Anti-skid support for anti-seismic pipeline

By using an anti-slip bracket design and a combination of springs and rubber pressure plates, the problem of slippage of the anti-vibration pipe during thermal expansion and contraction is solved, thus achieving stable pipe fixation in a vibrating environment.

CN223740228UActive Publication Date: 2025-12-30GUANGDONG CHANGDIAN NEW BUILDING MATERIALS TECH CO LTD
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Patent Information

Application Number
CN202520480953.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-19
Publication Date
2025-12-30
Estimated Expiration
2035-03-19

AI Technical Summary

Technical Problem

Traditional seismic-resistant pipe fixing methods are prone to slippage between the pipe and the support under thermal expansion and contraction, resulting in positional displacement and unstable fixing.

Method used

The anti-slip bracket design includes a mounting bracket, a fixing bracket, a threaded rod, a fixing plate, a spring, and a pressure plate. The increased pressure from the spring and the friction of the rubber pressure plate, combined with the adjustment of the threaded rod, ensures the stable fixation of the pipe.

Benefits of technology

Provides expandable space when the pipeline expands and contracts due to heat, maintains fixed stability, reduces slippage, and ensures that the pipeline is not easy to slip in a vibrating environment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of anti-seismic pipelines, and discloses an anti-skid support for an anti-seismic pipeline, which comprises a mounting frame, the upper end of the mounting frame is fixedly connected with a fixing frame, the anti-seismic pipeline is mounted between the fixing frame and the mounting frame, two sides of the upper end of the fixing frame are in threaded connection with threaded rods, and the threaded rods are rotatably connected with a fixing plate close to the inner side of the fixing frame. The spring is driven by the arranged pressing plate to be extruded, the pressing plate is attached to the anti-seismic pipeline, and therefore the anti-seismic pipeline can be fixed conveniently, the spring can provide proper compression force, the pressing plate can be fixed more stably, the anti-seismic pipeline is not excessively pressed, and the anti-seismic pipeline can be fixed more stably. The anti-seismic pipeline can be fixed more stably compared with the mode that the anti-seismic pipeline is fixed only through a pressing plate, and when the anti-seismic pipeline is subjected to thermal barrier cold contraction, the pipeline can extrude the pressing plate, so that the anti-seismic pipeline provides a movable telescopic space.
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Description

TECHNICAL FIELD

[0001] The application relates to the technical field of anti-seismic pipelines, in particular to an anti-skid support for an anti-seismic pipeline. BACKGROUND

[0002] An anti-seismic pipeline is a special pipeline system designed to cope with the vibration and fluctuation of natural disasters such as earthquakes. With the acceleration of urbanization and the complication of building structures, pipeline systems are increasingly widely used in modern buildings, industries, transportation and other fields. Anti-seismic pipelines effectively reduce the impact of seismic waves by using specific materials, structures and fixing methods during design and manufacturing, ensuring the normal operation of the pipeline system in extreme environments such as earthquakes, avoiding pipeline rupture, leakage and other accidents, and protecting the safety and use of buildings.

[0003] The installation of an anti-seismic pipeline requires special attention to the fixing method of the pipeline. Traditional pipeline fixing methods usually use simple supports or clamps, but when an anti-seismic pipeline is used, the sliding between the pipeline and the support may occur due to thermal expansion and contraction, causing the position of the anti-seismic pipeline to deviate. Therefore, in order to solve the above-mentioned problems, an anti-skid support for an anti-seismic pipeline is designed. CONTENT OF THE INVENTION

[0004] In order to solve the problem, the application provides an anti-skid support for an anti-seismic pipeline.

[0005] The anti-skid support for an anti-seismic pipeline provided by the application adopts the following technical scheme:

[0006] An anti-skid support for an anti-seismic pipeline comprises a mounting frame, a fixed frame is fixedly connected to the upper end of the mounting frame, an anti-seismic pipeline is installed between the fixed frame and the mounting frame, threaded rods are threadedly connected to the upper ends of both sides of the fixed frame, fixed plates are rotationally connected to the inner sides of the fixed frame close to the threaded rods, springs are fixedly connected to the lower ends of the fixed plates, and pressing plates are fixedly connected to the lower ends of the springs.

[0007] Preferably, the pressing plates are arc-shaped and made of rubber.

[0008] Preferably, a handle is fixedly connected to the upper end of the threaded rod, and the handle is provided with anti-skid lines.

[0009] Preferably, a sliding pipe is fixedly connected to the upper end of the pressing plate, a sliding rod is slidingly connected to the upper end of the sliding pipe, and a side wall of the fixed frame is fixedly connected to the upper end of the sliding rod.

[0010] Preferably, a support plate is fixedly connected to the middle of the upper end of the mounting frame, support blocks are fixedly connected to the upper end of the support plate, and the upper end of each support block is arc-shaped.

[0011] Preferably, mounting rods are fixedly connected to both sides of the upper end of the mounting frame, and the mounting rods are mounted on a wall surface.

[0012] Preferably, the fixing frame is fixedly connected with mounting plates at lower ends of two sides, and the mounting plates are fixedly connected with the mounting frame through screws.

[0013] To sum up, the application has the following beneficial technical effects:

[0014] In the utility model, the spring is extruded by the pressing plate, the pressing plate is attached to the anti-seismic pipeline, the anti-seismic pipeline is fixed conveniently, the spring can provide appropriate compression force, the fixation of the pressing plate is more stable, the anti-seismic pipeline is not excessively pressed, compared with the fixation of the anti-seismic pipeline by the pressing plate alone, the fixation is more stable, when the thermal barrier of the anti-seismic pipeline cold shrinks, the pipeline extrudes the pressing plate, the anti-seismic pipeline provides movable telescopic space, under the action of the spring, the pipeline has a certain degree of freedom, but the spring always exerts force on the anti-seismic pipeline, the sliding property of the anti-seismic pipeline is lower than that of the pressing plate, therefore, the design of the pressing plate and the spring is not easy to slide. BRIEF DESCRIPTION OF DRAWINGS

[0015] Fig. 1 is a partial cross-sectional schematic view of an elevation structure of a main body of the application embodiment;

[0016] Fig. 2 is a structural schematic view of the fixing frame clamping the anti-seismic pipeline of the application embodiment;

[0017] Fig. 3 is a structural schematic view of the pressing plate, the spring, the threaded rod and the fixing plate of the application embodiment.

[0018] The drawing reference is explained: 1, mounting frame; 2, mounting rod; 3, support plate; 31, support block; 4, fixing frame; 41, mounting plate; 5, threaded rod; 51, handle; 6, fixing plate; 7, spring; 8, pressing plate; 9, sliding pipe; 91, sliding rod. DETAILED DESCRIPTION

[0019] The following combines the drawings Figs. 1-3 The application is further explained.

[0020] The application embodiment discloses an anti-skid support for an anti-seismic pipeline. Figs. 1-3The utility model provides an anti -skid support for anti -seismic pipeline, including mounting frame 1, mounting frame 1 upper end fixed connection fixed frame 4, and be equipped with anti -seismic pipeline between fixed frame 4 and mounting frame 1, fixed frame 4 upper end both sides screw thread connection threaded rod 5, threaded rod 5 is close to fixed frame 4 inboard rotary connection fixed plate 6, fixed plate 6 lower end fixed connection spring 7, spring 7 lower end fixed connection pressure plate 8. Threaded rod 5 is screwed with fixed frame 4, so threaded rod 5 will drop and drive fixed plate 6 to drop, make fixed plate 6 extrude spring 7 shrink, spring 7 will provide force to pressure plate 8 after shrink, make pressure plate 8 extrude anti -seismic pipeline, to hold anti -seismic pipeline. Spring 7 can provide appropriate compression force, make the fixation of pressure plate 8 more stable, and not excessively suppress anti -seismic pipeline, compared with the fixation of anti -seismic pipeline more stable using pressure plate 8 simply, and when the thermal barrier cold shrinkage of anti -seismic pipeline, also can be pipeline extrusion pressure plate 8, make anti -seismic pipeline provide telescopic space of movement.

[0021] By adopting the above technical scheme, the pressure plate 8 is arc-shaped, the pressure plate 8 is made of rubber material, the friction between the pressure plate 8 and the surface of the anti-seismic pipeline is increased, the sliding is avoided, and the pressure plate 8 has a certain plasticity and can contact different diameter anti-seismic pipelines.

[0022] By adopting the above technical scheme, the upper end of the threaded rod 5 is fixedly connected with a handle 51, the handle 51 is provided with anti-skid lines, the handle 51 is conveniently rotated, and the handle 51 drives the threaded rod 5.

[0023] By adopting the above technical scheme, the upper end of the pressure plate 8 is fixedly connected with a sliding pipe 9, the upper end of the sliding pipe 9 is slidably connected with a sliding rod 91, the upper end of the sliding rod 91 is fixedly connected with the side wall of the fixed frame 4, the sliding rod 91 and the sliding pipe 9 are arranged to limit the fixed plate 6, and the fixed plate 6 and the lower end of the pressure plate 8 are prevented from tilting.

[0024] By adopting the above technical scheme, the upper end of the mounting frame 1 is fixedly connected with a support plate 3, the upper end of the support plate 3 is fixedly connected with a support block 31, the upper end of the support block 31 is arc-shaped, the bottom of the anti-seismic pipeline is lifted, the connection between the anti-seismic pipeline and the mounting frame 1 is more matched, and the support block 31 is arranged to support the anti-seismic pipeline.

[0025] By adopting the above technical scheme, the upper end of the mounting frame 1 is fixedly connected with mounting rods 2 on both sides, the mounting rods 2 are mounted on the wall surface, and the mounting rods 2 are arranged to fix the mounting frame 1 on the wall surface.

[0026] By adopting the above technical scheme, the lower end of the fixed frame 4 is fixedly connected with mounting plates 41 on both sides, the mounting plates 41 are fixedly connected with the mounting frame 1 through screws, and the fixed frame 4 is fixed on the mounting frame 1.

[0027] The implementation principle of the anti-slip bracket for seismic-resistant pipeline in this application embodiment is as follows: the mounting rod 2 is fixed on the front, so that the mounting frame 1 is placed at the lower end of the wall. Then, the seismic-resistant pipeline is placed on the support block 31 of the mounting frame 1. Then, the fixing frame 4 is moved so that the mounting plates 41 on both sides of the fixing frame 4 come into contact with the mounting frame 1. The mounting plates 41 and the mounting frame 1 are connected and fixed by screws. The pressure plate 8 at the lower end of the fixing frame 4 comes into contact with the seismic-resistant pipeline. Then, the handles 51 on both sides are rotated so that the handles 51 drive the threaded rod 5 to rotate. The threaded rod 5 is threadedly connected to the fixing frame 4. Therefore, the threaded rod 5 will descend and drive the fixing plate 6 to descend, so that the fixing plate 6 compresses the spring 7 and contracts. After the spring 7 contracts, it will provide a force to the pressure plate 8, so that the pressure plate 8 compresses the seismic-resistant pipeline and clamps the seismic-resistant pipeline. Spring 7 provides appropriate compressive force, making the fixation of pressure plate 8 more secure without excessively compressing the seismic-resistant pipe. Compared to simply using pressure plate 8 for fixation, this makes the fixation of the seismic-resistant pipe more stable. Furthermore, when the seismic-resistant pipe contracts due to thermal shock, it can also compress pressure plate 8, providing the seismic-resistant pipe with expandable and movable space. The compression of spring 7 continuously ensures the fixation of the seismic-resistant pipe. Although the pipe has a certain degree of freedom under the action of spring 7, the sliding property of the seismic-resistant pipe is lower than that of directly using pressure plate 8 for fixation because spring 7 always applies force to the seismic-resistant pipe. Therefore, the design of pressure plate 8 plus spring 7 is less prone to slippage.

[0028] Finally, the following points should be noted: First, in the description of this application, it should be noted that, unless otherwise specified and limited, the terms "installation", "connection", and "linkage" should be interpreted broadly, and can be mechanical or electrical connections, or internal connections between two components, or direct connections. "Up", "down", "left", "right", etc. are only used to indicate relative positional relationships. When the absolute position of the described object changes, the relative positional relationship may change.

[0029] Secondly: The accompanying drawings of the embodiments disclosed in this utility model only involve the structures involved in the embodiments disclosed in this utility model. Other structures can refer to the general design. In the absence of conflict, the same embodiment and different embodiments of this utility model can be combined with each other.

[0030] Finally: The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

[0031] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.

Claims

1. An anti-skid support for a seismic pipe comprising a mounting bracket (1), characterized in that: The mounting frame (1) upper end fixedly connected with fixed frame (4), the fixed frame (4) and mounting frame (1) between the installation of anti-vibration pipeline, the fixed frame (4) upper end both sides threadedly connected with threaded rod (5), the threaded rod (5) is close to the inboard rotationally connected with fixed plate (6) of fixed frame (4), the fixed plate (6) lower end fixedly connected with spring (7), the spring (7) lower end fixedly connected with pressing plate (8).

2. The anti-slip support for a seismic pipe according to claim 1, wherein: The pressing plate (8) is arc-shaped, and the pressing plate (8) is made of rubber material.

3. The anti-slip support for a seismic pipe of claim 1, wherein: The threaded rod (5) upper end fixedly connected with handle (51), the handle (51) is provided with anti-skid lines.

4. The anti-slip support for a seismic pipe of claim 1, wherein: The pressing plate (8) upper end fixedly connected with sliding pipe (9), the sliding pipe (9) upper end slidingly connected with sliding rod (91), the sliding rod (91) upper end fixedly connected with fixed frame (4) side wall.

5. The anti-slip support for a seismic pipe of claim 1, wherein: The mounting frame (1) upper end middle part fixedly connected with support plate (3), the support plate (3) upper end fixedly connected with support block (31), the support block (31) upper end is arc-shaped.

6. The anti-slip support for a seismic pipe of claim 1, wherein: The mounting frame (1) upper end both sides fixedly connected with mounting rod (2), the mounting rod (2) is installed on the wall surface.

7. The anti-slip support for a seismic pipe of claim 1, wherein: The fixed frame (4) both sides lower end fixedly connected with mounting plate (41), the mounting plate (41) is fixedly connected with mounting frame (1) through screw.