Assembly type building electrical pipeline hanging bracket
By designing a prefabricated building electrical pipeline hanger including suspension, auxiliary, support and wrapping mechanism, the problems of inconvenience in installation, fixed length and insufficient stability in the prior art are solved, the stability and flexibility of the hanger are achieved, and effective support and shock absorption protection for the electrical pipeline are provided.
Patent Information
- Application Number
- CN202420615680.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-03-28
- Publication Date
- 2025-05-27
- Estimated Expiration
- 2034-03-28
AI Technical Summary
The existing electrical pipeline hangers are inconvenient to be installed during use, the length is fixed and difficult to adjust, the stability is insufficient and the shock absorption protection is lacking, which can easily lead to pipeline damage.
A prefabricated building electrical pipeline hanger is designed, including a suspension mechanism, an auxiliary mechanism, a support mechanism and a wrapping mechanism. The suspension mechanism achieves length adjustment through the boom, through hole and sliding groove. The auxiliary mechanism provides stable support through the support rod and connecting shaft. The support mechanism forms an engagement structure through the sleeve and bump to increase the fit. The wrapping mechanism provides shock absorption and fixing functions through the buffer spring and the mounting ring.
It realizes the vertical load-bearing stability of the hanging frame and the flexibility of length adjustment, provides effective support and shock-absorbing protection for electrical pipelines, and extends the service life of the pipeline.
Smart Images

Figure CN222915588U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of building electrical technology, in particular to an assembled building electrical pipeline hanger. Background Art
[0002] Construction engineering refers to the engineering entity formed by the construction of various types of buildings and their ancillary facilities and the installation of supporting lines, pipelines, and equipment. In construction engineering, pipe hangers are often used to suspend pipes under the ceiling so that the pipe hangers are fixed on the ceiling.
[0003] The existing electrical pipeline hangers are inconvenient to install some pipelines during use. At the same time, most of the hangers are fixed in length and difficult to adjust according to actual use requirements. They have certain limitations, and their stability is relatively insufficient. There is a lack of shock-absorbing protection for the pipelines, which can easily cause damage to the pipelines during installation, affecting their subsequent use. For this reason, we propose an assembled building electrical pipeline hanger. Utility Model Content
[0004] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: an assembled building electrical pipeline hanger, comprising a suspension mechanism, an auxiliary mechanism, a supporting mechanism and a wrapping mechanism, the suspension mechanism comprising a suspension rod, a through hole and a slide groove, auxiliary mechanisms are arranged on both sides of the middle part of the suspension rod, the auxiliary mechanism comprises a connecting shaft and a support rod, and a support rod is arranged at one end of the connecting shaft, a supporting mechanism is arranged at the bottom of the suspension rod, the supporting mechanism comprises a sleeve block, a protrusion and a carrier plate, and a protrusion is arranged inside the sleeve block, a carrier plate is arranged at one end of the sleeve block, a wrapping mechanism is arranged at the top of one side of the carrier plate, and the wrapping mechanism comprises a lower mounting ring, a buffer spring and an upper mounting ring.
[0005] Preferably, the sleeve block forms a snap-fit structure with the suspension mechanism through a protrusion, and the inner size of the sleeve block matches the bottom size of the suspension mechanism.
[0006] Preferably, a through hole is provided on the middle end surface of the suspension rod, and sliding grooves are provided on both sides of the suspension rod.
[0007] Preferably, the supporting mechanism is connected to the through hole through the suspension rod, and the auxiliary mechanism is symmetrically arranged along the suspension rod.
[0008] Preferably, a buffer spring is arranged inside the lower mounting ring, a first clamping plate is arranged on the top of the buffer spring, and a flexible cushion layer is arranged on the end surface of the first clamping plate, an upper mounting ring is arranged on the top of the lower mounting ring, and a rotating shaft is arranged in the middle of one side of the upper mounting ring, a second clamping plate is arranged inside the upper mounting ring, and an adjusting rod is arranged on the top of the second clamping plate.
[0009] Preferably, the upper mounting ring and the lower mounting ring form a wrapping shape, and the second clamping plate and the lower mounting ring cooperate with each other.
[0010] Compared with the prior art, the beneficial effects of the utility model are as follows: by symmetrically arranging the support rods in a triangular shape with the hanger rod, the vertical load-bearing capacity of the entire hanger can be made stable, and the sleeve block is used to cooperate with the hanger rod, and moves along the slide grooves on both sides of the hanger rod through the protrusions. Since the end face is provided with multiple through holes, the hanger can be adjusted in length as needed through the fixing screws, and then the lower mounting ring is fixed on the top of the carrier plate, and the lower mounting ring and the upper mounting ring are easily formed into a wrapping shape, and the electrical pipeline conduit is placed on the splint inside the mounting ring to fix the internal pipeline, and the splint is arranged in an arc shape, and pipelines of different sizes can be placed.
[0011] The setting of the sleeve block is used to cooperate with the hanger. The protrusion moves along the slide grooves on both sides of the hanger to increase the fit between the two, thereby limiting the movement of the sleeve block and the carrier plate. Since the end face is provided with multiple through holes, the length of the hanger can be adjusted as needed by fixing the screw.
[0012] The hanger and the support rod are installed in the wall. Since the support rod is symmetrically arranged in a triangular shape with the hanger, the vertical load-bearing capacity of the entire hanger can be stable and not easily shaken and damaged, and it can effectively support the bearing capacity of the electrical pipelines.
[0013] The lower mounting ring is fixed on the top of the carrier plate, and the lower mounting ring and the upper mounting ring are easily wrapped together. The electrical pipeline pipe is placed on the clamping plate inside the mounting ring. By rotating the adjusting rod on the top, the second clamping plate can fix the internal pipe. The clamping plate is set in an arc shape and can hold pipes of different sizes. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 It is a schematic diagram of the three-dimensional structure of the utility model;
[0015] Figure 2 This is a side view of the structure of the utility model;
[0016] Figure 3 It is a three-dimensional structural schematic diagram of the wrapping mechanism of the utility model.
[0017] In the figure: 1. suspension mechanism; 101. suspension rod; 102. through hole; 103. slide groove; 2. auxiliary mechanism; 201. connecting shaft; 202. support rod; 3. supporting mechanism; 301. sleeve block; 302. protrusion; 303. carrier plate; 4. wrapping mechanism; 401. lower mounting ring; 402. buffer spring; 403. first clamping plate; 404. flexible cushion layer; 405. rotating shaft; 406. upper mounting ring; 407. second clamping plate; 408. adjusting rod. DETAILED DESCRIPTION
[0018] See also Figure 1-2 The utility model provides a technical solution: an assembled building electrical pipeline hanger, comprising a suspension mechanism 1, an auxiliary mechanism 2, a supporting mechanism 3 and a wrapping mechanism 4, characterized in that: the suspension mechanism 1 comprises a suspension rod 101, a through hole 102 and a slide groove 103, the auxiliary mechanism 2 is arranged on both sides of the middle of the suspension rod 101, the auxiliary mechanism 2 comprises a connecting shaft 201 and a support rod 202, and the support rod 202 is arranged at one end of the connecting shaft 201, and the bottom of the suspension rod 101 is arranged A support mechanism 3 is provided, the support mechanism 3 includes a sleeve block 301, a convex block 302 and a carrier plate 303, and the sleeve block 301 is provided with a convex block 302 inside, one end of the sleeve block 301 is provided with a carrier plate 303, and a wrapping mechanism 4 is provided on the top of one side of the carrier plate 303, the wrapping mechanism 4 includes a lower mounting ring 401, a buffer spring 402 and an upper mounting ring 406, the sleeve block 301 is provided with a convex block 302 inside, one end of the sleeve block 301 is provided with a carrier plate 303, the sleeve block 3 01 forms a snap-fit structure with the suspension mechanism 1 through the protrusion 302, and the internal size of the sleeve 301 matches the bottom size of the suspension mechanism 1. The sleeve 301 is set to cooperate with the suspension rod 101. The protrusion 302 moves along the slide grooves 103 on both sides of the suspension rod 101 to increase the fit between the two, thereby limiting the movement of the sleeve 301 and the carrier plate 303. Since the end surface is provided with a plurality of through holes 102, the length of the hanger can be adjusted according to the needs by fixing the screw. The structure is complete and has higher applicability. A through hole 102 is provided on the middle end face of the hanger 101, and slide grooves 103 are provided on both sides of the hanger 101. The supporting mechanism 3 is connected with the through hole 102 through the hanger 101, and the auxiliary mechanism 2 is symmetrically arranged along the hanger 101. The hanger 101 and the support rod 202 are installed in the wall. Since the support rod 202 is symmetrically arranged and forms a triangle with the hanger 101, the vertical load-bearing capacity of the entire hanger can be made stable and not easy to shake and be damaged, and can effectively support the bearing capacity of the electrical pipelines.
[0019] See also Figure 3The utility model provides a technical solution: an assembled building electrical pipeline hanger, a buffer spring 402 is arranged inside the lower mounting ring 401, a first clamping plate 403 is arranged on the top of the buffer spring 402, and a flexible cushion layer 404 is arranged on the end surface of the first clamping plate 403, an upper mounting ring 406 is arranged on the top of the lower mounting ring 401, and a rotating shaft 405 is arranged in the middle of one side of the upper mounting ring 406, a second clamping plate 407 is arranged inside the upper mounting ring 406, and an adjusting The section rod 408, the upper mounting ring 406 and the lower mounting ring 401 form a wrapping shape, and the second clamping plate 407 cooperates with the lower mounting ring 401, the lower mounting ring 401 is fixed on the top of the carrier plate 303, and the lower mounting ring 401 and the upper mounting ring 406 are easy to form a wrapping shape, and the electrical pipeline pipeline is placed on the clamping plate inside the mounting ring. By rotating the top adjustment rod 408, the second clamping plate 407 can fix the internal pipeline, and the clamping plate is set in an arc shape, which can hold pipelines of different sizes, and is more practical.
[0020] Working principle: First, the hanger 101 and the support rod 202 are installed in the wall. Since the support rod 202 is symmetrically arranged in a triangular shape with the hanger 101, the vertical load-bearing of the entire hanger can be stable and not easy to shake and be damaged. The sleeve block 301 is used to cooperate with the hanger 101, and the protrusion 302 moves along the slide grooves 103 on both sides of the hanger 101 to limit the movement of the sleeve block 301 and the carrier plate 303. Since the end face is provided with multiple through holes 102, the length of the hanger can be adjusted as needed by fixing the screw. Then the lower mounting ring 401 is fixed on the top of the carrier plate 303, and the lower mounting ring 401 and the upper mounting ring 406 are easy to form a wrapping shape, and the electrical pipeline pipeline is placed in the clamping plate inside the mounting ring. By rotating the adjusting rod 408 on the top, the second clamping plate 407 can fix the internal pipeline. The clamping plate is arranged in an arc shape, and pipelines of different sizes can be placed, which is convenient for the subsequent construction of the hanger structure.
Claims
1. An assembled building electrical pipeline hanger, comprising a suspension mechanism (1), an auxiliary mechanism (2), a support mechanism (3) and a wrapping mechanism (4), characterized in that: The suspension mechanism (1) comprises a suspension rod (101), a through hole (102) and a slide groove (103); auxiliary mechanisms (2) are arranged on both sides of the middle of the suspension rod (101); the auxiliary mechanism (2) comprises a connecting shaft (201) and a support rod (202); one end of the connecting shaft (201) is provided with a support rod (202); a supporting mechanism (3) is arranged at the bottom of the suspension rod (101); the supporting mechanism (3) comprises a sleeve block (301), a protrusion (302) and a carrier plate (303); the sleeve block (301) is provided with a protrusion (302) inside; one end of the sleeve block (301) is provided with a carrier plate (303); a wrapping mechanism (4) is arranged at the top of one side of the carrier plate (303); the wrapping mechanism (4) comprises a lower mounting ring (401), a buffer spring (402) and an upper mounting ring (406).
2. The assembled building electrical pipeline hanger according to claim 1, characterized in that: The sleeve block (301) forms a snap-fit structure with the suspension mechanism (1) via the protrusion (302), and the internal dimensions of the sleeve block (301) match the bottom end dimensions of the suspension mechanism (1).
3. The assembled building electrical pipeline hanger according to claim 1, characterized in that: A through hole (102) is provided on the middle end surface of the suspension rod (101), and sliding grooves (103) are provided on both sides of the suspension rod (101).
4. The assembled building electrical pipeline hanger according to claim 3 is characterized in that: The supporting mechanism (3) is connected to the through hole (102) through the suspension rod (101), and the auxiliary mechanism (2) is symmetrically arranged along the suspension rod (101).
5. The assembled building electrical pipeline hanger according to claim 1, characterized in that: A buffer spring (402) is arranged inside the lower mounting ring (401), a first clamping plate (403) is arranged at the top end of the buffer spring (402), and a flexible cushion layer (404) is arranged on the end surface of the first clamping plate (403), an upper mounting ring (406) is arranged on the top of the lower mounting ring (401), and a rotating shaft (405) is arranged in the middle of one side of the upper mounting ring (406), a second clamping plate (407) is arranged inside the upper mounting ring (406), and an adjusting rod (408) is arranged on the top of the second clamping plate (407).
6. The assembled building electrical pipeline hanger according to claim 1, characterized in that: The upper mounting ring (406) and the lower mounting ring (401) form a wrapping shape, and the second clamping plate (407) and the lower mounting ring (401) are matched with each other.
Citation Information
Cited By
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