or use of specified material therefor
    • E04B1/92Protection against other undesired influences or dangers
    • E04B1/98Protection against other undesired influences or dangers against vibrations or shocks; against mechanical destruction, e.g. by air-raids
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04HBUILDINGS OR LIKE STRUCTURES FOR PARTICULAR PURPOSES; SWIMMING OR SPLASH BATHS OR POOLS; MASTS; FENCING; TENTS OR CANOPIES, IN GENERAL
    • E04H9/00Buildings, groups of buildings or shelters adapted to withstand or provide protection against abnormal external influences, e.g. war-like action, earthquake or extreme climate
    • E04H9/02Buildings, groups of buildings or shelters adapted to withstand or provide protection against abnormal external influences, e.g. war-like action, earthquake or extreme climate withstanding earthquake or sinking of ground
    • E04H9/021Bearing, supporting or connecting constructions specially adapted for such buildings
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04HBUILDINGS OR LIKE STRUCTURES FOR PARTICULAR PURPOSES; SWIMMING OR SPLASH BATHS OR POOLS; MASTS; FENCING; TENTS OR CANOPIES, IN GENERAL
    • E04H9/00Buildings, groups of buildings or shelters adapted to withstand or provide protection against abnormal external influences, e.g. war-like action, earthquake or extreme climate
    • E04H9/02Buildings, groups of buildings or shelters adapted to withstand or provide protection against abnormal external influences, e.g. war-like action, earthquake or extreme climate withstanding earthquake or sinking of ground
    • E04H9/024Structures with steel columns and beams

Landscapes

  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Environmental & Geological Engineering (AREA)
  • Business, Economics & Management (AREA)
  • Emergency Management (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Physics & Mathematics (AREA)
  • Electromagnetism (AREA)
  • Buildings Adapted To Withstand Abnormal External Influences (AREA)

Abstract

The invention discloses a spliced base of a steel structure factory building, which comprises a base, a connecting seat, a damping seat, a first damper and a supporting seat, wherein the connecting seat is arranged in a third groove of the base, the damping seat is arranged on the connecting seat and comprises a damping seat body and damping seat supporting legs, the damping seat body and the damping seat supporting legs form a first groove, the damping seat supporting legs are arranged in a gap between the side walls of the connecting seat and the third groove to enable the damping seat to be clamped with the connecting seat, the first damper is arranged in the first groove and is arranged between the damping seat body and the connecting seat, the supporting seat is arranged on the damping seat and comprises a supporting seat body and supporting seat protruding blocks, the supporting seat protruding blocks are inserted into a second groove on the damping seat body, and threaded holes connected with the steel structure factory building are formed in the supporting seat body. The invention is formed by splicing the base, the damping seat, the connecting seat and the supporting seat, is convenient for the transportation of the base, and improves the stability of the steel structure factory building by arranging the damping structure between the connecting seat and the damping seat.

Description

Spliced base of steel structure factory building
Technical Field
The invention belongs to the field of buildings, and particularly relates to a spliced base of a steel-structured factory building.
Background
The main bearing components of the steel structure factory building comprise steel columns, steel beams, steel structure foundations, steel roof trusses, steel roof covers and the like. The steel structure factory building has the characteristics of short construction time, low cost, convenient assembly and disassembly and the like, and can be suitable for factories, warehouses, office buildings and gymnasium libraries. The steel structure factory building base is used for supporting the whole factory building, and plays an important role in the stability of the steel structure factory building.
The utility model discloses a CN114525803A, patent name are patent application of steel structure base for industrial steel structure factory building, through setting up telescopic column and stop gear to adapt to the function of different steel column lengths, and through setting up the inserted bar, strengthen the bottom plate and be connected with the foundation ditch, improve the steadiness after the steel structure base buries. The publication number is CN113062445A, and the patent name is a patent application of a steel structure base for factory building, and the effect of slowing down the vibration of a base is achieved by arranging a spring. The structures involved in both patent applications need to be machined in advance by a factory, and cannot be spliced and installed on site when in use, and because the steel structure base is used as a base of a factory building, the whole gravity and the occupied area are large, so that the steel structure base is more troublesome to transport. The steel structure base in the patent application with the publication number of CN114525803A is not provided with a damping structure, and cannot damp the supporting beams of the factory building, so that the whole factory building cannot be damped, and after an earthquake disaster occurs, the whole structure is easy to collapse, and the safety is poor. The patent application with publication number CN113062445A designs a damping structure, but from the structure, the whole gravity is finally transferred to the upper surface of the side column, and the top plate is a mounting part for supporting the vertical beam, so that the gravity is huge, the side column is easy to break, and the whole stability is poor.
Therefore, a new steel structure base is urgently needed, so that the steel structure base is convenient to transport, shock absorption of a factory building can be realized, and stability of the steel structure factory building is improved.
Disclosure of Invention
The invention aims to provide a spliced base of a steel structure factory building, which is formed by splicing a base, a damping seat, a connecting seat and a supporting seat, and is convenient for transportation of the base.
The technical scheme adopted by the invention is as follows:
a spliced base of a steel-structured factory building comprises a base, a connecting seat, a damping seat, a first damper and a supporting seat;
the upper surface of the third groove of the base is provided with a limiting block, the lower surface of the connecting seat is provided with a limiting groove, and the connecting seat and the base are clamped through the limiting groove and the limiting block;
the damping seat is arranged on the connecting seat and comprises a damping seat body and a damping seat supporting leg positioned below the damping seat body, wherein the damping seat body and the damping seat supporting leg form a first groove;
the first shock absorber is arranged in the first groove, one end of the first shock absorber is connected with the shock absorption seat body, and the other end of the first shock absorber is connected with the connecting seat;
The support seat is arranged on the shock absorption seat and comprises a support seat body and a support seat protruding block positioned below the support seat body, the support seat protruding block is inserted into a second groove on the shock absorption seat body, the second groove is matched with the support seat protruding block for use, so that the support seat is clamped with the shock absorption seat, and the support seat body is provided with a threaded hole connected with a steel structure factory building.
According to the scheme, the connecting seat is provided with the limiting groove, the damping seat body is provided with the limiting convex block, and the limiting convex block penetrates through the first groove and stretches into the limiting groove on the connecting seat;
the limiting lug is provided with a first limiting groove, and the limiting bolt sequentially penetrates through the supporting seat body and the supporting seat lug and then stretches into the first limiting groove on the limiting lug. The limiting bolt can connect the damping seat and the supporting seat together for fixing.
According to the scheme, the limit bolt is in threaded connection with the supporting seat, and the limit bolt is in threaded connection with the damping seat.
According to the scheme, the limit bolt is positioned on the central axis of the base.
According to the above scheme, the second guide block is installed at the top of shock attenuation seat, and the side of the supporting seat lug of supporting seat is equipped with the second guide slot with second guide block looks adaptation, and second guide block and second guide slot cooperation are used. The second guide block and the second guide groove can limit the vertical piers of the supporting seat.
According to the technical scheme, the shock absorption seat body is provided with the storage groove which is communicated with the second groove to form the cavity, the cavity is internally provided with the cushion block, the upper surface of the cushion block is an inclined surface which is in contact with the supporting seat convex block, the lower surface of the cushion block is provided with the first guide block, the lower part of the cavity is provided with the first guide groove which is matched with the first guide block, the first guide block is matched with the first guide groove for use, and the screw rod penetrates through the shock absorption seat body and is connected with the cushion block in a rotating mode after penetrating into the cavity. The cushion block, the storage groove and the screw rod are matched for use, so that the height of the supporting seat on the damping seat can be adjusted.
According to the scheme, the damping washer is arranged in the gap between the connecting seat and the side wall of the third groove and is arranged on the base and positioned below the supporting leg of the damping seat, and the damping washer is matched with the damping seat for use so as to better realize damping.
According to the scheme, the side wall of the third groove is provided with the third guide groove, the outer surface of the supporting leg of the shock absorption seat is provided with the third guide block matched with the third guide groove, and the third guide block and the third guide groove are matched for use. The third guide block and the third guide groove can limit the shock mount except for the guiding function, so that the shock mount is prevented from rotating in the base.
According to the scheme, the inner surface of the supporting leg of the shock absorption seat is provided with the sliding groove, the side surface of the connecting seat is provided with the sliding block matched with the sliding groove, and the sliding groove is in sliding connection with the sliding block. The sliding groove and the sliding block can limit the damping seat except for the guiding function, so that the damping seat is prevented from rotating inside the base.
According to the scheme, the second shock absorber is arranged between the shock absorber seat and the base and is fixed on the fixed block through the bolts, and the fixed block is arranged on the surface of the shock absorber seat body, so that shock absorption of the steel structure factory building can be better realized.
According to the scheme, the number of the first shock absorbers is four, the number of the fixing blocks is four, the number of the limiting grooves is four, the number of the limiting blocks is four, the number of the sliding grooves is four, the number of the second guide blocks is four, the number of the second guide grooves is four, the number of the third guide blocks is four, and the number of the third guide grooves is four.
The invention has the beneficial effects that:
the base is formed by splicing the base, the damping seat, the connecting seat and the supporting seat, so that the installation of the base is simplified and the transportation is convenient;
the damping structure is arranged between the connecting seat and the damping seat, so that the stability of the steel structure factory building is improved;
the limiting block and the limiting groove are arranged, so that the clamping connection of the connecting seat and the base is facilitated, and the structure is more stable;
the supporting legs of the shock absorption seat are arranged in the gaps between the connecting seat and the side walls of the third grooves, so that the whole structure is more compact and reasonable, and the structure is more stable;
A first shock absorber is arranged between the shock absorber seat body and the connecting seat, so that shock absorption of the steel-structured factory building is realized;
The inner clamping connection seat of the base is adopted, the first shock absorber and the shock absorption gasket are clamped between the connection seat and the shock absorption seat, and the second shock absorber fixedly installed outside is matched, so that the supporting seat on the shock absorption seat can be subjected to energy absorption and shock absorption, the shock absorption performance of the supporting seat is improved, the collapse of a factory building due to poor shock absorption effect when an earthquake disaster occurs is prevented, and the safety of a steel-structure factory building is improved;
corresponding clamping structures are designed on the base, the damping seat, the connecting seat and the supporting seat, so that the stability of the whole structure is improved;
due to the adoption of the splicing structure, when a certain part is damaged, the corresponding part can be replaced, the whole replacement is not needed, and the maintenance cost is reduced.
Drawings
The invention will be further described with reference to the accompanying drawings and examples, in which:
FIG. 1 is a schematic view of a spliced base of a steel building;
FIG. 2 is a cross-sectional view of a splice-type foundation of a steel building;
fig. 3 is an enlarged view of a in fig. 2;
fig. 4 is an enlarged view of B in fig. 2;
in the figure, 1, a base; 2, a shock absorption seat, 2.1, a shock absorption seat body, 2.2, a shock absorption seat supporting leg, 3, a supporting seat, 3.1, a supporting seat body, 3.2, a supporting seat lug, 4, a connecting seat, 5, a first shock absorber, 6, a shock absorption gasket, 7, a fixed block, 8, a second shock absorber, 9, a second groove, 10, a storage groove, 11, a cushion block, 12, a screw rod, 13, a limit groove, 14, a limit block, 15, a sliding block, 16, a sliding groove, 17, a first guide block, 18, a first guide groove, 19, a second guide block, 20, a second guide groove, 21, a third guide block, 22, a third guide groove, 23, a limit bolt, 24, a threaded hole, 25, a limit groove, 26, a limit lug, 27, a first limit groove, 28 and a first groove.
Detailed Description
The present invention will be described in further detail with reference to the drawings and examples, in order to make the objects, technical solutions and advantages of the present invention more apparent. It should be understood that the specific embodiments described herein are for purposes of illustration only and are not intended to limit the scope of the invention.
Referring to fig. 1-4, a spliced base of a steel-structured factory building comprises a base 1, a connecting seat 4, a shock absorption seat 2, a first shock absorber 5 and a supporting seat 3.
The connecting seat 4 is arranged in the third groove of the base 1, a gap is arranged between the connecting seat 4 and the side wall of the third groove, and a damping washer 6 is arranged in the gap. The third recess upper surface of base 1 is equipped with 4 stopper 14, and the lower surface of connecting seat 4 is equipped with 4 spacing groove 13, and connecting seat 4, base 1 carry out the joint through spacing groove 13, stopper 14.
The shock absorbing seat 2 is arranged on the connecting seat 4 and comprises a shock absorbing seat body 2.1 and a shock absorbing seat supporting leg 2.2 positioned below the shock absorbing seat body 2.1, the shock absorbing seat body 2.1 and the shock absorbing seat supporting leg 2.2 form a first groove 28, and the shock absorbing seat supporting leg 2.2 is arranged in a gap between the connecting seat 4 and the side wall of the third groove and is arranged in the shock absorbing gasket 6. The upper part of the shock mount body 2.1 is provided with a second groove 9. In the preferred embodiment, the side wall of the third groove is provided with 4 third guide grooves 22, the outer surface of the supporting leg 2.2 of the shock absorbing seat is provided with 4 third guide blocks 21 matched with the third guide grooves 22, and the third guide blocks 21 and the third guide grooves 22 are matched for use. The inner surface of the shock-absorbing seat supporting leg 2.2 is provided with 4 sliding grooves 16, the side surface of the connecting seat 4 is provided with 4 sliding blocks 15 matched with the sliding grooves 16, and the sliding grooves 16 are in sliding connection with the sliding blocks 15. 4 second shock absorbers 8 are arranged between the shock absorption seat 2 and the base 1, the second shock absorbers 8 are fixed on the fixed blocks 7 through bolts, and the fixed blocks 7 are arranged on the surface of the shock absorption seat body 2.1.
The number of the first shock absorbers 5 is 4, the first shock absorbers are all arranged in the first grooves, one end of each first shock absorber 5 is connected with the shock absorption seat body 2.1, and the other end of each first shock absorber 5 is connected with the connecting seat 4.
The supporting seat 3 is arranged on the shock absorption seat 2 and comprises a supporting seat body 3.1 and a supporting seat protruding block 3.2 positioned below the supporting seat body 3.1, the supporting seat protruding block 3.2 is inserted into a second groove 9 on the shock absorption seat body 2.1, the second groove 9 is matched with the supporting seat protruding block 3.2 for use, so that the supporting seat 3 is clamped with the shock absorption seat 2, and a threaded hole 24 connected with a steel structure factory building is formed in the supporting seat body 3.1. 4 second guide blocks 19 are arranged at the top of the shock absorption seat body 2.1, 4 second guide grooves 20 matched with the second guide blocks 19 are arranged on the side edges of the supporting seat protruding blocks 3.2, and the second guide blocks 19 and the second guide grooves 20 are matched for use.
In the preferred embodiment, the shock absorbing seat body 2.1 is provided with a receiving groove 10, and the receiving groove 10 is communicated with the second groove 9 to form a cavity. The cavity is internally provided with cushion blocks 11 which are symmetrically arranged, the upper surface of each cushion block 11 is an inclined surface, the inclined surface is in contact with the lower end of each supporting seat convex block 3.2, the lower surface of each cushion block 11 is provided with a first guide block 17, the lower part of the cavity is provided with a first guide groove 18 which is matched with the first guide block 17, and the first guide blocks 17 and the first guide grooves 18 are matched for use. The screw rod 12 penetrates through the damping seat body 2.1 and is connected with the cushion block 11 in a rotating way after extending into the cavity.
In order to make the base structure more stable, a limit groove 25 is arranged on the connecting seat 4, a limit bump 26 is arranged on the shock absorption seat body 2.1, the limit bump 26 penetrates through the first groove 28 and stretches into the limit groove 25 on the connecting seat 4, a first limit groove 27 is arranged on the limit bump 26, and the limit bolt 23 sequentially penetrates through the supporting seat body 3.1 and the supporting seat bump 3.2 and stretches into the first limit groove 27 on the limit bump 26. The bottom of the limit bolt 23 is in clearance with the bottom of the first limit groove 27, and the bottom of the limit bump 26 is in clearance with the bottom of the limit groove 25.
According to the spliced base of the steel-structured factory building, the connecting seat 4 is clamped inside the base 1, the first shock absorber 5 and the shock absorption gasket 6 are clamped between the connecting seat 4 and the shock absorption seat 2, and the second shock absorber 8 which is fixedly installed outside is matched, so that the supporting seat 3 on the shock absorption seat 2 can absorb energy and absorb shock, the shock-absorbing performance of the supporting seat is improved, the earthquake disaster is prevented from collapsing due to poor shock-absorbing effect, the safety is improved, the traditional base is designed into the splicing form of the base 1, the shock absorption seat 2, the connecting seat 4 and the supporting seat 3, and when the base 1, the shock absorption seat 2, the connecting seat 4 and the supporting seat 3 are installed together, the structural stability is high, and due to the splicing mode, the supporting seat is convenient to transport to the site for installation after the corresponding parts are produced, the transportation is convenient, and when a certain part is damaged, the corresponding part can be replaced without the whole replacement, and the cost is reduced.
It will be understood that modifications and variations will be apparent to those skilled in the art from the foregoing description, and it is intended that all such modifications and variations be included within the scope of the following claims.

Claims (7)

1. The spliced base of the steel-structured factory building is characterized by comprising a base, a connecting seat, a damping seat, a first damper and a supporting seat;
the upper surface of the third groove of the base is provided with a limiting block, the lower surface of the connecting seat is provided with a limiting groove, and the connecting seat and the base are clamped through the limiting groove and the limiting block;
the damping seat is arranged on the connecting seat and comprises a damping seat body and a damping seat supporting leg positioned below the damping seat body, wherein the damping seat body and the damping seat supporting leg form a first groove;
the first shock absorber is arranged in the first groove, one end of the first shock absorber is connected with the shock absorption seat body, and the other end of the first shock absorber is connected with the connecting seat;
The support seat is arranged on the shock absorption seat and comprises a support seat body and a support seat protruding block positioned below the support seat body, wherein the support seat protruding block is inserted into a second groove on the shock absorption seat body to enable the support seat to be clamped with the shock absorption seat;
The shock absorption seat comprises a shock absorption seat body, a cushion block, a first guide block, a screw rod, a first guide groove and a second guide groove, wherein the shock absorption seat body is provided with a storage groove, the storage groove is communicated with the second groove to form a cavity, the cushion block is arranged in the cavity, the upper surface of the cushion block is an inclined surface and is in contact with a supporting seat bump, the first guide block is arranged on the lower surface of the cushion block, the first guide groove is arranged at the lower part of the cavity and is matched with the first guide block, and the screw rod penetrates through the shock absorption seat body and is connected with the cushion block after penetrating into the cavity.
2. The spliced base of the steel-structured factory building of claim 1, wherein the connecting seat is provided with a limit groove, the damping seat body is provided with a limit bump, and the limit bump penetrates through the first groove and stretches into the limit groove on the connecting seat;
The limiting lug is provided with a first limiting groove, and the limiting bolt sequentially penetrates through the supporting seat body and the supporting seat lug and then stretches into the first limiting groove on the limiting lug.
3. The spliced base of the steel structure plant of claim 1, wherein the damping seat is provided with a second guide block, and the side edge of the supporting seat lug of the supporting seat is provided with a second guide groove matched with the second guide block.
4. The spliced base of the steel-structured factory building of claim 1, wherein a damping washer is arranged in a gap between the connecting seat and the side wall of the third groove, and the damping washer is arranged on the base and positioned below the supporting leg of the damping seat.
5. The spliced base of the steel structure plant of claim 1, wherein a third guide groove is formed in the side wall of the third groove, and a third guide block matched with the third guide groove is arranged on the outer surface of the supporting leg of the damping seat.
6. The spliced base of the steel-structured factory building of claim 1, wherein the inner surface of the supporting leg of the shock absorption seat is provided with a sliding groove, and the side surface of the connecting seat is provided with a sliding block matched with the sliding groove.
7. The spliced base of the steel-structured factory building of claim 1, wherein a second shock absorber is arranged between the shock absorbing seat and the base, the second shock absorber is fixed on a fixed block through a bolt, and the fixed block is arranged on the surface of the shock absorbing seat body.
CN202211192239.4A 2022-09-28 2022-09-28 A spliced base for a steel structure factory building Active CN115596097B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202211192239.4A CN115596097B (en) 2022-09-28 2022-09-28 A spliced base for a steel structure factory building

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202211192239.4A CN115596097B (en) 2022-09-28 2022-09-28 A spliced base for a steel structure factory building

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CN115596097A CN115596097A (en) 2023-01-13
CN115596097B true CN115596097B (en) 2025-09-26

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Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110093986A (en) * 2019-05-31 2019-08-06 天津大学 A kind of air spring-friction multidimensional shock insulation support
CN213508930U (en) * 2020-07-24 2021-06-22 湖北省工业建筑集团有限公司 A prevent empting type assembled support for building engineering
CN215406684U (en) * 2021-04-30 2022-01-04 福建九鼎建设集团有限公司 Vertical self-resetting three-dimensional shock isolation device with pulling resistance

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Publication number Priority date Publication date Assignee Title
JP2009293234A (en) * 2008-06-04 2009-12-17 Hanzawa Shigekazu Frictional vibration reducing device
KR102128909B1 (en) * 2017-10-20 2020-07-08 계명대학교 산학협력단 Active type vibration isloation apparatus
CN209277209U (en) * 2018-12-11 2019-08-20 钱思愉 A kind of civil engineering anti-seismic structure
CN209602946U (en) * 2019-01-29 2019-11-08 山西交科公路勘察设计院 Damping bearing for highway bridge
CN213174957U (en) * 2020-07-08 2021-05-11 江苏跃发建设工程有限公司 Mobile steel structure industrial factory building
CN117167620A (en) * 2022-05-16 2023-12-05 太仓德纳森机电工程有限公司 Electromechanical equipment placing platform with good damping effect

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110093986A (en) * 2019-05-31 2019-08-06 天津大学 A kind of air spring-friction multidimensional shock insulation support
CN213508930U (en) * 2020-07-24 2021-06-22 湖北省工业建筑集团有限公司 A prevent empting type assembled support for building engineering
CN215406684U (en) * 2021-04-30 2022-01-04 福建九鼎建设集团有限公司 Vertical self-resetting three-dimensional shock isolation device with pulling resistance

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