Building pipeline support with adjusting function

By designing a building pipeline bracket with adjustment function, using the cooperation of trapezoidal blocks, sliders and springs, the pipeline is easily retracted, solving the problem of inconvenient operation of traditional brackets and improving work efficiency.

CN223049586UActive Publication Date: 2025-07-01YANGXIN XINYUAN WATER CONSERVANCY & HYDROPOWER CONSTR ENG CO LTD
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Patent Information

Application Number
CN202422154769.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-03
Publication Date
2025-07-01
Estimated Expiration
2034-09-03

AI Technical Summary

Technical Problem

When performing a bundling pipeline, traditional pipeline brackets need to screw multiple sets of bolt bundling loops, which is inconvenient to operate and affects work efficiency.

Method used

A building pipeline support with adjustment function is designed. By setting a trapezoidal block, a slider, a first spring, a hollow groove and a second spring, the pipeline extends the inclined surface of the trapezoidal block and enters the hollow groove, and the spring rebounds to drive the slider and the trapezoidal block to reset, and the pipeline is clamped and closed through the cooperation between the top plate and the slider.

Benefits of technology

It realizes convenient convergence of the pipeline, abandons the traditional method of multiple sets of bolts, and improves work efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a building pipeline support with an adjusting function, which belongs to the technical field of pipeline supports and comprises a support, a plurality of sliding grooves are arranged on the inner wall of the support, sliders are slidably connected into the sliding grooves, trapezoidal blocks are fixedly connected to one sides of the sliders, the trapezoidal blocks are designed to be inclined planes, and the sliding grooves are arranged on the inner wall of the support. A plurality of first supporting columns are arranged on the two sides of the trapezoidal block, and the first supporting columns are sleeved with first springs. According to the building pipeline support with the adjusting function, trapezoidal blocks, sliding blocks, first springs, empty grooves and second springs are arranged, a pipeline moves downwards along the inclined faces of the two opposite trapezoidal blocks, the pipeline extrudes the second springs through a top plate in the empty grooves, and the pipeline is clamped and bundled through cooperation between the top plate and the sliding blocks; the mode that when a traditional pipeline support is used for collecting pipelines, multiple sets of bolts need to be screwed to collect the pipeline binding rings to collect the pipelines is abandoned, operation is convenient, and the working efficiency is guaranteed.
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Description

Technical Field

[0001] The utility model belongs to the technical field of pipeline supports, and particularly relates to a building pipeline support with an adjusting function. Background Technique

[0002] Building pipeline supports are mainly used to support and fix various pipelines in buildings to ensure the safe and stable operation of the pipelines. These supports are usually installed on the pipelines to bear the weight of the pipelines and the thrust generated by the fluid pressure. Most traditional pipeline supports are composed of bolts and cable ties. When bundling pipelines, it is necessary to turn multiple groups of bolts to tighten the cable ties, which is inconvenient to operate and affects work efficiency. Content of the Utility Model

[0003] In order to overcome the above defects, the utility model provides a building pipeline support with an adjusting function, which solves the problem that most traditional pipeline supports are composed of bolts and cable ties. When bundling pipelines, it is necessary to turn multiple groups of bolts to tighten the cable ties, which is inconvenient to operate and affects work efficiency.

[0004] To achieve the above purpose, the utility model provides the following technical scheme: a building pipeline support with an adjusting function, including a support. A plurality of chutes are opened on the inner wall of the support, and sliders are slidably connected in the chutes. One side of the slider is fixedly connected with a trapezoidal block, and the trapezoidal block is designed with an inclined surface. A plurality of first struts are arranged on both sides of the trapezoidal block, and first springs are sleeved on the first struts. An empty groove is opened on one side of the support, and the position of the empty groove corresponds to the position of the trapezoidal block. A second strut is arranged in the empty groove, and the second strut penetrates through one side of the support. A second spring is sleeved on the second strut, and a baffle is fixedly connected to the end of the second strut. A top plate is fixedly connected to the side of the second strut away from the baffle. One side of the support is fixedly connected with two first support plates.

[0005] As a further scheme of the utility model: the end of the first support plate is fixedly connected with a first connecting block, and a rotating shaft is rotatably connected to the inner wall of the first connecting block.

[0006] As a further scheme of the utility model: the outer wall of the rotating shaft is rotatably connected with a second connecting block, and a second support plate is fixedly connected to one side of the second connecting block. One end of the second support plate away from the second connecting block is fixedly connected with a fixing plate.

[0007] As a further scheme of the utility model: two bolts are respectively threadedly connected to both ends of the fixing plate, and the bolts penetrate through the fixing plate.

[0008] As a further solution of the utility model: One side of the fixed plate is fixedly connected with a lower support block, and the lower support block is rotationally connected with a telescopic rod through a pin shaft.

[0009] As a further solution of the utility model: One end of the telescopic rod away from the lower support block is rotationally connected with an upper support block through a pin shaft, and the end of the upper support block is connected to the first support plate.

[0010] Compared with the prior art, the beneficial effects of the utility model are as follows:

[0011] 1. For the building pipeline support with an adjusting function, by setting trapezoidal blocks, sliders, first springs, empty slots and second springs, the pipeline moves downward along the inclined surfaces of two opposite trapezoidal blocks. During the movement, the pipeline squeezes the inclined surfaces of the trapezoidal blocks, driving the trapezoidal blocks to squeeze the sliders into the sliding grooves. During the movement of the sliders, the trapezoidal blocks follow the sliders to squeeze the first springs, making the first springs in a compressed state. When the pipeline enters the empty slot along the inclined surface of the trapezoidal block, the first springs rebound, driving the sliders and the trapezoidal blocks to reset. The pipeline in the empty slot squeezes the second springs through the top plate, and the second springs are squeezed and rebound to drive the top plate to approach the sliders. The pipeline is clamped and restrained through the cooperation between the top plate and the sliders, abandoning the traditional method of using multiple groups of bolts to tighten the wire harness rings to restrain the pipeline when the traditional pipeline support restrains the pipeline. The operation is convenient, ensuring the work efficiency.

[0012] 2. For the building pipeline support with an adjusting function, by setting an upper support block, a telescopic rod, a lower support block and a first support plate, during the elongation or shortening of the telescopic rod, it rotates through the pin shaft on the inner wall of the lower support block, and at the same time, the upper support block rotates through the pin shaft on the outer wall of the telescopic rod. When the upper support block rotates, it drives the first support plate to rotate on the outer wall of the rotating shaft through the first connecting block, so that the angle between the first support plate and the second support plate is adjusted, driving the angle adjustment between the fixed plate and the support, improving the practicability of the support. Description of the Drawings

[0013] Figure 1 is a three-dimensional structural schematic diagram of the utility model;

[0014] Figure 2 is the utility model Figure 1 is an enlarged structural schematic diagram at A in the utility model;

[0015] Figure 3 is a structural schematic diagram of the connection between the upper support block and the first support plate of the utility model;

[0016] In the figure: 1, support; 2, chute; 3, slider; 4, trapezoidal block; 5, first support pillar; 6, first spring; 7, empty slot; 8, second support pillar; 9, second spring; 10, baffle; 11, top plate; 12, first support plate; 13, first connecting block; 14, rotating shaft; 15, second connecting block; 16, second support plate; 17, fixing plate; 18, bolt; 19, lower support block; 20, telescopic rod; 21, upper support block. Specific implementation manner

[0017] The technical solution of this patent will be further described in detail below in conjunction with the specific implementation manner.

[0018] As Figures 1-3 shown, the present utility model provides a technical solution: a building pipeline support with an adjusting function, including a support 1. A plurality of chutes 2 are opened on the inner wall of the support 1. A slider 3 is slidably connected in the chute 2. A trapezoidal block 4 is fixedly connected to one side of the slider 3. The trapezoidal block 4 is designed with an inclined surface. Due to the presence of the trapezoidal block 4, when the pipeline is placed between two corresponding trapezoidal blocks 4 and pressed downward, the pipeline will slide down along the inclined surface of the trapezoidal block 4. The trapezoidal block 4 squeezes the slider 3, and the slider 3 moves into the chute 2, providing enough space for the pipeline to enter the empty slot 7. At the same time, the trapezoidal block 4 drives the first spring 6 through the first support pillar 5, so that the first spring 6 is in a compressed state. After the pipeline enters the empty slot 7, the first spring 6 rebounds, causing the slider 3 and the trapezoidal block 4 to reset, facilitating the bundling of the pipeline. A plurality of first support pillars 5 are provided on both sides of the trapezoidal block 4. The first support pillar 5 is sleeved with a first spring 6. An empty slot 7 is opened on one side of the support 1. The position of the empty slot 7 corresponds to the position of the trapezoidal block 4. A second support pillar 8 is provided in the empty slot 7. The second support pillar 8 penetrates one side of the support 1. The second support pillar 8 is sleeved with a second spring 9. A baffle 10 is fixedly connected to the end of the second support pillar 8. A top plate 11 is fixedly connected to the side of the second support pillar 8 away from the baffle 10. Through the cooperation between the second support pillar 8 and the second spring 9, after the pipeline enters the empty slot 7, the pipeline will press the second spring 9 downward through the top plate 11 on the top plate 11. The second spring 9 will rebound when it is squeezed. Through the cooperation between the second spring 9 and the top plate 11, the top plate 11 rebounds under the action of the second spring 9, and the top plate 11 and the slider 3 clamp the pipeline, preventing the pipeline from displacing in the empty slot 7. A first support plate 12 is fixedly connected to one side of the support 1. The number of the first support plates 12 is two.

[0019] One end of the first support plate 12 is fixedly connected with a first connection block 13. A rotating shaft 14 is rotatably connected to the inner wall of the first connection block 13. A second connection block 15 is rotatably connected to the outer wall of the rotating shaft 14. One side of the second connection block 15 is fixedly connected with a second support plate 16. Through the cooperation between the first support plate 12 and the second support plate 16, the first support plate 12 rotates on the outer wall of the rotating shaft 14 through the first connection block 13, and the second support plate 16 rotates on the outer wall of the rotating shaft during rotation. This facilitates adjusting the angle between the fixed plate 17 and the bracket 1 during the extension or retraction of the telescopic rod 20. One end of the second support plate 16 away from the second connection block 15 is fixedly connected with a fixed plate 17;

[0020] Two bolts 18 are respectively threadedly connected to both ends of the fixed plate 17. The bolts 18 penetrate through the fixed plate 17. Due to the provision of the bolts 18, the fixed plate 17 is fixed on the wall surface through the bolts 18, which facilitates bundling pipelines on different wall surfaces and improves the stability during pipeline bundling. One side of the fixed plate 17 is fixedly connected with a lower support block 19. The lower support block 19 is rotatably connected with a telescopic rod 20 through a pin shaft. One end of the telescopic rod 20 away from the lower support block 19 is rotatably connected with an upper support block 21 through a pin shaft. The end of the upper support block 21 is connected to the first support plate 12. Through the cooperation between the telescopic rod 20 and the upper support block 21, during the extension or retraction of the telescopic rod 20, the telescopic rod 20 rotates on the inner wall of the lower support block 19 through the pin shaft, and at the same time, the upper support block 21 rotates on the outer wall of the telescopic rod 20 through the pin shaft, which facilitates adjusting the angle between the bracket 1 and the fixed plate 17.

[0021] The working principle of the present utility model is as follows: The fixed plate 17 is fixed on the wall surface through the bolts 18. During the extension or retraction of the telescopic rod 20, it rotates on the inner wall of the lower support block 19 through the pin shaft, and at the same time, the upper support block 21 rotates on the outer wall of the telescopic rod 20 through the pin shaft. The angle between the fixed plate 17 and the bracket 1 is adjusted through the telescopic rod 20. The pipeline is placed between two corresponding trapezoidal blocks 4. Press the pipeline downward. Since the trapezoidal blocks 4 are designed with inclined surfaces, the pipeline moves downward along the two sides of the trapezoidal blocks 4 and squeezes the inclined surfaces of the trapezoidal blocks 4. The two trapezoidal blocks 4 squeeze the sliding blocks 3 towards the opposite sides. The sliding blocks 3 move in the sliding grooves 2. While the sliding blocks 3 are moving, the trapezoidal blocks 4 squeeze the first springs 6 towards the two sides, causing the first springs 6 to be in a compressed state. The pipeline moves downward along the inclined surfaces of the trapezoidal blocks 4 and enters the empty slots 7. The first springs 6 rebound, causing the two opposite sliding blocks 3 to drive the trapezoidal blocks 4 to reset. The pipeline squeezes the top plate 11 in the empty slots 7. The top plate 11 presses the second spring 9 downward. The second spring 9 rebounds. Through the cooperation between the top plate 11 and the sliding blocks 3, the pipeline is bundled.

[0022] In the description of the present utility model, it should be noted that unless otherwise clearly specified and defined, the terms "installation", "connection", and "coupling" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the communication inside two components. For those of ordinary skill in the art, the specific meanings of the above terms in the present utility model can be understood according to specific circumstances.

[0023] The above describes in detail the preferred embodiments of the present patent. However, the present patent is not limited to the above embodiments. Within the scope of knowledge possessed by those of ordinary skill in the art, various changes can be made without departing from the gist of the present patent.

Claims

1. A building pipeline support with an adjustment function, comprising a support (1), characterized in that: The inner wall of the bracket (1) is provided with a plurality of sliding grooves (2), a slider (3) is slidably connected in the sliding groove (2), a trapezoidal block (4) is fixedly connected to one side of the slider (3), the trapezoidal block (4) is designed as an inclined surface, a plurality of first pillars (5) are provided on both sides of the trapezoidal block (4), a first spring (6) is connected to the outer surface of the first pillar (5), a hollow groove (7) is provided on one side of the bracket (1), the position of the hollow groove (7) corresponds to the position of the trapezoidal block (4), a second pillar (8) is provided in the hollow groove (7), the second pillar (8) passes through one side of the bracket (1), a second spring (9) is connected to the outer surface of the second pillar (8), a baffle (10) is fixedly connected to the end of the second pillar (8), a top plate (11) is fixedly connected to the side of the second pillar (8) away from the baffle (10), and a first support plate (12) is fixedly connected to one side of the bracket (1), and the number of the first support plates (12) is two.

2. The building pipeline support with adjustment function according to claim 1, characterized in that: The end of the first support plate (12) is fixedly connected to a first connection block (13), and the inner wall of the first connection block (13) is rotatably connected to a rotating shaft (14).

3. The building pipeline support with adjustment function according to claim 2, characterized in that: The outer wall of the rotating shaft (14) is rotatably connected to a second connecting block (15); one side of the second connecting block (15) is fixedly connected to a second supporting plate (16); and one end of the second supporting plate (16) away from the second connecting block (15) is fixedly connected to a fixing plate (17).

4. The building pipeline support with adjustment function according to claim 3, characterized in that: Two bolts (18) are respectively threadedly connected to the two ends of the fixing plate (17), and the bolts (18) pass through the fixing plate (17).

5. The building pipeline support with adjustment function according to claim 3, characterized in that: A lower support block (19) is fixedly connected to one side of the fixed plate (17), and the lower support block (19) is rotatably connected to a telescopic rod (20) via a pin shaft.

6. The building pipeline support with adjustment function according to claim 5, characterized in that: One end of the telescopic rod (20) away from the lower support block (19) is rotatably connected to an upper support block (21) via a pin, and an end of the upper support block (21) is connected to the first support plate (12).