A pipeline support device for construction work
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-25
- Publication Date
- 2026-08-11
AI Technical Summary
[0003]管道具有出口以及进口,有的管道以地面平行布设,其一端变径延伸至地面位置,垂直位置处通过法兰连接,但是管道变径的位置具有拐角部分,在受到内部液体的流动作用,液体会先位于拐角的侧内壁,在流通至垂直的管道内,使该位置受到的冲击力荷较大,易出现影响垂直位置处法兰连接部分,影响管道使用的稳定性
通过在管道本体上具有拐角支撑区域,拐角支撑区域外侧设有第一支撑板和两个第二支撑板,安装支撑座的使用位置,可以将第一支撑板贴附在管道本体的拐角支撑区域位置,两个第二支撑板可以分布在拐角支撑区域的两侧位置,在多个方向处共同限制着管道本体的拐角支撑区域,并在减震器的作用下可以起到缓震作用,降低拐角支撑区域受到的冲击力荷,不易出现影响垂直位置处设备接口的法兰连接处,提高管道使用的稳定性。
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Figure CN224622346U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of pipeline support technology, specifically relating to a shock-absorbing pipeline support device for building engineering. Background Technology
[0002] Pipeline transportation is an extremely common method of fluid transport, widely used in construction, municipal engineering, and other fields. During building construction, it is necessary to install plumbing pipes, ventilation pipes, water supply and drainage pipes, gas pipelines, etc. Different sections of the same pipeline are connected using common fittings such as straight connectors and reducers. During installation, support devices are required to ensure the stable operation of the pipeline.
[0003] Pipelines have outlets and inlets. Some pipelines are laid parallel to the ground, with one end changing diameter and extending to the ground. They are connected by flanges at the vertical position. However, the pipe diameter change position has a corner. When subjected to the flow of internal liquid, the liquid will first be located on the inner wall of the corner before flowing into the vertical pipe. This results in a larger impact load at that position, which can easily affect the flange connection at the vertical position and affect the stability of the pipeline. Utility Model Content
[0004] This utility model provides a shock-absorbing pipe support device for building engineering, which has the characteristics of restricting the corner support area of the pipe body in multiple directions, and playing a shock-absorbing role under the action of shock absorbers, reducing the impact load on the corner support area, making it less likely to affect the flange connection of equipment interface in the vertical position, and improving the stability of pipe use.
[0005] This utility model provides the following technical solution: a shock-absorbing pipe support device for building engineering, including a pipe body, a support seat on the outside of the pipe body, a corner support area on the pipe body, a first support plate and two second support plates on the outside of the corner support area, a first connecting column fixedly connected to the outside of the first support plate, and a second connecting column fixedly connected to the outside of the second support plate, both the first connecting column and the second connecting column being slidably connected to the support seat, the two second support plates being distributed opposite to each other, and the inner end face of the second support plate contacting one side of the outer wall of the pipe body.
[0006] The support base has a mounting hole, and the first connecting column is slidably connected in the mounting hole.
[0007] One end of the first connecting column is fixedly connected to a shock absorber, and the other end of the shock absorber is fixed inside the support base.
[0008] The support base has an installation and adjustment cavity, and the second connecting column is located inside the installation and adjustment cavity.
[0009] The mounting and adjusting cavity is fixedly connected with an attachment pad, which is made of rubber.
[0010] Wherein, the outer end face of the attachment pad is opposite to the outer wall of the second connecting column, the second support plate is attached to the outer wall of the pipe body, and the attachment pad is in a compressed state.
[0011] The support base is threaded with a retaining bolt, one end of which contacts the outer wall of the second connecting column.
[0012] The beneficial effects of this utility model are: By having a corner support area on the pipe body, with a first support plate and two second support plates on the outside of the corner support area, the first support plate can be attached to the corner support area of the pipe body, and the two second support plates can be distributed on both sides of the corner support area. This restricts the corner support area of the pipe body in multiple directions, and with the action of the shock absorber, it can play a role in damping the vibration, reducing the impact load on the corner support area, making it less likely to affect the flange connection of the equipment interface in the vertical position, and improving the stability of the pipeline.
[0013] The parts of the device not covered herein are the same as or can be implemented using existing technologies. Attached Figure Description
[0014] Figure 1 This is a schematic diagram of the structure of this utility model; Figure 2 This is a schematic diagram of the structure of the first support plate in this utility model; Figure 3 This is a schematic diagram of the structure of the second connecting column in this utility model; Figure 4 This is a schematic diagram of the structure of the first connecting column in this utility model; In the diagram: 1. Pipe body; 11. Corner support area; 2. First support plate; 21. First connecting column; 22. Shock absorber; 3. Second support plate; 31. Second connecting column; 4. Support seat; 41. Installation adjustment cavity; 42. Mounting hole; 5. Attachment gasket; 6. Fixing bolt. Detailed Implementation
[0015] Please see Figures 1-4The present invention provides the following technical solution: it includes a pipe body 1, a support seat 4 on the outside of the pipe body 1, a corner support area 11 on the pipe body 1, a first support plate 2 and two second support plates 3 on the outside of the corner support area 11, a first connecting column 21 fixedly connected to the outside of the first support plate 2, and a second connecting column 31 fixedly connected to the outside of the second support plate 3. The first connecting column 21 and the second connecting column 31 are slidably connected to the support seat 4. The two second support plates 3 are distributed opposite to each other, and the inner end face of the second support plate 3 contacts one side of the outer wall of the pipe body 1.
[0016] In this implementation scheme: A corner support area 11 is provided on the pipe body 1. A first support plate 2 and two second support plates 3 are provided on the outer side of the corner support area 11. A first connecting column 21 is fixedly connected to the outer side of the first support plate 2, and a second connecting column 31 is fixedly connected to the outer side of the second support plate 3. Both the first connecting column 21 and the second connecting column 31 are slidably connected to the support base 4. The two second support plates 3 are distributed opposite each other, and the inner end face of the second support plate 3 contacts one side of the outer wall of the pipe body 1. The first support plate 2 can be attached to the corner support area 11 of the pipe body 1, and the two second support plates 3 can be distributed on both sides of the corner support area 11. Plate 3 can be connected under the action of the second connecting column 31. The second connecting column 31 is located in the installation and adjustment cavity 41. By tightening the fixing bolt 6, the second connecting column 31 can abut against the attachment pad 5 and squeeze, so that the second support plate 3 is tightly attached to the outer wall of the pipe body 1. It restricts the corner support area 11 of the pipe body 1 in multiple directions, and can play a shock absorption role under the action of the shock absorber 22, reducing the impact load on the corner support area 11, making it less likely to affect the flange connection of the equipment interface in the vertical position, and improving the stability of the pipeline. The shock absorber 22 can be spring type, which is a standard part, and the principle used is existing technology. The model is VT4422.
[0017] The support base 4 has a mounting hole 42. The first connecting column 21 is slidably connected in the mounting hole 42. One end of the first connecting column 21 is fixedly connected to a shock absorber 22, and one end of the shock absorber 22 is fixed in the support base 4. The use position of the support base 4 is such that the first support plate 2 can be attached to the corner support area 11 of the pipe body 1. Under the action of the shock absorber 22, it can play a role in damping vibration.
[0018] The support base 4 has an installation and adjustment cavity 41. The second connecting column 31 is located in the installation and adjustment cavity 41. An attachment pad 5 is fixedly connected in the installation and adjustment cavity 41. The attachment pad 5 is made of rubber. The outer end face of the attachment pad 5 is opposite to the outer wall of the second connecting column 31. The second support plate 3 is attached to the outer wall of the pipe body 1. The attachment pad 5 is in a compressed state. A fixing bolt 6 is threaded on the support base 4. One end of the fixing bolt 6 contacts the outer wall of the second connecting column 31. The attachment pad 5 increases the friction and restricts the position of the second connecting column 31. The second support plate 3 can be connected under the action of the second connecting column 31. The second connecting column 31 is located in the installation and adjustment cavity 41. By tightening the fixing bolt 6, the second connecting column 31 can abut against the attachment pad 5 and be squeezed, so that the second support plate 3 is tightly attached to the outer wall of the pipe body 1. The fixing bolt 6 can be locked with the help of a nut.
[0019] The working principle and usage process of this utility model are as follows: The first connecting column 21 and the second connecting column 31 are slidably connected to the support base 4. The two second support plates 3 are distributed opposite each other. The inner end face of the second support plate 3 contacts one side of the outer wall of the pipe body 1. The use position of the support base 4 can be such that the first support plate 2 is attached to the corner support area 11 of the pipe body 1. The two second support plates 3 can be distributed on both sides of the corner support area 11. The second support plates 3 can be connected under the action of the second connecting column 31. The second connecting column 31 is located in the installation adjustment cavity 41. By tightening the fixing bolt 6, the second connecting column 31 can abut against the attachment pad 5 and squeeze, so that the second support plate 3 is tightly attached to the outer wall of the pipe body 1. The corner support area 11 of the pipe body 1 is restricted in multiple directions. Under the action of the shock absorber 22, it can play a shock-absorbing role, reduce the impact load on the corner support area 11, and prevent the flange connection of the equipment interface at the vertical position from affecting the pipe. This improves the stability of the pipe.
Claims
1. A vibration-damping pipe support device for building engineering, comprising a pipe body (1), wherein a support seat (4) is provided on the outer side of the pipe body (1), characterized in that: The pipe body (1) has a corner support area (11). The corner support area (11) is provided with a first support plate (2) and two second support plates (3) on the outside. A first connecting column (21) is fixedly connected to the outside of the first support plate (2), and a second connecting column (31) is fixedly connected to the outside of the second support plate (3). The first connecting column (21) and the second connecting column (31) are slidably connected to the support seat (4). The two second support plates (3) are distributed opposite to each other, and the inner end face of the second support plate (3) contacts one side of the outer wall of the pipe body (1).
2. The vibration-damping pipe support device for building engineering according to claim 1, characterized in that: The support base (4) has an installation hole (42), and the first connecting column (21) is slidably connected in the installation hole (42).
3. The vibration-damping pipe support device for building engineering according to claim 1, characterized in that: One end of the first connecting column (21) is fixedly connected to a shock absorber (22), and one end of the shock absorber (22) is fixed inside the support base (4).
4. The vibration-damping pipe support device for building engineering according to claim 1, characterized in that: The support base (4) has an installation adjustment cavity (41), and the second connecting column (31) is located inside the installation adjustment cavity (41).
5. A vibration-damping pipe support device for building engineering according to claim 4, characterized in that: An attachment pad (5) is fixedly connected inside the installation adjustment cavity (41), and the attachment pad (5) is made of rubber.
6. A vibration-damping pipe support device for building engineering according to claim 5, characterized in that: The outer end face of the attachment pad (5) is opposite to the outer wall of the second connecting column (31), the second support plate (3) is attached to the outer wall of the pipe body (1), and the attachment pad (5) is in a compressed state.
7. A vibration-damping pipe support device for building engineering according to claim 1, characterized in that: The support base (4) is threaded with a retaining bolt (6), one end of which contacts the outer wall of the second connecting column (31).