Pipe clamp with pressure resistance function
By incorporating limiting and pressure-resistant components into pipe clamps, combined with adjustable inner diameter clamps and flexible metal connections, the problem of insufficient pressure resistance of existing pipe clamps under high pressure environments is solved, achieving stable fixing effect and pressure resistance, suitable for application scenarios of different sizes.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- THE FIRST CONSTR ENG COMPANY LTD OF CHINA CONSTR SECOND ENG BUREAU
- Filing Date
- 2025-08-19
- Publication Date
- 2026-06-02
AI Technical Summary
Existing pipe clamps have insufficient pressure resistance under high pressure environments. Rigid material clamps have insufficient adaptability, while flexible material clamps are prone to deformation and sealing failure under high pressure, making it difficult to balance applicability and pressure resistance.
Design a pipe clamp with pressure resistance function, and set a limiting component and a pressure resistance component. The limiting component is used to assist in limiting the pipes with different inner diameters, and the pressure resistance component is used to enhance the pressure resistance effect. The clamp component adopts a clamp with adjustable inner diameter and a flexible metal connection part, combined with an elastic element to buffer the impact force.
It achieves stable positioning and pressure resistance on pipes with different inner diameters, improves the applicability and service life of pipe clamps, and can effectively protect pipes under high pressure environments, showing good application prospects.
Smart Images

Figure CN224315674U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of pipe clamp technology, and in particular to a pipe clamp with pressure resistance function. Background Technology
[0002] Pipe clamps are mechanical fittings used for connecting, fixing, or sealing pipes. They typically consist of a ring-shaped structure that surrounds the outer circumference of the pipe and clamps the pipe using bolts, clips, or other fastening methods. They are widely used in various piping systems such as water supply and drainage, HVAC, chemical, and fire protection. Their core function is to ensure the sealing, stability, and structural safety of pipe connections.
[0003] Among existing pipe clamp products, there are two typical material application directions and functional differentiations.
[0004] One type is made of hard materials such as cast iron and stainless steel. These clamps have excellent pressure resistance and deformation resistance due to the high strength of the materials themselves. They can maintain structural stability in high-pressure pipeline environments or long-term load-bearing conditions, effectively preventing pipelines from loosening or leaking due to pressure fluctuations. However, due to the rigidity of the hard materials, their size specifications are relatively fixed. Once formed, it is difficult to flexibly adjust them according to the actual pipe diameter. When facing non-standard pipe diameters or pipelines with slight dimensional deviations, they are prone to insufficient adaptability.
[0005] Another type is made of flexible materials such as rubber and elastic plastics. These clamps utilize the elastic deformation ability of the materials to adapt to pipes of different diameters within a certain range. They have greater flexibility and compatibility during installation and can better cope with slight differences in pipe size or dimensional changes caused by thermal expansion and contraction. However, the mechanical strength of flexible materials is relatively low, which leads to a significant shortcoming in the pressure resistance of these clamps. They are difficult to withstand the pressure load of high-pressure pipeline systems and are prone to deformation and sealing failure under high-pressure conditions, which greatly limits their applicable scenarios.
[0006] In summary, existing pipe clamps have certain defects and do not meet people's usage requirements. Therefore, we propose a pipe clamp with pressure resistance. Utility Model Content
[0007] The main purpose of this utility model is to provide a pipe clamp with pressure resistance function, which is equipped with a limiting component and a pressure resistance component. When in use, the limiting component can assist in limiting the pipes of different inner diameters, and together with the pressure resistance component, it can achieve a certain pressure resistance effect. Thus, this pipe clamp has a wide range of applications, good performance, and good application prospects, and can effectively solve the problems in the background technology.
[0008] To achieve the above objectives, the technical solution adopted by this utility model is as follows:
[0009] A pipe clamp with pressure resistance includes a main body, a pressure-resistant component, and a limiting component:
[0010] A clamp assembly is provided at the upper middle position of the main body;
[0011] The compression-resistant component for protecting the clamp assembly is installed at the upper end of the clamp assembly;
[0012] The limiting component used to define the position of the pipe is installed inside the pressure-resistant component;
[0013] The clamp assembly uses a clamp with an adjustable inner diameter.
[0014] Preferably, the clamp assembly includes a mounting base, an adjusting component, and a clamp body:
[0015] The mounting base is fixedly installed at the middle position of the upper end face of the main body;
[0016] One end of the adjusting element is located inside the mounting base;
[0017] One end of the clamp body is fixedly connected to the mounting base, and the other end of the clamp body passes through the mounting base;
[0018] The other end of the clamp body passes through the mounting base and forms a ring.
[0019] Preferably, the clamp body includes a main body and a connecting part:
[0020] One end of the main body is fixedly mounted on the mounting base;
[0021] One end of the connecting part is fixedly connected to the other end of the main body, and the other end of the connecting part passes through the mounting base;
[0022] The adjusting member defines and adjusts the position of the connecting portion.
[0023] Preferably, the adjusting component is an adjusting bolt, and the connecting part is provided with several sets of adjusting grooves at equal intervals that are adapted to the adjusting bolt.
[0024] Preferably, the limiting component includes several sets of parallel airbags, which are installed on the inner surface of the main body and on the mounting base, and the mounting base is provided with an inflation port communicating with the airbags.
[0025] Preferably, the anti-compression component includes two sets of anti-compression members, which are installed in parallel on the outer surface of the main body.
[0026] Preferably, the pressure-resistant component includes an arc-shaped portion and a connecting component:
[0027] The curved section is located on the upper outer side of the main body;
[0028] The number of connectors is several groups, and the distance between the several groups of connectors is equal;
[0029] The arc-shaped portion is connected to the main body portion via a connector.
[0030] Preferably, the connector includes a sliding block and an elastic element:
[0031] The sliding block is located in a groove opened on the main body;
[0032] The two ends of the elastic element are connected to the sliding block and the arc-shaped part, respectively;
[0033] The sliding block is provided with a guide post, and the main body is provided with a guide channel for the guide post to move. An elastic limiting post is installed at the end of the sliding block facing the arc-shaped part to prevent excessive deformation of the elastic element.
[0034] Compared with the prior art, the beneficial effects of this utility model are:
[0035] Firstly, this solution provides a pipe clamp with pressure resistance function, which is equipped with a limit component and a pressure resistance component. During use, the limit component can assist in limiting the pipes of different inner diameters, and together with the pressure resistance component, it can achieve a certain pressure resistance effect. Therefore, this pipe clamp has a wide range of applications, good performance, and good application prospects.
[0036] Secondly, this solution provides a pipe clamp with pressure resistance. The clamp assembly includes a main body and a connecting part. The main body is made of metal with a certain pressure resistance, while the connecting part is made of flexible metal. When in use, the main body and the connecting part cooperate with each other. The connecting part pulls the main body to cause a certain deformation, which reduces the inner diameter of the main body. With the help of the limiting component, it can achieve stable limiting of pipes of different diameters. It has good performance and good application prospects.
[0037] Thirdly, this solution provides a pipe clamp with pressure resistance function. A pressure resistance component is set on the outside of the clamp assembly. The clamp assembly and the pressure resistance component are slidably connected, and an elastic element is used for buffering. This allows the pressure resistance component to dissipate more impact force when a collision occurs, which can better protect the pipe clamp and make the pipe clamp perform better. It has good application prospects. Attached Figure Description
[0038] Figure 1 This is a schematic diagram of the overall structure of a pipe clamp with pressure resistance function according to this utility model;
[0039] Figure 2This is a front view schematic diagram of a pipe clamp with pressure resistance function according to this utility model;
[0040] Figure 3 This is a partial structural diagram of the adjustable component in the separated state of a pipe clamp with pressure resistance function according to this utility model;
[0041] Figure 4 This is a partial structural diagram of the clamp assembly in a pipe clamp with pressure resistance function according to this utility model;
[0042] Figure 5 This is a schematic diagram of a partial explosion of the pressure-resistant component in a pipe clamp with pressure-resistant function according to this utility model;
[0043] Figure 6 This is a partial schematic diagram of the pressure-resistant component in a pipe clamp with pressure-resistant function according to this utility model from other angles;
[0044] Figure 7 This utility model relates to a pipe clamp with pressure resistance function. Figure 6 Enlarged view of the structure at point A in the middle.
[0045] In the diagram: 1. Main body; 2. Clamp assembly; 21. Mounting base; 22. Adjusting component; 23. Main body part; 24. Connecting part; 25. Adjusting groove; 3. Pressure-resistant component; 31. Arc-shaped part; 32. Sliding block; 33. Elastic component; 34. Guide post; 35. Elastic limiting post; 4. Limiting component; 41. Inflation port. Detailed Implementation
[0046] To make the technical means, creative features, objectives and effects of this utility model easier to understand, the present utility model will be further described below in conjunction with specific embodiments.
[0047] This application provides a pipe clamp with pressure resistance, addressing the shortcomings of existing technologies. One type uses rigid materials like cast iron and stainless steel, which, due to the high strength of these materials, offer excellent pressure and deformation resistance, maintaining structural stability in high-pressure pipeline environments or under long-term load conditions. This effectively prevents pipe loosening or leakage due to pressure fluctuations. However, the rigidity of these materials limits their size, making them difficult to adjust to the actual pipe diameter once formed. This leads to insufficient adaptability when dealing with non-standard pipe diameters or pipes with slight dimensional deviations. Another type uses flexible materials like rubber and elastic plastics. These clamps utilize the elastic deformation of these materials to adapt to pipes of different diameters within a certain range, offering greater flexibility and compatibility during installation. They can better handle slight differences in pipe size or dimensional changes due to thermal expansion and contraction. However, the relatively low mechanical strength of flexible materials results in significant shortcomings in pressure resistance, making them unable to withstand the pressure loads of high-pressure pipeline systems. Under high-pressure conditions, they are prone to deformation and sealing failure, severely limiting their applicability.
[0048] Example 1
[0049] like Figure 1-2 As shown, a pipe clamp with pressure resistance includes a main body 1, a pressure-resistant component 3, and a limiting component 4.
[0050] A clamp assembly 2 is provided at the upper middle position of the main body 1; a pressure-resistant component 3 for protecting the clamp assembly 2 is installed at the upper end of the clamp assembly 2; a limiting component 4 for limiting the position of the pipeline is installed inside the pressure-resistant component 3; wherein, the clamp assembly 2 adopts a clamp with an adjustable inner diameter.
[0051] When in use, the pipe is located inside the clamp assembly 2. The clamp assembly 2 uses a clamp with an adjustable inner diameter, which can be used for pipes of different sizes. With the limiting component 4, the fixing effect of pipes of different sizes can be further improved. With the anti-pressure component 3 on the outside of the clamp assembly 2, it has a certain anti-pressure effect, which can resist external pressure to a certain extent, play a protective role, and extend the service life of the clamp assembly 2.
[0052] This solution provides a pipe clamp with pressure resistance function, which is equipped with a limit component 4 and a pressure-resistant component 3. During use, the limit component 4 can assist in limiting pipes of different inner diameters. In conjunction with the pressure-resistant component 3, it can achieve a certain pressure resistance effect, thus making this pipe clamp widely applicable, effective, and promising.
[0053] Example 2
[0054] like Figure 1-4As shown, based on Example 1, this example also describes the following structure:
[0055] The clamp assembly 2 includes a mounting base 21, an adjusting member 22, and a clamp body: the mounting base 21 is fixedly installed at the middle position of the upper end face of the main body 1; one end of the adjusting member 22 is disposed inside the mounting base 21; one end of the clamp body is fixedly connected to the mounting base 21, and the other end of the clamp body passes through the mounting base 21; wherein, after the other end of the clamp body passes through the mounting base 21, it forms an annular shape, and the pipe is located inside the annular shape to achieve pipe limiting.
[0056] The adjusting element 22 can change the inner diameter of the clamp body, so that the clamp body can be used for pipes with different inner diameters, and the overall applicability is relatively wide.
[0057] The clamp body consists of a main body 23 and a connecting part 24.
[0058] One end of the main body 23 is fixedly mounted on the mounting base 21. The main body 23 is made of hard metal that can undergo partial deformation. It can undergo a certain amount of deformation, but the deformation range is small, only a change in curvature.
[0059] One end of the connecting part 24 is fixedly connected to the other end of the main body part 23, and the other end of the connecting part 24 passes through the mounting base 21. The connecting part 24 is a highly elastic metal material that can be bent.
[0060] The adjusting member 22 defines and adjusts the position of the connecting part 24.
[0061] The adjusting component 22 uses adjusting bolts, and the connecting part 24 has several sets of adjusting grooves 25 that are adapted to the adjusting bolts at equal intervals.
[0062] When in use, rotating the adjusting component 22 causes the thread on the adjusting component 22 to contact the adjusting groove 25, which in turn causes the connecting part 24 to move, increasing or decreasing the length of the connecting part 24 passing through the mounting base 21, thereby changing the inner diameter of the main body 23 and thus achieving the limiting of pipes of different sizes.
[0063] The limiting component 4 includes several sets of parallel airbags, which are installed on the inner surface of the main body 23 and the mounting base 21. The mounting base 21 is equipped with an inflation port 41 that communicates with the airbags.
[0064] The airbag is equipped with a rubber strip on the outside to further enhance the sealing effect. When the airbag is inflated, it will compress the rubber strip, making the rubber strip fit tightly against the pipe and deforming it, thereby achieving stable positioning of the pipe.
[0065] This solution provides a pipe clamp with pressure resistance. The clamp assembly 2 includes a main body 23 and a connecting part 24. The main body 23 is made of metal with a certain pressure resistance, while the connecting part 24 is made of flexible metal. In use, the main body 23 and the connecting part 24 cooperate with each other. The connecting part 24 pulls the main body 23 to cause a certain deformation, which reduces the inner diameter of the main body 23. With the help of the limiting assembly 4, it can achieve stable limiting of pipes of different diameters. It has good performance and good application prospects.
[0066] Example 3
[0067] like Figure 1-7 As shown, based on Example 1, this example also describes the following structure:
[0068] The anti-compression component 3 includes two sets of anti-compression parts, which are installed in parallel on the outer surface of the main body 23.
[0069] Each set of pressure-resistant components is independent and will not interfere with each other. There will be no situation where the failure of one set of pressure-resistant components will cause the entire pressure-resistant assembly 3 to fail to perform its pressure-resistant function.
[0070] The pressure-resistant component includes an arc-shaped portion 31 and a connecting member:
[0071] The arc-shaped part 31 is located on the upper outer side of the main body part 23; there are several sets of connectors, and the distance between the several sets of connectors is equal;
[0072] The arc-shaped part 31 is connected to the main body part 23 via a connector.
[0073] The curved part 31 is made of hard alloy, which mainly plays a role in resisting pressure, while the connecting part mainly plays a role in buffering, relieving the force generated by the impact, and has a good performance.
[0074] The connector includes a sliding block 32 and an elastic element 33:
[0075] The sliding block 32 is located in the groove opened on the main body 23; the two ends of the elastic member 33 are respectively connected to the sliding block 32 and the arc-shaped part 31;
[0076] The sliding block 32 is provided with a guide post 34, and the main body 23 is provided with a guide channel for the guide post 34 to move. The end of the sliding block 32 facing the arc-shaped part 31 is equipped with an elastic limiting post 35 to prevent the elastic member 33 from being over-deformed. The elastic member 33 is a spring. When the elastic member 33 is deformed to a certain extent, it will contact the elastic limiting post 35, thereby preventing the elastic member 33 from being over-compressed and damaged.
[0077] In use, the sliding block 32 and the guide post 34 allow the arc-shaped part 31 to swing left and right to a certain extent. Combined with the effect of the elastic element 33, the buffering and sliding can consume most of the impact force, so that the impact force transmitted to the main body 23 is small, thereby achieving the effect of pressure resistance. The overall use effect is good and it has good application prospects.
[0078] This solution provides a pipe clamp with pressure resistance function. A pressure resistance component 3 is set on the outside of the clamp component 2. The clamp component 2 and the pressure resistance component 3 are slidably connected. Moreover, an elastic element 33 is used for buffering, so that when a collision occurs, the pressure resistance component 3 can dissipate more impact force, which can better protect the pipe clamp and make the pipe clamp perform better. It has good application prospects.
[0079] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claims. The scope of protection of this utility model is defined by the appended claims and their equivalents.
Claims
1. A pipe clamp with pressure-resistant function, characterized in that, include: The main body (1) has a clamp assembly (2) at the middle of its upper end. A pressure-resistant component (3) for protecting the clamp assembly (2) is installed at the upper end of the clamp assembly (2); A limiting component (4) for defining the position of the pipe is installed inside the pressure-resistant component (3); The clamp assembly (2) is a clamp with an adjustable inner diameter.
2. A pipe clamp with pressure-resistant function according to claim 1, characterized in that: The clamp assembly (2) includes: Mounting base (21) is fixedly installed at the middle position of the upper end face of the main body (1); Adjustment element (22), one end of which is disposed inside the mounting base (21); The clamp body has one end fixedly connected to the mounting base (21), and the other end passes through the mounting base (21). The other end of the clamp body passes through the mounting base (21) and forms a ring.
3. A pipe clamp with pressure-resistant function according to claim 2, characterized in that: The clamp body includes: The main body (23) is fixedly mounted on the mounting base (21) at one end; The connecting part (24) has one end fixedly connected to the other end of the main body part (23), and the other end passes through the mounting base (21). The adjusting member (22) defines and adjusts the position of the connecting portion (24).
4. A pipe clamp with pressure-resistant function according to claim 3, characterized in that: The adjusting component (22) adopts adjusting bolts, and the connecting part (24) is provided with several sets of adjusting grooves (25) that are adapted to the adjusting bolts at equal intervals.
5. A pipe clamp with pressure-resistant function according to claim 4, characterized in that: The limiting component (4) includes several sets of parallel airbags, which are installed on the inner surface of the main body (23) and the mounting base (21). The mounting base (21) is equipped with an inflation port (41) that communicates with the airbag.
6. A pipe clamp with pressure-resistant function according to claim 5, characterized in that: The anti-compression component (3) includes two sets of anti-compression parts, which are installed in parallel on the outer surface of the main body (23).
7. A pipe clamp with pressure-resistant function according to claim 6, characterized in that: The pressure-resistant component includes: The arc-shaped part (31) is located on the upper outer side of the main body part (23); The connectors are in several groups, and the distance between the several groups of connectors is equal. The arc-shaped part (31) is connected to the main body part (23) by a connector.
8. A pipe clamp with pressure-resistant function according to claim 7, characterized in that: The connector includes: The sliding block (32) is located in a groove opened on the main body (23); The elastic element (33) is connected at both ends to the sliding block (32) and the arc-shaped part (31), respectively; The sliding block (32) is provided with a guide post (34), the main body (23) is provided with a guide channel for the guide post (34) to move, and the sliding block (32) is provided with an elastic limiting post (35) at one end facing the arc-shaped part (31) to avoid excessive deformation of the elastic element (33).