CN218622738U - Earthquake-resistant support for building - Google Patents

Earthquake-resistant support for building Download PDF

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Publication number
CN218622738U
CN218622738U CN202223326306.5U CN202223326306U CN218622738U CN 218622738 U CN218622738 U CN 218622738U CN 202223326306 U CN202223326306 U CN 202223326306U CN 218622738 U CN218622738 U CN 218622738U
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China
Prior art keywords
earthquake
sleeve
resistant support
extension rod
bottom plate
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CN202223326306.5U
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Chinese (zh)
Inventor
刘开明
敖鸿斐
徐菡
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Shanghai Institute Of Spatial Planning And Design Co ltd
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Shanghai Institute Of Spatial Planning And Design Co ltd
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Abstract

The utility model provides an earthquake-resistant support for building relates to earthquake-resistant support technical field, comprising a base plate, first antidetonation mechanism is installed on the top of bottom plate, first antidetonation mechanism's top is connected with the roof, second antidetonation mechanism is all installed to four sides in the top of bottom plate, second antidetonation mechanism's top and the top of roof are connected, four sides of bottom plate all inlay and are equipped with first telescopic machanism, first telescopic machanism includes first sleeve, first telescopic inboard sliding connection has first extension rod, the one end of first extension rod is connected with first mount pad, four sides of roof all inlay and are equipped with second telescopic machanism, second telescopic machanism includes the second sleeve, the telescopic inboard sliding connection of second has the second extension rod, the one end of second extension rod is connected with the second mount pad. The utility model discloses can effectively realize the position control of mounting hole, conveniently match the constructional column of different positions and the mounting hole on basis, have higher practical value.

Description

Earthquake-resistant support for building
Technical Field
The utility model belongs to the technical field of the antidetonation support, more specifically says, in particular to antidetonation support for building.
Background
The building shock absorption (structure energy dissipation shock absorption technology) is that energy dissipation devices are arranged at certain parts (such as supports, shear walls, connecting joints or connecting pieces) of a structure, and the energy input into the structure by the earthquake is dissipated or absorbed by the device through friction, bending (or shearing or torsion) and elastic-plastic (or viscoelasticity) hysteresis deformation so as to reduce the earthquake reaction of a main body structure, thereby avoiding the structure from being damaged or collapsed and achieving the purpose of shock absorption control.
The Chinese patent with the publication number CN211597080U discloses an earthquake-resistant support for buildings, which comprises a lower support plate and an upper support plate, wherein a lower fixed cylinder is fixed at the center of the top of the lower support plate through a bolt, an upper fixed cylinder is fixed at the center of the bottom of the upper support plate through a bolt, support columns are embedded in the corresponding ends of the upper fixed cylinder and the lower fixed cylinder in a sliding manner, an upper pressing plate and a lower pressing plate are welded at the two ends of each support column respectively, the upper pressing plate and the lower pressing plate are positioned in the lower fixed cylinder and the upper fixed cylinder respectively, an earthquake-resistant assembly is uniformly embedded between the upper pressing plate and the upper support plate and positioned in the lower fixed cylinder, and a first elastic plate, a rubber pad and a second elastic plate are arranged at the bottom of the lower pressing plate in the upper fixed cylinder in a sliding manner;
the technical scheme that this scheme recorded can install upper fixed plate and bottom plate through the bolt, also can install hydraulic telescoping rod, adopts combination formula mounting structure, can conveniently produce and assemble, and easy to use, but this scheme is when using, and the position of mounting hole can't be adjusted, leads to its mounting hole that is difficult to match the constructional column and the basis of different positions, influences the user and uses.
SUMMERY OF THE UTILITY MODEL
In order to solve the technical problem, the utility model provides an earthquake-resistant support for building.
The utility model discloses purpose and efficiency of earthquake-resistant support for building are reached by following specific technological means:
the utility model provides an earthquake-proof support for building, includes the bottom plate, first antidetonation mechanism is installed on the top of bottom plate, the top of first antidetonation mechanism is connected with the roof, second antidetonation mechanism is all installed to four sides in the top of bottom plate, the top of second antidetonation mechanism and the top of roof are connected, four sides of bottom plate all inlay and be equipped with first telescopic machanism, first telescopic machanism includes first sleeve, first telescopic inboard sliding connection has first extension rod, the one end of first extension rod is connected with first mount pad, four sides of roof all inlay and be equipped with second telescopic machanism, second telescopic machanism includes the second sleeve, the telescopic inboard sliding connection of second has the second extension rod, the one end of second extension rod is connected with the second mount pad.
Furthermore, a first threaded hole is formed in the top end of the first sleeve, and a first locking bolt is installed inside the first threaded hole.
Furthermore, a second threaded hole is formed in the bottom end of the second sleeve, and a second locking bolt is installed inside the second threaded hole.
Further, first antidetonation mechanism is including fixed cover, the top sliding connection of fixed cover has the stand, the spliced pole is installed on the top of stand, the top of spliced pole and the bottom of roof are connected, the inside of fixed cover is equipped with the gasbag, the top of gasbag and the bottom of stand contact.
Furthermore, one side of the fixed sleeve is provided with an inflation inlet, and one end of the inflation inlet is connected with one side of the air bag.
Furthermore, the second anti-vibration mechanism comprises a damper, and a spring is sleeved outside the damper.
Furthermore, a first rubber cushion pad is installed at the bottom end of the bottom plate, and a second rubber cushion pad is installed at the top end of the top plate.
Compared with the prior art, the utility model discloses following beneficial effect has:
according to the anti-seismic support for the building, the first installation seat is connected through one end of the first extension rod, the first installation seat can move, so that the position adjustment of the installation hole is realized, the matching of the installation holes of foundations at different positions is facilitated, the second installation seat is connected through one end of the second extension rod, the second installation seat can move, the position adjustment of the installation hole is realized, the matching of the installation holes of the constructional columns at different positions is facilitated, the first locking bolt is installed inside the first threaded hole, the locking after the first extension rod stretches out and draws back is realized, and the second locking bolt is installed inside the second threaded hole, so that the locking after the second extension rod stretches out and draws back is realized; the utility model discloses can effectively realize the position control of mounting hole, conveniently match the constructional column of different positions and the mounting hole of basis, have higher practical value.
Drawings
Fig. 1 is a first perspective view of the present invention.
Fig. 2 is a second perspective view of the present invention.
Fig. 3 is a sectional view of the fixing sleeve of the present invention.
Fig. 4 is an enlarged schematic view of the structure a in fig. 1 of the present invention.
In the drawings, the corresponding relationship between the component names and the reference numbers is as follows:
100. a base plate; 101. a first anti-seismic mechanism; 10101. fixing a sleeve; 10102. a column; 10103. connecting columns; 10104. an air bag; 10105. an inflation inlet; 102. a top plate; 103. a first rubber cushion; 104. a second rubber cushion; 105. a first telescoping mechanism; 10501. a first sleeve; 10502. a first extension pole; 10503. a first mounting seat; 10504. a first locking bolt; 106. a second telescoping mechanism; 10601. a second sleeve; 10602. a second extension pole; 10603. a second mounting seat; 10604. a second locking bolt; 107. a second anti-seismic mechanism; 10701. a damper; 10702. a spring.
Detailed Description
The following describes embodiments of the present invention in further detail with reference to the drawings and examples. The following examples are intended to illustrate the invention, but are not intended to limit the scope of the invention.
Example (b):
as shown in figures 1 to 4:
the utility model provides a antidetonation support for building, including bottom plate 100, first antidetonation mechanism 101 is installed on the top of bottom plate 100, the top of first antidetonation mechanism 101 is connected with roof 102, the second antidetonation mechanism 107 is all installed on four sides of the top of bottom plate 100, the top of second antidetonation mechanism 107 and the top of roof 102 are connected, four sides of bottom plate 100 all inlay and are equipped with first telescopic machanism 105, first telescopic machanism 105 includes first sleeve 10501, the inboard sliding connection of first sleeve 10501 has first extension pole 10502, the one end of first extension pole 10502 is connected with first mount pad 10503, the one end through first extension pole 10502 is connected with first mount pad 10503, it is portable to realize first mount pad 10503, thereby realize the position control of mounting hole, conveniently match the mounting hole on the basis of different positions, the four sides of roof 102 all inlay and are equipped with second telescopic machanism 106, second telescopic machanism 106 includes second sleeve 10601, the inboard sliding connection of second sleeve 10601 has second extension pole 10602, the one end of second sleeve 10602 is connected with the different positions of second extension pole 10603, thereby the one end matching of second extension pole 10603 is connected with the convenient adjustment mounting hole 10603, thereby realize the different positions of second extension pole 10603, the mounting hole 10603, thereby the one end matching structure of the second extension pole 10603.
Wherein, first screw hole has been seted up on the top of first sleeve 10501, and the internally mounted of first screw hole has first locking bolt 10504, and internally mounted through first screw hole has first locking bolt 10504, realizes the locking after first extension rod 10502 stretches out and draws back.
A second threaded hole is formed in the bottom end of the second sleeve 10601, a second locking bolt 10604 is installed inside the second threaded hole, and a second locking bolt 10604 is installed inside the second threaded hole, so that the second extension rod 10602 is locked after being stretched.
Wherein, first antidetonation mechanism 101 is including fixed cover 10101, and fixed cover 10101's top sliding connection has stand 10102, and spliced pole 10103 is installed on stand 10102's top, and spliced pole 10103's top and the bottom of roof 102 are connected, and fixed cover 10101's inside is equipped with gasbag 10104, and gasbag 10104's top and stand 10102's bottom contact are equipped with gasbag 10104 through fixed cover 10101's inside, realize the air supporting shock attenuation, reduce vibration frequency.
Wherein, one side of fixed cover 10101 is equipped with inflation inlet 10105, and the one end of inflation inlet 10105 is connected with one side of gasbag 10104, connects through one end and one side of gasbag 10104 of inflation inlet 10105, realizes that gasbag 10104 aerifys.
The second anti-vibration mechanism 107 comprises a damper 10701, a spring 10702 is sleeved outside the damper 10701, and the spring 10702 is sleeved outside the damper 10701 to realize spring shock absorption.
Wherein, first rubber buffer 103 is installed to the bottom of bottom plate 100, and second rubber buffer 104 is installed on the top of roof 102, through the setting of first rubber buffer 103 and second rubber buffer 104, effectively improves the cushioning nature of product.
The specific use mode and function of the embodiment are as follows:
when using this kind of product, at first, detect whether the junction of this product fastens, place the product at the assigned position after guaranteeing intact, adjust the position of first mount pad 10503 and second mount pad 10603, internally mounted through first screw hole has first locking bolt 10504, realize the locking after first extension rod 10502 is flexible, internally mounted through the second screw hole has second locking bolt 10604, realize the locking after second extension rod 10602 is flexible, at first mount pad 10503 and second mount pad 10603 mounting bolt, make product top and building constructional column be connected, the bottom is connected with the building foundation, inside through fixed cover 10101 is equipped with gasbag 04, realize the 101shock attenuation, reduce the vibrations frequency, one side through inflation inlet 10105 is connected with gasbag 10104, realize that gasbag 10104 aerifys, outside cover through attenuator 01 is equipped with spring 10702, realize the damping spring, setting through first rubber buffer 103 and second rubber buffer 104, effectively improve the cushioning of product, the utility model discloses can effectively realize the air supporting the installation hole, the position of matching hole is adjusted conveniently, the practical value post of the different positions and the higher foundation structure have higher value.
The embodiments of the present invention have been presented for purposes of illustration and description, and are not intended to be exhaustive or limited to the invention in the form disclosed. Many modifications and variations will be apparent to those of ordinary skill in the art. The embodiment was chosen and described in order to best explain the principles of the invention and the practical application, and to enable others of ordinary skill in the art to understand the invention for various embodiments with various modifications as are suited to the particular use contemplated.

Claims (7)

1. An earthquake-resistant support for buildings, comprising a base plate (100), characterized in that: the anti-seismic device is characterized in that a first anti-seismic mechanism (101) is installed at the top end of the bottom plate (100), a top plate (102) is connected to the top end of the first anti-seismic mechanism (101), second anti-seismic mechanisms (107) are installed on four sides of the top end of the bottom plate (100), the top end of the second anti-seismic mechanism (107) is connected with the top end of the top plate (102), first telescopic mechanisms (105) are embedded in four sides of the top end of the bottom plate (100), each first telescopic mechanism (105) comprises a first sleeve (10501), a first extension rod (10502) is connected to the inner side of each first sleeve (10501) in a sliding mode, a first installation seat (10503) is connected to one end of each first extension rod (10502), each second telescopic mechanism (106) is embedded in four sides of the top plate (102), each second telescopic mechanism (106) comprises a second sleeve (10601), a second extension rod (10602) is connected to the inner side of each second sleeve (10601) in a sliding mode, and a second installation seat (10603) is connected to one end of each second extension rod (10602).
2. An earthquake-resistant support for construction as claimed in claim 1, wherein: a first threaded hole is formed in the top end of the first sleeve (10501), and a first locking bolt (10504) is installed inside the first threaded hole.
3. An earthquake-resistant support for construction as claimed in claim 1, wherein: the bottom end of the second sleeve (10601) is provided with a second threaded hole, and a second locking bolt (10604) is installed in the second threaded hole.
4. An earthquake-resistant support for construction as claimed in claim 1, wherein: first antidetonation mechanism (101) are including fixed cover (10101), the top sliding connection of fixed cover (10101) has stand (10102), spliced pole (10103) are installed on the top of stand (10102), the top of spliced pole (10103) and the bottom of roof (102) are connected, the inside of fixed cover (10101) is equipped with gasbag (10104), the top of gasbag (10104) and the bottom of stand (10102) contact.
5. An earthquake-resistant support for construction as claimed in claim 4, wherein: one side of the fixed sleeve (10101) is provided with an inflation port (10105), and one end of the inflation port (10105) is connected with one side of the air bag (10104).
6. An earthquake-resistant support for construction as claimed in claim 1, wherein: the second anti-vibration mechanism (107) comprises a damper (10701), and a spring (10702) is sleeved on the outer side of the damper (10701).
7. An earthquake-resistant support for construction as claimed in claim 1, wherein: a first rubber buffer pad (103) is arranged at the bottom end of the bottom plate (100), and a second rubber buffer pad (104) is arranged at the top end of the top plate (102).
CN202223326306.5U 2022-12-12 2022-12-12 Earthquake-resistant support for building Active CN218622738U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202223326306.5U CN218622738U (en) 2022-12-12 2022-12-12 Earthquake-resistant support for building

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202223326306.5U CN218622738U (en) 2022-12-12 2022-12-12 Earthquake-resistant support for building

Publications (1)

Publication Number Publication Date
CN218622738U true CN218622738U (en) 2023-03-14

Family

ID=85455626

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202223326306.5U Active CN218622738U (en) 2022-12-12 2022-12-12 Earthquake-resistant support for building

Country Status (1)

Country Link
CN (1) CN218622738U (en)

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