Anti-seismic frame structure

By designing a seismic bracing structure suitable for square and round pipes, and utilizing a combination of anti-vibration horizontal plates, inclined plates, and inclined plate springs, the problem that existing seismic bracing structures cannot adapt to pipes of different shapes is solved, achieving a highly versatile pipe fixing and seismic protection effect.

CN223754831UActive Publication Date: 2026-01-02SHANGHAI LINGHAN COMPUTER TECH CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202520096218.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-16
Publication Date
2026-01-02
Estimated Expiration
2035-01-16

AI Technical Summary

Technical Problem

Existing seismic bracing cannot be applied to both square and round pipes, resulting in low versatility.

Method used

An anti-vibration frame structure was designed, which includes a frame assembly and an anti-vibration assembly. The pipe is fixed by a hanging rod mechanism and a fixing mechanism. The anti-vibration assembly consists of an anti-vibration horizontal plate, an anti-vibration inclined plate, and an inclined plate spring. It can adapt to pipes of different shapes and achieves the anti-vibration effect by utilizing the elastic force of the inclined plate spring.

Benefits of technology

This design enables the seismic bracing system to simultaneously fix both square and round pipes, improving its versatility and enhancing its ability to fix and resist seismic damage to pipes.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223754831U_ABST
    Figure CN223754831U_ABST
Patent Text Reader

Abstract

The utility model discloses an anti-seismic frame structure which is used for fixing a pipeline and comprises a frame body assembly and an anti-seismic assembly. The frame body assembly comprises a suspender mechanism and a fixing mechanism; the suspender mechanism is arranged on the fixing mechanism and used for being connected with the outside, and the fixing mechanism is used for fixing a pipeline; the anti-vibration assembly comprises an anti-vibration transverse plate, an anti-vibration inclined plate and an inclined plate spring; caulking grooves are formed in the positions, corresponding to the shockproof transverse plate and the shockproof inclined plates, of the fixing mechanism, the shockproof transverse plate is partially located in the caulking grooves, the two ends of the shockproof transverse plate are rotationally connected with the shockproof inclined plates, the first ends of the inclined plate springs are connected with the shockproof inclined plates, the second ends of the inclined plate springs are connected into the caulking grooves, and the pipeline is located on the shockproof transverse plate and the shockproof inclined plates. The anti-seismic frame can be suitable for fixing square or round pipelines.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of support and hanger, particularly relates to an anti-seismic frame structure. BACKGROUND

[0002] Support and hanger is the combination of support and hanger, plays the function of bearing the weight of each accessory and medium, restraining and limiting the unreasonable displacement of building components and controlling component vibration in each construction link, has extremely important role to the safe operation of building facilities, and the anti-seismic frame is a kind of support and hanger, the current anti-seismic frame can only single fixed square pipe or circular pipe, selects different anti-seismic frames according to different pipe shapes, leading to the low versatility of anti-seismic frame, cannot simultaneously apply to the installation of square pipe and circular pipe. SUMMARY

[0003] According to the utility model embodiment, an anti-seismic frame structure is provided for fixing the pipe, comprising: frame body assembly and shockproof assembly;

[0004] The frame body assembly comprises: a hanger rod mechanism and a fixing mechanism;

[0005] The hanger rod mechanism is arranged on the fixing mechanism, and the hanger rod mechanism is used for being connected with the outside, and the fixing mechanism is used for fixing the pipe;

[0006] The shockproof assembly comprises: a shockproof horizontal plate, a shockproof inclined plate and an inclined plate spring;

[0007] The fixing mechanism is provided with an embedding groove corresponding to the shockproof horizontal plate and the shockproof inclined plate, the shockproof horizontal plate is partially located in the embedding groove, both ends of the shockproof horizontal plate are rotatably connected with the shockproof inclined plate, a first end of the inclined plate spring is connected with the shockproof inclined plate, and a second end of the inclined plate spring is connected into the embedding groove, and the pipe is located on the shockproof horizontal plate and the shockproof inclined plate.

[0008] Further, the embedding groove comprises: a horizontal plate embedding groove and an inclined plate embedding groove, the shockproof horizontal plate is slidably arranged in the horizontal plate embedding groove, the horizontal plate embedding groove is provided with a horizontal plate spring, one end of the horizontal plate spring is connected with the inner wall of the horizontal plate embedding groove, and the other end of the horizontal plate spring is connected with the shockproof horizontal plate, the inclined plate embedding groove is arranged corresponding to the shockproof inclined plate, and the size of the inclined plate embedding groove is related to the shockproof inclined plate.

[0009] Further, a rotating shaft is arranged on the inner wall of the inclined plate embedding groove, a spring ring is rotatably arranged on the rotating shaft, and the spring ring is connected with the second end of the inclined plate spring.

[0010] Further, when the shockproof horizontal plate and the shockproof inclined plate are contracted into the embedding groove, the edges of the shockproof horizontal plate and the shockproof inclined plate are flush with the outer surface of the fixing mechanism.

[0011] Further, the fixing mechanism comprises: an upper fixed plate and a lower fixed plate;

[0012] The hanging rod mechanism is arranged on the upper fixed plate, and the upper fixed plate and the lower fixed plate are both provided with shockproof assemblies, and the pipeline is located between the two shockproof assemblies.

[0013] Further, the fixing mechanism further comprises adjusting rods, fixing nuts and fixing side plates.

[0014] The upper fixed plate and the lower fixed plate are both provided with adjusting holes, the adjusting rods are arranged in the adjusting holes, the two adjusting rods are located on the two sides of the shockproof assemblies, the fixing nuts are used for fixing the adjusting rods on the upper fixed plate and the lower fixed plate, the fixing side plates are arranged on the adjusting rods, and the two adjusting rods are used for fixing the pipeline.

[0015] Further, the shockproof horizontal plates, the shockproof inclined plates and the fixing side plates are all provided with anti-collision layers.

[0016] Further, the hanging rod mechanism comprises vertical hanging rods and inclined hanging rods.

[0017] The upper fixed plate is provided with the vertical hanging rods and the inclined hanging rods at two ends, the vertical hanging rods are arranged perpendicularly to the upper fixed plate, the inclined hanging rods are hinged to the upper fixed plate, and the vertical hanging rods and the inclined hanging rods are used for being connected with the outside.

[0018] According to the anti-shock frame structure, the fixing mechanism is hung by the hanging rod mechanism, the pipeline to be fixed is conveyed between the two shockproof assemblies, if the pipeline is circular, the elastic force of the inclined plate spring pushes the shockproof inclined plate, the shockproof inclined plate rotates on the shockproof horizontal plate, the four shockproof inclined plates are used for fixing the circular pipeline, and the inclined plate spring can play a shockproof role. If the pipeline is square, the pipeline pushes the parts of the shockproof horizontal plate and the shockproof inclined plate back into the embedding grooves or completely pushes the shockproof horizontal plate and the shockproof inclined plate back into the embedding grooves, the shockproof horizontal plate and the shockproof inclined plate are used for fixing the pipeline, and the anti-shock frame can be suitable for fixing square or circular pipelines.

[0019] It is to be understood that both the foregoing general description and the following detailed description are exemplary and intended to provide further explanation of the subject technology claimed. BRIEF DESCRIPTION OF DRAWINGS

[0020] Fig. 1 FIG. 1 is a structural diagram of an anti-shock frame structure according to an embodiment of the present application;

[0021] Fig. 2 FIG. 2 is a front view of an anti-shock frame structure according to an embodiment of the present application;

[0022] Fig. 3 FIG. 3 is a sectional view of an anti-shock frame structure according to an embodiment of the present application.

[0023] The figure mark: 1 is the upper fixed plate, 2 is the lower fixed plate, 3 is the adjusting rod, 4 is the fixed nut, 5 is the fixed side plate, 7 is the vertical hanger, 8 is the inclined hanger, 9 is the shockproof horizontal plate, 10 is the shockproof inclined plate, 11 is the inclined plate spring, 12 is the rotating shaft, 13 is the spring ring, 14 is the horizontal plate spring. DETAILED DESCRIPTION

[0024] The preferred embodiments of the utility model will be described in detail below with reference to the drawings, and the utility model will be further described.

[0025] Firstly, the preferred embodiments of the utility model will be described in detail below with reference to the drawings, and the utility model will be further described. Figs. 1-3 A shockproof frame structure according to the embodiments of the utility model is described for fixing a pipeline.

[0026] As shown in the drawings, a shockproof frame structure according to the embodiments of the utility model is described for fixing a pipeline, which comprises a frame assembly and a shockproof assembly. Figs. 1-3 The frame assembly comprises a hanger mechanism and a fixing mechanism.

[0027] The hanger mechanism is arranged on the fixing mechanism, and the hanger mechanism is used for connecting with the outside, and the fixing mechanism is used for fixing the pipeline.

[0028] The shockproof assembly comprises a shockproof horizontal plate 9, a shockproof inclined plate 10 and an inclined plate spring 11.

[0029] The fixing mechanism is provided with a recess at a position corresponding to the shockproof horizontal plate 9 and the shockproof inclined plate 10, the shockproof horizontal plate 9 is partially arranged in the recess, the shockproof inclined plate 10 is rotatably connected to both ends of the shockproof horizontal plate 9, the first end of the inclined plate spring 11 is connected to the shockproof inclined plate 10, and the second end is connected to the recess, and the pipeline is arranged on the shockproof horizontal plate 9 and the shockproof inclined plate 10.

[0030] The fixing mechanism is hoisted by the hanger mechanism, and the pipeline to be fixed is transmitted between the two shockproof assemblies, if the pipeline is circular, the inclined plate spring 11 pushes the shockproof inclined plate 10 by the elastic force, so that the shockproof inclined plate 10 rotates on the shockproof horizontal plate 9, the pipeline is fixed by the four shockproof inclined plates 10, and the shockproof function is realized by the inclined plate spring 11. If the pipeline is square, the pipeline presses the shockproof horizontal plate 9 and the shockproof inclined plate 10 back into the recess, or the shockproof horizontal plate 9 and the shockproof inclined plate 10 are completely pressed back into the recess, so that the shockproof horizontal plate 9 and the shockproof inclined plate 10 fix the pipeline, and the shockproof frame can be used for fixing the square or circular pipeline.

[0031] As shown in the drawings, a shockproof frame structure according to the embodiments of the utility model is described for fixing a pipeline, which comprises a frame assembly and a shockproof assembly.

[0032] Fig. 3 ​As shown, the slot includes: horizontal plate slot and inclined plate slot, the shockproof horizontal plate 9 is slidingly arranged in the horizontal plate slot, the horizontal plate slot is provided with a horizontal plate spring 14, one end of the horizontal plate spring 14 is connected with the inner wall of the horizontal plate slot, the other end is connected with the shockproof horizontal plate 9, the inclined plate slot is provided corresponding to the shockproof inclined plate 10, the size of the inclined plate slot is related to the shockproof inclined plate 10. The inner wall of the inclined plate slot is provided with a rotating shaft 12, the rotating shaft 12 is rotatably provided with a spring ring 13, and the spring ring 13 is connected with the second end of the inclined plate spring 11. When the shockproof horizontal plate 9 and the shockproof inclined plate 10 are retracted into the slot, the edges of the shockproof horizontal plate 9 and the shockproof inclined plate 10 are flush with the outer surface of the fixing mechanism.

[0033] When the pipe is square, the square pipe can press the shockproof horizontal plate 9 and the shockproof inclined plate 10 back into the slot, so that the fixing mechanism fixes the pipe. The square pipe can press part of the shockproof horizontal plate 9 and the shockproof inclined plate 10 back into the slot, and the inclined plate spring 11 and the horizontal plate spring 14 can play a shockproof effect on the pipe.

[0034] As shown in the figure, Figs. 1-3 The fixing mechanism includes: an upper fixed plate 1 and a lower fixed plate 2;

[0035] The hanger mechanism is arranged on the upper fixed plate 1, and the upper fixed plate 1 and the lower fixed plate 2 are both provided with a shockproof assembly, and the pipe is located between the two shockproof assemblies.

[0036] The fixing mechanism further includes: an adjusting rod 3, a fixed nut 4 and a fixed side plate 5;

[0037] The two ends of the upper fixed plate 1 and the lower fixed plate 2 are both provided with adjusting holes, the adjusting rod 3 is arranged in the adjusting hole, the two adjusting rods 3 are respectively located on the two sides of the shockproof assembly, the fixed nut 4 is used to fix the adjusting rod 3 on the upper fixed plate 1 and the lower fixed plate 2, and the fixed side plate 5 is arranged on the adjusting rod 3. The two adjusting rods 3 are used to fix the pipe. The shockproof horizontal plate 9, the shockproof inclined plate 10 and the fixed side plate 5 are all provided with an anti-collision layer.

[0038] By adjusting the adjusting rod 3, the distance between the upper fixed plate 1 and the lower fixed plate 2 and the distance between the two adjusting rods 3 can be adjusted, so that whether the pipe can completely press the shockproof horizontal plate 9 and the shockproof inclined plate 10 back into the slot is adjusted, so that the shockproof frame can use pipes of different sizes.

[0039] As shown in the figure, Figs. 1-3 The hanger mechanism includes: a vertical hanger 7 and an inclined hanger 8;

[0040] The two ends of the upper fixed plate 1 are both provided with a vertical hanger 7 and an inclined hanger 8, the vertical hanger 7 is arranged perpendicularly to the upper fixed plate 1, and the inclined hanger 8 is hinged to the upper fixed plate 1. The vertical hanger 7 and the inclined hanger 8 are used to be connected with the outside.

[0041] The anti-vibration frame can be installed in various complex sites by installing the anti-vibration frame through the vertical hanger 7 and the inclined hanger 8.

[0042] The above, with reference to Figs. 1-3 The anti-vibration frame structure according to the embodiment of the utility model is described, the fixed mechanism is hoisted through the hanger mechanism, the pipeline to be fixed is transmitted between two shockproof assemblies, if the pipeline is circular, the elastic force of the inclined plate spring 11 pushes the shockproof inclined plate 10, the shockproof inclined plate 10 rotates on the shockproof horizontal plate 9, four shockproof inclined plates 10 are used to fix the circular pipeline, the shockproof function is realized through the inclined plate spring 11.If the pipeline is square, the pipeline presses the part of the shockproof horizontal plate 9 and the shockproof inclined plate 10 back into the embedding groove, or the shockproof horizontal plate 9 and the shockproof inclined plate 10 are completely pressed back into the embedding groove, the shockproof horizontal plate 9 and the shockproof inclined plate 10 are used to fix the pipeline, so that the anti-vibration frame can be used for fixing square or circular pipelines.

[0043] It should be noted that in this specification, the terms "comprising", "including", or any other variant thereof are intended to cover non-exclusive inclusions, so that the process, method, article or equipment including a series of elements not only includes those elements, but also includes other elements not explicitly listed, or includes elements inherent to such process, method, article or equipment. Without more limitations, the elements defined by the statement "comprising" do not exclude the presence of other identical elements in the process, method, article or equipment including the elements.

[0044] Although the content of the utility model has been introduced in detail through the above preferred embodiments, it should be recognized that the above description should not be considered as a limitation of the utility model. After reading the above content, various modifications and alternatives of the utility model will be obvious to those skilled in the art. Therefore, the protection scope of the utility model should be limited by the appended claims.

Claims

1. An anti-vibration mount structure for securing a pipe, characterized by, The utility model relates to a pipeline fixing device, including: Frame assembly and shockproof assembly; The frame assembly includes: a boom mechanism and a fixing mechanism; The boom mechanism is arranged on the fixing mechanism, and the boom mechanism is used for being connected with the outside, and the fixing mechanism is used for fixing the pipeline; The shockproof assembly includes: a shockproof horizontal plate, a shockproof inclined plate and an inclined plate spring; The fixing mechanism is provided with an embedding groove corresponding to the shockproof horizontal plate and the shockproof inclined plate, the shockproof horizontal plate is partially located in the embedding groove, both ends of the shockproof horizontal plate are rotatably connected with the shockproof inclined plate, the first end of the inclined plate spring is connected with the shockproof inclined plate, and the second end is connected into the embedding groove, and the pipeline is located on the shockproof horizontal plate and the shockproof inclined plate.

2. The shock rack structure of claim 1, wherein The embedding groove includes: a horizontal plate embedding groove and an inclined plate embedding groove, the shockproof horizontal plate is slidably arranged in the horizontal plate embedding groove, the horizontal plate embedding groove is provided with a horizontal plate spring, one end of the horizontal plate spring is connected with the inner wall of the horizontal plate embedding groove, and the other end is connected with the shockproof horizontal plate, the inclined plate embedding groove is arranged corresponding to the shockproof inclined plate, and the size of the inclined plate embedding groove is related to the shockproof inclined plate.

3. The shock rack structure of claim 2, wherein A rotating shaft is arranged on the inner wall of the inclined plate embedding groove, a spring ring is rotatably arranged on the rotating shaft, and the spring ring is connected with the second end of the inclined plate spring.

4. The shock rack structure of claim 1, wherein When the shockproof horizontal plate and the shockproof inclined plate are contracted into the embedding groove, the edges of the shockproof horizontal plate and the shockproof inclined plate are flush with the outer surface of the fixing mechanism.

5. The shock rack structure of claim 1, wherein The fixing mechanism includes: an upper fixing plate and a lower fixing plate; The boom mechanism is arranged on the upper fixing plate, and the upper fixing plate and the lower fixing plate are both provided with the shockproof assembly, and the pipeline is located between the two shockproof assemblies.

6. The shock rack structure of claim 5, wherein The fixing mechanism further includes: an adjusting rod, a fixing nut and a fixing side plate; Both ends of the upper fixing plate and the lower fixing plate are provided with adjusting holes, the adjusting rod is arranged in the adjusting hole, the two adjusting rods are respectively located on the two sides of the shockproof assembly, the fixing nut is used for fixing the adjusting rod on the upper fixing plate and the lower fixing plate, the fixing side plate is arranged on the adjusting rod, and the two adjusting rods are used for fixing the pipeline.

7. The shock rack structure of claim 6, wherein The shockproof horizontal plate, the shockproof inclined plate and the fixing side plate are all provided with an anti-collision layer.

8. The shock rack structure of claim 5, wherein The boom mechanism includes: a vertical boom and an inclined boom; Both ends of the upper fixing plate are provided with the vertical boom and the inclined boom, the vertical boom is arranged perpendicularly to the upper fixing plate, the inclined boom is hinged to the upper fixing plate, and the vertical boom and the inclined boom are used for being connected with the outside.