Fixed mounting mechanism for building anti-seismic structure

By designing a seismic structure fixing installation mechanism for building including limit frames, fixing frames and mobile sleeves, the looseness and offset problems during installation and fixation of pipelines in the prior art are solved, and stable limit fixation and centering positioning of pipelines of different sizes are achieved.

CN222823943UActive Publication Date: 2025-05-02WUHAN HUICHANGDA COMM TECH ENG CO LTD
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Patent Information

Application Number
CN202421989262.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-16
Publication Date
2025-05-02
Estimated Expiration
2034-08-16

AI Technical Summary

Technical Problem

When installing and fixing pipes of different sizes, existing building seismic structure fixing installation mechanisms are prone to loosening and offset problems, especially the inconvenience of centering positioning and fixing of square pipes.

Method used

A seismic structure fixing installation mechanism for building is designed including a first fixing frame, a second fixing frame and a limiting frame. By flipping the limiting frame and closing the first fixing frame and the second fixing frame, the limiting block, a moving sleeve and a bidirectional screw are used to achieve limit fixing and centralized positioning of the circular and square pipes.

Benefits of technology

It effectively avoids the pipe falling off during vibration and impact, ensures stable and fixed pipes, avoids offset and loosening, and improves installation convenience and safety.

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Abstract

The utility model relates to the technical field of building engineering, in particular to a fixing and mounting mechanism for a building anti-seismic structure. According to the technical scheme, the device comprises a first fixing frame, a second fixing frame and a limiting frame, the top of the first fixing frame is movably provided with the limiting frame, one end of the limiting frame is movably provided with a mounting base, the inner side of the limiting frame is fixedly provided with a limiting block, and the bottom of the first fixing frame is fixedly connected with the second fixing frame; a moving plate is slidably mounted on the inner sides of the second fixing frame and the first fixing frame, and a moving sleeve is slidably mounted on the outer side of the second fixing frame. According to the circular pipeline fixing device, through mutual cooperation of the limiting frame, the limiting block and the mounting base, circular pipelines of different sizes can be conveniently limited and fixed, so that the pipelines are not prone to shaking, and through mutual cooperation of the second fixing frame, the movable sleeve and the limiting plate, the circular pipelines of different sizes can be conveniently fixed; and the square pipeline can be centered and positioned in the middle position, so that the pipeline is not prone to skewing and shifting when fixed.
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Description

Technical Field

[0001] The utility model relates to the technical field of building engineering, in particular to a fixing and installing mechanism for a building earthquake-resistant structure. Background Art

[0002] At present, in the construction process of building projects, earthquake-resistant brackets are usually needed to install pipelines and other equipment. Earthquake-resistant brackets limit the displacement of auxiliary electromechanical engineering facilities, control the vibration of facilities, and transfer loads to various components or devices on the bearing structure. The electromechanical engineering facilities such as water supply and drainage, fire protection, heating, ventilation, air conditioning, gas, heat, electricity, and communications of buildings that have been earthquake-resistantly reinforced can reduce earthquake damage, reduce and prevent the occurrence of secondary disasters as much as possible when an earthquake with the earthquake fortification intensity of the local area occurs, thereby achieving the purpose of reducing casualties and property losses. Among them, the "an earthquake-resistant bracket installation mechanism" disclosed in the application number "CN219345719U" has solved the problem that when fixing pipelines, the bracket may not be able to adapt to pipelines of different sizes, which makes the pipelines easy to be affected. There are many disadvantages of falling off during large-scale vibration and impact. After further searching, it was found that the "seismic bracket installation structure" disclosed by the application number "CN218819011U" has effectively solved the technical disadvantages of first putting the equipment to be fixed into it, and then fixing it with welding or screws, which is very troublesome during installation and disassembly. However, in actual use, there are still many defects in the building seismic structure fixing and installation mechanism of similar structure. For example, when installing and fixing the pipeline, most of them are fixed with a hoop structure, which makes the hoop unable to fit the outer wall of pipelines of different sizes, which is easy to cause looseness. At the same time, it is not convenient to center the square pipeline, which is easy to cause displacement during installation. Therefore, it is necessary to design a building seismic structure fixing and installation mechanism. Utility Model Content

[0003] The purpose of the utility model is to provide a building earthquake-resistant structure fixing and installation mechanism to solve the problems raised in the above-mentioned background technology.

[0004] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: a fixed installation mechanism for an earthquake-resistant structure of a building, comprising a first fixed frame, a second fixed frame and a limit frame, the limit frame is movably installed on the top of the first fixed frame, a mounting seat is movably installed on one end of the limit frame, a limit block is fixedly installed on the inner side of the limit frame, the bottom of the first fixed frame is fixedly connected to the second fixed frame, a movable plate is slidably installed on the inner side of the second fixed frame and the first fixed frame, a movable sleeve is slidably installed on the outer side of the second fixed frame, the limit plate is fixedly installed on the top of the movable sleeve, and a bidirectional screw is rotatably installed on the bottom of the second fixed frame.

[0005] By flipping the limit frame, the circular pipe can be conveniently limited and fixed by the limit block, which can avoid the circular pipe from shaking. By closing the first fixing frame and the second fixing frame, the square pipe can be conveniently fixed. By rotating the bidirectional screw rod, the movable sleeve can be driven to move along the second fixing frame, so that the limit plate can clamp the square pipe to the center position, which can avoid deviation.

[0006] Preferably, an anti-seismic bracket is fixedly installed on the top of the first fixing bracket outside the limiting bracket, and the first fixing bracket is fixedly connected to the second fixing bracket by a fixing screw. The anti-seismic bracket is fixed in a suitable position, and the structural strength of the anti-seismic bracket can be used for earthquake resistance. The fixing screw can conveniently install and fix the first fixing bracket to the second fixing bracket.

[0007] Preferably, the first fixed frame and the limiting frame are movably mounted via a movable seat, and a rubber block is fixedly mounted on the inner side of the limiting block. The movable seat can be used to enable the limiting frame to flip, and the rubber block can be used to prevent the circular pipe from slipping.

[0008] Preferably, the limiting frame and the mounting seat are movably mounted via a movable shaft, and a bolt hole is provided inside the mounting seat. The movable shaft can be used to turn the limiting frame over so that the mounting seat can be rotated accordingly, and the mounting seat can be conveniently connected and fixed by passing a bolt through the bolt hole.

[0009] Preferably, the movable sleeve and the bidirectional screw are threadedly installed through a threaded sleeve, and a turntable is fixedly installed at one end of the bidirectional screw. The rotation of the bidirectional screw can drive the threaded sleeve to move relatively, which is convenient for driving the limit plate to move synchronously, and the turntable can be used to conveniently operate the bidirectional screw to rotate.

[0010] Preferably, a movable groove cooperating with the movable plate is provided inside the first fixed frame and the second fixed frame, and a buffer spring is fixedly connected between the movable plate and the movable groove. The movable plate can be moved up and down through the movable groove, and the buffer spring can be used to conveniently make the movable plate buffer the square pipe.

[0011] Preferably, a protective pad is attached to the inner side of the limit plate, and the material of the protective pad is silicone. The protective pad can prevent the limit plate from scratching the square pipe when clamping it, and at the same time can increase the friction between the limit plate and the square pipe to avoid sliding.

[0012] Compared with the prior art, the beneficial effects of the utility model are:

[0013] 1. By setting the limit frame, the limit block and the mounting seat to cooperate with each other, the limit frame can be turned over to close, so that the limit block can be in contact with the outer wall of the circular pipe, and circular pipes of different sizes can be limited and fixed more conveniently, so that the pipe is not easy to shake.

[0014] 2. By providing a second fixed frame, the cooperation between the movable sleeve and the limiting plate, the movable sleeve can be driven to move along the second fixed frame, and the square pipe can be centered in the middle position through the limiting plate, so that the pipe is not prone to skew or deviation when fixed. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 This is a schematic diagram of the main structure of the utility model;

[0016] Figure 2 This is a schematic diagram of the structure of the mobile sleeve of the utility model;

[0017] Figure 3 This is a schematic diagram of the limit frame structure of the utility model;

[0018] Figure 4 It is a schematic diagram of the structure of the first fixing frame of the utility model.

[0019] In the figure: 1. earthquake-resistant bracket; 2. first fixed frame; 3. second fixed frame; 301. movable groove; 302. movable plate; 303. buffer spring; 4. movable sleeve; 401. threaded sleeve; 402. limit plate; 403. protective pad; 5. bidirectional screw; 501. turntable; 6. fixed screw; 7. limit frame; 701. mounting seat; 702. limit block; 703. bolt hole; 704. movable seat; 705. rubber block; 706. movable shaft. DETAILED DESCRIPTION

[0020] The technical solution of the utility model is further described below in conjunction with the accompanying drawings and specific embodiments.

[0021] Embodiment 1

[0022] like Figure 1 , Figure 2 , Figure 3 and Figure 4As shown, the utility model proposes a building seismic structure fixing and installation mechanism, comprising a first fixing frame 2, a second fixing frame 3 and a limiting frame 7, the limiting frame 7 is movably installed on the top of the first fixing frame 2, a mounting seat 701 is movably installed on one end of the limiting frame 7, a limiting block 702 is fixedly installed on the inner side of the limiting frame 7, the second fixing frame 3 is fixedly connected to the bottom of the first fixing frame 2, a moving plate 302 is slidably installed on the inner side of the second fixing frame 3 and the first fixing frame 2, a moving sleeve 4 is slidably installed on the outer side of the second fixing frame 3, a limiting plate 402 is fixedly installed on the top of the moving sleeve 4, and a bidirectional screw rod 5 is rotatably installed on the bottom of the second fixing frame 3;

[0023] An anti-seismic bracket 1 is fixedly installed on the top of the first fixed frame 2 outside the limit frame 7, and the first fixed frame 2 and the second fixed frame 3 are fixedly connected by a fixed screw 6, the first fixed frame 2 and the limit frame 7 are movably installed through a movable seat 704, a rubber block 705 is fixedly installed on the inner side of the limit block 702, the movable sleeve 4 and the bidirectional screw rod 5 are threadedly installed through a threaded sleeve 401, and a turntable 501 is fixedly installed on one end of the bidirectional screw rod 5, and a movable groove 301 cooperating with the movable plate 302 is opened inside the first fixed frame 2 and the second fixed frame 3, and a buffer spring 303 is fixedly connected between the movable plate 302 and the movable groove 301.

[0024] The working principle of the building seismic structure fixing and installation mechanism based on Example 1 is: by fixing the seismic support 1 at a suitable position of the building, placing the circular pipe between the limiting frames 7, and closing the limiting frames 7 by flipping them, the limiting block 702 can be made to contact the outer wall of the circular pipe, and the rubber block 705 can be used to increase the friction between the limiting block 702 and the outer wall of the pipe to avoid slipping, and at the same time, the surface of the pipe can be protected to avoid the outer wall of the pipe being squeezed and damaged, and circular pipes of different sizes can be conveniently limited and fixed to prevent the circular pipes from shaking easily. By using bolts, the mounting seats 701 can be conveniently fixed, and the limiting frames 7 can be conveniently fixed to avoid falling off from the circular pipe.

[0025] By placing the square between the moving plates 302, the turntable 501 can be used to operate the bidirectional screw rod 5 to rotate. The bidirectional screw rod 5 and the threaded sleeve 401 are threadedly installed. The rotation of the bidirectional screw rod 5 can drive the two sets of threaded sleeves 401 to move away from each other and towards each other. By driving the threaded sleeves 401 to move towards each other, the limiting plates 402 can be driven to close, so that the two sides of the square pipe can be clamped conveniently, and the square pipe can be positioned in the middle position, so that the square pipe is not prone to skew and deviation. By using the fixing screw 6 The second fixing frame 3 can be conveniently closed with the first fixing frame 2, and the first fixing frame 2 and the second fixing frame 3 can conveniently clamp and fix the square pipe. By squeezing the square pipe, the movable plate 302 can be moved in the movable groove 301, and the buffer spring 303 can be squeezed. Through the buffering effect of the buffer spring 303, the squeezing force on the square pipe can be reduced to avoid deformation of the square pipe caused by excessive squeezing force. At the same time, when it is vibrated, the buffer spring 303 can buffer the impact force to reduce damage to the square pipe.

[0026] Embodiment 2

[0027] like Figure 2 and Figure 3 As shown, the utility model proposes a building seismic structure fixing installation mechanism. Compared with the first embodiment, this embodiment also includes: the limiting frame 7 and the mounting seat 701 are movably installed through a movable shaft 706, and a bolt hole 703 is opened inside the mounting seat 701, and a protective pad 403 is adhered to the inner side of the limiting plate 402, and the material of the protective pad 403 is silicone.

[0028] In this embodiment, Figure 3 As shown, the mounting seat 701 can be rotated by the movable shaft 706, so that the two sets of mounting seats 701 can be kept in a vertically fitted state, which is convenient for connecting and fixing operations through the bolt holes 703; Figure 2 As shown, when the square pipe is clamped by the limiting plate 402, the protective pad 403 can be used for protection to avoid damage to the square pipe when clamping.

[0029] The above-mentioned specific embodiments are only several preferred embodiments of the present invention. Based on the technical solution of the present invention and the relevant inspiration of the above-mentioned embodiments, those skilled in the art can make various alternative improvements and combinations to the above-mentioned specific embodiments.

Claims

1. A building seismic structure fixing and installation mechanism, comprising a first fixing frame (2), a second fixing frame (3) and a limiting frame (7), characterized in that: A limiting frame (7) is movably mounted on the top of the first fixing frame (2); a mounting seat (701) is movably mounted on one end of the limiting frame (7); a limiting block (702) is fixedly mounted on the inner side of the limiting frame (7); a second fixing frame (3) is fixedly connected to the bottom of the first fixing frame (2); a moving plate (302) is slidably mounted on the inner side of the second fixing frame (3) and the first fixing frame (2); a moving sleeve (4) is slidably mounted on the outer side of the second fixing frame (3); a limiting plate (402) is fixedly mounted on the top of the moving sleeve (4); and a bidirectional screw rod (5) is rotatably mounted on the bottom of the second fixing frame (3).

2. A building seismic structure fixing and installation mechanism according to claim 1, characterized in that: An anti-seismic bracket (1) is fixedly mounted on the top of the first fixing frame (2) outside the limiting frame (7), and the first fixing frame (2) and the second fixing frame (3) are fixedly connected via a fixing screw (6).

3. The structure for fixing and installing an earthquake-resistant building structure according to claim 1, characterized in that: The first fixing frame (2) and the limiting frame (7) are movably mounted via a movable seat (704), and a rubber block (705) is fixedly mounted on the inner side of the limiting block (702).

4. The structure for fixing and installing an earthquake-resistant building structure according to claim 1, characterized in that: The limiting frame (7) and the mounting seat (701) are movably mounted via a movable shaft (706), and a bolt hole (703) is provided inside the mounting seat (701).

5. The structure for fixing and installing an earthquake-resistant building structure according to claim 1, characterized in that: The movable sleeve (4) and the bidirectional screw rod (5) are threadedly mounted via a threaded sleeve (401), and a rotating disk (501) is fixedly mounted on one end of the bidirectional screw rod (5).

6. The structure for fixing and installing an earthquake-resistant building structure according to claim 1, characterized in that: A movable groove (301) cooperating with the movable plate (302) is provided inside the first fixed frame (2) and the second fixed frame (3), and a buffer spring (303) is fixedly connected between the movable plate (302) and the movable groove (301).

7. The structure for fixing and installing an earthquake-resistant building structure according to claim 1, characterized in that: A protective pad (403) is adhered to the inner side of the limiting plate (402), and the material of the protective pad (403) is silicone.

Citation Information

Patent Citations

  • An anti-seismic bracing installation structure

    CN218819011U

  • Anti-seismic support mounting mechanism

    CN219345719U