Combined water pipe lateral anti-seismic structure supported by multiple pipelines

By using a multi-pipe support combined water pipe lateral seismic structure, and utilizing the buffer design of support rods, support rings and springs, the problems of large volume, high cost and difficult maintenance of existing water pipe support structures are solved, achieving efficient seismic performance and convenient water pipe replacement.

CN223579325UActive Publication Date: 2025-11-21ZHEJIANG SAICHENG TECH CO LTD
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Patent Information

Application Number
CN202422722617.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-08
Publication Date
2025-11-21
Estimated Expiration
2034-11-08

AI Technical Summary

Technical Problem

Existing water pipe support structures improve seismic performance by increasing strength, but this results in increased structural volume, high construction costs, and difficulties in installation and dismantling, which in turn increases the difficulty of maintenance.

Method used

The combined water pipe lateral seismic structure with multi-pipe support provides lateral and longitudinal buffer space for the water pipe system through the cooperation of buffer components and support components, and the setting of support rods, support rings and springs. Stable lateral support and fixation are achieved by moving the main clamp plate through the adjustment handle.

Benefits of technology

It improves the seismic performance of the water pipe system, reduces structural volume and losses, simplifies the replacement and maintenance process of water pipes, and has the advantages of small size, low loss and high practicality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of pipeline supports, and particularly provides a combined water pipe lateral anti-seismic structure supported by multiple pipelines. The device comprises a buffering assembly and a supporting assembly, the supporting assembly comprises a supporting column, an adjusting handle is arranged at the left end of the supporting column, the top end of a main clamping plate on the right side is fixedly connected to the bottom end of the supporting column, and multiple sets of auxiliary clamping plates are arranged on the inner sides of the two sets of main clamping plates. The technical problems that the overall size of the structure is increased, the construction cost is high, meanwhile, mounting and dismounting are difficult, a water pipe is inconvenient to replace, the maintenance difficulty of a water pipe system is increased, and further improvement is needed due to the fact that the anti-seismic performance of most existing water pipe supporting structures is improved by improving the strength of the supporting structures are solved. Compared with a simply reinforced rigid fixing structure, the fixing structure has the advantages of being small in size and low in loss, and the anti-seismic performance of a water pipe system is greatly improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to pipeline support field especially, it relates to the lateral anti -seismic structure of combination water pipe of multi -pipeline support. BACKGROUND

[0002] Water pipe system is very important facility in the building, in all kinds of high -rise building, large -scale public building, industrial plant etc. place, water pipe generally is set for multiple groups, the water pipe system in these places is more complex and important, needs to take the stable support measure to strengthen the stability of water pipe system, thereby guarantees the safe operation of water pipe system.

[0003] In view of the related technical in the above, the inventor thinks that there is the following defect: the existing water pipe support structure mostly is through improving the strength of support structure to promote the anti -seismic performance, this leads to the volume of structure whole increase construction cost is also higher, simultaneously in installation dismounting is more difficult inconveniently replaces water pipe, increases the difficulty of water pipe system maintenance, still needs further improvement. UTILITY MODEL CONTENT

[0004] In order to improve the existing water pipe support structure mostly is through improving the strength of support structure to promote the anti -seismic performance, this leads to the volume of structure whole increase construction cost is also higher, simultaneously in installation dismounting is more difficult inconveniently replaces water pipe, increases the difficulty of water pipe system maintenance, still needs further improvement's problem, the present application provides the lateral anti -seismic structure of combination water pipe of multi -pipeline support.

[0005] The lateral anti -seismic structure of combination water pipe of multi -pipeline support provided by the present application adopts the following technical scheme: the lateral anti -seismic structure of combination water pipe of multi -pipeline support, including buffer assembly and support assembly, the buffer assembly contains fixed frame, the fixed frame top end fixedly connected with connecting piece, the fixed frame bottom end left and right sides are all fixedly connected with lifting seat, the fixed frame bottom end is equipped with support rod, the support assembly contains support column, the support column left end is equipped with adjusting handle, the support column top end fixedly connected with connecting ring, the support column bottom end is equipped with two groups of main clamping plates, right side main clamping plate top end is fixedly connected to support column bottom end, two groups of main clamping plate inner sides are equipped with multiple groups of vice clamping plates.

[0006] Further setting, the support rod left and right two ends are all fixedly connected with limit rod, two groups of limit rod are respectively sheathed in two groups of data seat.

[0007] Further setting, the support rod left and right two ends are all equipped with spring shock absorber, and the connecting ring is sheathed in the support rod.

[0008] Further setting, the support rod left and right two ends are all sheathed with spring, and the outer ends of two groups of springs are respectively fixedly connected to the inner ends of two groups of spring shock absorbers.

[0009] Further setting, the support column bottom end is provided with a sliding groove, and a threaded rod is arranged in the sliding groove.

[0010] Further setting, the threaded rod left end is fixedly connected to the adjusting handle, and the threaded rod right end is connected to the sliding groove right end inner wall through a bearing.

[0011] Further setting, a nut seat is arranged on the threaded rod through a threaded sleeve, a plurality of sliding rings are arranged on the threaded rod right side of the nut seat, the nut seat bottom end is fixedly connected to the left side main clamping plate top end, and the plurality of sliding ring bottom ends are respectively fixedly connected to the plurality of auxiliary clamping plate top ends.

[0012] Compared with the related art, the combined water pipe lateral anti-seismic structure of the multi-pipe support has the following beneficial effects:

[0013] The combined water pipe lateral anti-seismic structure of the multi-pipe support has the following beneficial effects:

[0014] The combined water pipe lateral anti-seismic structure of the multi-pipe support has the following beneficial effects: BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 The structure schematic view of the preferred embodiment of the combined water pipe lateral anti-seismic structure of the multi-pipe support is provided.

[0016] Figure 2 The overall top view structure schematic view of the combined water pipe lateral anti-seismic structure of the multi-pipe support is provided.

[0017] Figure 3 The structure schematic view of the preferred embodiment of the combined water pipe lateral anti-seismic structure of the multi-pipe support is provided. Figure 1 The enlarged structure schematic view of A is provided.

[0018] Figure 4 The structure schematic view of the preferred embodiment of the combined water pipe lateral anti-seismic structure of the multi-pipe support is provided.Figure 2 Enlarged structural diagram at point B.

[0019] The following are the labeling elements in the diagram: 1. Buffer assembly; 101. Fixing frame; 102. Connector; 103. Lifting seat; 104. Limiting rod; 105. Support rod; 106. Spring; 107. Spring shock absorber; 2. Support assembly; 201. Support column; 202. Connecting ring; 203. Adjusting handle; 204. Main clamping plate; 205. Secondary clamping plate; 206. Sliding groove; 207. Threaded rod; 208. Nut seat; 209. Sliding ring. Detailed Implementation

[0020] To facilitate understanding of this utility model, a more comprehensive description will be given below with reference to the accompanying drawings. The drawings illustrate typical embodiments of this utility model.

[0021] Example 1:

[0022] like Figures 1-4 As shown, the multi-pipe supported combined water pipe lateral seismic structure of this utility model includes a buffer assembly 1 and a support assembly 2. The buffer assembly 1 includes a fixing frame 101, with a connector 102 fixedly connected to the top of the fixing frame 101. Lifting seats 103 are fixedly connected to both the left and right sides of the bottom of the fixing frame 101. A support rod 105 is provided at the bottom of the fixing frame 101. The support assembly 2 includes a support column 201, with an adjustment handle 203 at the left end of the support column 201. A connecting ring 202 is fixedly connected to the top of the support column 201. Two sets of main clamping plates 204 are provided at the bottom of the support column 201. The top of the right main clamping plate 204 is fixedly connected to the bottom of the support column 201. Multiple sets of auxiliary clamping plates 205 are provided inside the two sets of main clamping plates 204.

[0023] like Figures 1-4 As shown, the support rod 105 is fixedly connected to the left and right ends of the limit rod 104, and the two sets of limit rods 104 are respectively sleeved on the two sets of data seats 103.

[0024] like Figures 1-4 As shown, spring shock absorbers 107 are provided at both ends of the support rod 105, and connecting rings 202 are sleeved on the support rod 105.

[0025] like Figures 1-4 As shown, springs 106 are fitted on both the left and right ends of the support rod 105 at the connecting ring 202, and the outer ends of the two sets of springs 106 are respectively fixedly connected to the inner ends of the two sets of spring shock absorbers 107.

[0026] In the implementation, through the setting of the support rod 105 and the support ring 202 and the cooperation with the spring 106, the lateral buffer space can be provided for the water pipe system when the vibration occurs, through the setting of the lifting seat 103 and the support rod 105, the longitudinal buffer space can be provided for the water pipe system in the vibration, compared with the fixed structure of simply strengthening the rigidity, the advantages of small volume and low loss are obtained, and the anti-seismic performance of the water pipe system is greatly improved.

[0027] Embodiment two:

[0028] As shown in Figures 1-4 the technical scheme of the combined water pipe lateral anti-seismic structure of the multi-pipe support is provided on the basis of the embodiment one, the sliding groove 206 is formed in the bottom end of the support column 201, and the threaded rod 207 is arranged in the sliding groove 206.

[0029] As shown in Figures 1-4 the left end of the threaded rod 207 is fixedly connected to the adjusting handle 203, and the right end of the threaded rod 207 is connected to the inner wall of the right end of the sliding groove 206 through the bearing.

[0030] As shown in Figures 1-4 the threaded rod 207 is sleeved with the nut seat 208 through threads, a plurality of sliding rings 209 are sleeved with the threaded rod 207 on the right side of the nut seat 208, the bottom end of the nut seat 208 is fixedly connected to the top end of the left main clamping plate 204, and the bottom ends of the plurality of sliding rings 209 are fixedly connected to the top ends of the plurality of auxiliary clamping plates 205.

[0031] In the implementation, through the setting of the support assembly 2, the main clamping plate 204 can be driven to move by rotating the adjusting handle 203, through the cooperation of the main clamping plate 204 and the plurality of auxiliary clamping plates 205, stable lateral support and fixation can be simultaneously provided for the plurality of water pipes, the personnel can conveniently replace and maintain the individual water pipe, the overall structure is simple and stable, and good practicability is obtained.

[0032] 1, through the setting of the support rod 105 and the support ring 202, the lateral buffer space can be provided for the water pipe system when the vibration occurs, the lifting seat 103 and the support rod 105 are arranged, the longitudinal buffer space can be provided for the water pipe system in the vibration, compared with the fixed structure of simply strengthening the rigidity, the advantages of small volume and low loss are obtained, and the anti-seismic performance of the water pipe system is greatly improved.

[0033] 2, through the rotation of the adjusting handle 203, the main clamping plate 204 can be driven to move, so that stable lateral support and fixation can be simultaneously provided for the plurality of water pipes, the personnel can conveniently replace and maintain the individual water pipe, the overall structure is simple and stable, and good practicability is obtained.

[0034] The technical scheme is characterized in that the fixing frame 101 is installed on the wall top through the connecting piece 102, then the adjusting handle 203 is rotated to drive the threaded rod 207 to rotate, the threaded rod 207 is driven to move the nut seat 208 through the threaded rotation, the nut seat 208 drives the left main clamping plate 204 to move right, through the cooperation with the multiple groups of auxiliary clamping plates 205, the multiple groups of water pipes can be simultaneously provided with lateral support and fixed, when the support column 201 is affected by vibration, the connecting ring 202 moves on the support rod 105, through the setting of the spring 106 and the spring shock absorber 107, lateral buffer for the water pipe system is provided, through the setting of the limiting rod 104 and the lifting seat 103, when longitudinal vibration occurs, the water pipe system can be further provided with certain longitudinal buffer in larger vibration.

[0035] The above merely describes exemplary embodiments of the present disclosure, and cannot limit the scope of the present disclosure. Any equivalent changes and modifications made according to the teachings of the present disclosure are still within the scope of the present disclosure. Other embodiments of the present disclosure will be easily conceived by those skilled in the art after considering the specification and practicing the disclosure. The present application is intended to cover any variations, uses, or adaptive changes of the present disclosure, which follow the general principles of the present disclosure and include common knowledge or conventional technical means in the technical field not recorded in the present disclosure.

Claims

1. A combined water pipe lateral seismic resistant structure supported by multiple pipes, comprising a buffer assembly (1) and a support assembly (2), characterized in that: Said buffer assembly (1) contains fixed frame (101), the top end fixed connection has connecting piece (102), the fixed frame (101) bottom left and right sides are all fixedly connected with lifting seat (103), the fixed frame (101) bottom is equipped with support rod (105), the support assembly (2) contains support column (201), the left end of support column (201) is equipped with adjusting handle (203), the top end of support column (201) is fixedly connected with connecting ring (202), the bottom of support column (201) is equipped with two groups of main clamping plate (204), the top end of right main clamping plate (204) is fixedly connected to the bottom of support column (201), and the inner side of two groups of main clamping plate (204) is equipped with multiple groups of auxiliary clamping plate (205).

2. The combination water pipe lateral seismic resistant structure supported by multiple conduits of claim 1, wherein, The left and right ends of the support rod (105) are fixedly connected with the limiting rod (104), and the two groups of limiting rods (104) are respectively sleeved on the two groups of data seats (103).

3. The combination water pipe lateral seismic resistant structure supported by multiple conduits of claim 2, wherein, The left and right ends of the support rod (105) are provided with spring shock absorber (107), and the connecting ring (202) is sleeved on the support rod (105).

4. The combination water pipe lateral seismic resistant structure supported by multiple conduits of claim 3, wherein, The left and right ends of the support rod (105) are provided with spring shock absorber (107), and the connecting ring (202) is sleeved on the support rod (105).

5. The combination water pipe lateral seismic resistant structure supported by multiple conduits of claim 1, wherein, The left and right ends of the support rod (105) are provided with spring shock absorber (107), and the connecting ring (202) is sleeved on the support rod (105).

6. The combination water pipe lateral seismic resistant structure supported by multiple conduits of claim 5, wherein, The bottom of support column (201) is equipped with sliding groove (206), and the sliding groove (206) is equipped with threaded rod (207).

7. The combination water pipe lateral seismic resistant structure supported by multiple conduits of claim 6, wherein, The left end of the threaded rod (207) is fixedly connected to the adjusting handle (203), and the right end of the threaded rod (207) is connected to the right end inner wall of the sliding groove (206) through a bearing. The threaded rod (207) is sleeved with nut seat (208) through thread, and multiple groups of sliding rings (209) are sleeved on the threaded rod (207) right side of nut seat (208), the bottom of nut seat (208) is fixedly connected to the top of left main clamping plate (204), and the bottom of multiple groups of sliding rings (209) is fixedly connected to the top of multiple groups of auxiliary clamping plate (205).