Wear-resistant stainless steel water supply pipe

By installing anti-skid components on the outer wall of the stainless steel water supply pipe, the wear problem is solved, the wear resistance and service life are enhanced, while the water flow noise is reduced and safety in humid environments is maintained.

CN223344896UActive Publication Date: 2025-09-16JILIN QUANNAN INTELLIGENT EQUIPMENT MANUFACTURING CO LTD
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Patent Information

Application Number
CN202423043023.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-10
Publication Date
2025-09-16
Estimated Expiration
2034-12-10

AI Technical Summary

Technical Problem

When the existing stainless steel water supply pipe is used for a long time, the outer wall of the pipe will be worn out due to contact with the ground, which affects the integrity and service life of the structure.

Method used

An anti-skid component is arranged on the outer wall of the water supply pipe body, including an inner lining layer, an insulating pipe column, a buffer inner layer, a wrapped steel belt, a buffer outer layer, a moisture-proof sleeve layer and an anti-skid outer layer. The wear resistance is enhanced through the combination of these layers, and the inner lining layer contacts the water body to prevent wear.

Benefits of technology

It enhances the wear resistance of the water supply pipe, prevents slipping, reduces water flow noise, increases service life, and maintains safety in humid environments.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of stainless steel water supply pipes, in particular to a wear-resistant stainless steel water supply pipe. Comprising a pipe body assembly and an anti-skid assembly, the pipe body assembly comprises a water supply pipe body, the anti-skid assembly comprises a center stand column, an inner lining layer is fixed to the inner wall of the water supply pipe body, a mounting inner groove is formed in the inner side of the outer wall of the circumferential surface of the water supply pipe body, and an insulating pipe column is fixed to the inner side of the mounting inner groove; the end, away from the wrapping steel belt, of the buffer outer layer is connected with a moisture-proof sleeve layer, and the end, away from the buffer outer layer, of the moisture-proof sleeve layer is connected with an anti-skid outer layer. Through the arrangement of the anti-skid outer layers, the friction force generated when the water supply pipe body is carried can be increased, the water supply pipe body is prevented from slipping off during carrying, meanwhile, the anti-skid assemblies are exposed out of the arc shape of the mounting inner groove, the arc-shaped protruding anti-skid outer layers are arranged on the outer wall of the water supply pipe body at equal intervals, and the outer wall of the water supply pipe body is replaced to make contact with the ground; and the wear-resistant effect of the water supply pipe body is enhanced.
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Description

Technical Field

[0001] The utility model relates to the technical field of stainless steel water supply pipes, in particular to a wear-resistant stainless steel water supply pipe. Background Art

[0002] Stainless steel water supply pipe is a kind of pipe specially used for transporting water. It is made of stainless steel. Stainless steel water supply pipe is widely used in many fields such as construction, municipal water supply, industrial water, etc.

[0003] When using, the existing stainless steel water supply pipe needs to be buried underground, so the outer wall of the water supply pipe will contact the ground. Long-term use will cause certain wear and tear on the water supply pipe, affecting the integrity of the structure and shortening the service life of the water supply pipe. Utility Model Content

[0004] In response to the above problems, the purpose of the present utility model is to provide a wear-resistant stainless steel water supply pipe to solve the problem that the outer wall of the water supply pipe will contact the ground, and long-term use will cause certain wear to the water supply pipe, affecting the integrity of the structure and shortening the service life of the water supply pipe. The anti-slip component is exposed in an arc-shaped setting of the inner groove for installation, so that its arc-shaped raised anti-slip outer layer is evenly spaced on the outer wall of the water supply pipe body, replacing the outer wall of the water supply pipe body to contact the ground, thereby enhancing the wear resistance of the water supply pipe body.

[0005] To achieve the above objectives, the utility model adopts the following technical solution: a wear-resistant stainless steel water supply pipe, comprising a pipe body assembly and an anti-slip assembly, the pipe body assembly comprising a water supply pipe body, the anti-slip assembly comprising a central column, an inner lining layer is fixed to the inner wall of the water supply pipe body, an installation inner groove is provided on the inner side of the outer wall of the circumference of the water supply pipe body, an insulating pipe column is fixed on the inner side of the installation inner groove, a buffer inner layer is provided on the outer wall of the central column, the end of the buffer inner layer away from the central column is connected to a wrapped steel strip, the end of the wrapped steel strip away from the buffer inner layer is connected to a buffer outer layer, the end of the buffer outer layer away from the wrapped steel strip is connected to a moisture-proof sleeve, and the end of the moisture-proof sleeve away from the buffer outer layer is connected to an anti-slip outer layer.

[0006] The beneficial effects of the present invention are as follows: by setting the anti-slip outer layer, the friction force when transporting the water supply pipe body can be increased, and the water supply pipe body can be prevented from slipping during transportation. At the same time, the arc setting of the anti-slip component is exposed to install the inner groove, so that the arc-shaped raised anti-slip outer layer is arranged at equal intervals on the outer wall of the water supply pipe body, replacing the outer wall of the water supply pipe body contacting the ground, thereby enhancing the wear resistance of the water supply pipe body.

[0007] In order to prevent the water from being damaged by prolonged contact with the water supply pipe:

[0008] As a further improvement of the above technical solution: the inner lining layer is a hollow cylindrical tube body made of polyurethane material, the inner lining layer is adhered to the inner wall of the water supply pipe body by industrial glue, and the inner lining layer is adhered along the length direction of the water supply pipe body.

[0009] The beneficial effects of this improvement are: through the setting of the inner lining layer, it is used for direct contact with the water body. At the same time, the inner lining layer has strong hardness, as well as good wear resistance, shock absorption, radiation resistance, and air permeability, which can prevent the water body from being damaged by long-term contact with the water supply pipe body, thereby improving the service life of the water supply pipe body.

[0010] In order for the pores to absorb the noise generated by the water flow, thereby reducing the noise when the water flows:

[0011] As a further improvement of the above technical solution: the insulating tube column is a cylinder made of porous rubber, and the end of the insulating tube column away from the inner wall of the installation inner groove is adhered to the anti-slip outer layer, and the installation inner groove is opened at equal intervals on the outer wall of the water supply pipe body.

[0012] The beneficial effects of this improvement are: by installing the inner groove, the groove body is used to install the anti-slip component, and the insulating pipe column made of porous rubber gives it a certain elasticity, and the pores can absorb the noise generated by the water flow, thereby reducing the noise when the water flows.

[0013] In order to form the installation and fixation of the buffer inner layer, wrapped steel belt, buffer outer layer, moisture-proof sleeve layer and anti-slip outer layer:

[0014] As a further improvement of the above technical solution: the central column is a rubber cylindrical tube made of fluororubber, the length of the central column is the same as the length of the installation inner groove, and both ends of the central column are connected to the inner wall of the installation inner groove by industrial glue.

[0015] The beneficial effect of this improvement is that the central column is provided to form the installation and fixation of the buffer inner layer, the wrapped steel belt, the buffer outer layer, the moisture-proof sleeve layer and the anti-slip outer layer.

[0016] To improve the anti-slip component's resistance to impact:

[0017] As a further improvement of the above technical solution: the buffer outer layer is arranged along the length direction of the moisture-proof sleeve layer, the buffer outer layer is wrapped around the outer wall of the wrapped steel belt, and the thickness of the buffer inner layer peripheral wall is the same as the thickness of the buffer outer layer peripheral wall.

[0018] The beneficial effect of this improvement is that, by providing the buffer inner layer, it is used in conjunction with the buffer outer layer to improve the resistance of the anti-slip component when subjected to impact force, thereby increasing the service life of the anti-slip component.

[0019] To increase the structural strength of the anti-slip assembly when in use:

[0020] As a further improvement of the above technical solution: a wrapped steel belt is provided between the buffer inner layer and the buffer outer layer, the wrapped steel belt is wrapped around the outer wall of the buffer inner layer, and the wrapped steel belt is wound along the length direction of the buffer inner layer.

[0021] The beneficial effect of this improvement is that by arranging a wrapped steel belt between the buffer inner layer and the buffer outer layer, the tensile resistance of the buffer inner layer and the buffer outer layer can be improved. At the same time, the wrapped steel belt has higher tensile strength and bending performance, thereby increasing the structural strength of the anti-slip component when in use.

[0022] To ensure the safety of the center column when used in a humid environment:

[0023] As a further improvement of the above technical solution: the moisture-proof sleeve is an EPDM rubber layer, the moisture-proof sleeve is wrapped around the outer wall of the buffer outer layer, and the moisture-proof sleeve is arranged along the length direction of the buffer outer layer.

[0024] The beneficial effects of this improvement are: through the moisture-proof sleeve's resistance to polar solutions and chemicals, low water absorption and good insulation properties, it is used to provide moisture-proof protection for the buffer outer layer, the wrapped steel strip, and the buffer inner layer, and can reduce the impact of humidity in the use environment, while ensuring the safety of the center column when used in a humid environment.

[0025] In order to increase the friction when transporting the water supply pipe and prevent it from slipping during transportation:

[0026] As a further improvement of the above technical solution: the anti-slip outer layer is a ceramic silicone rubber layer, the anti-slip outer layer is arranged along the length direction of the moisture-proof sleeve, and the anti-slip outer layer is wrapped around the outer wall of the moisture-proof sleeve.

[0027] The beneficial effect of this improvement is: by setting the anti-slip outer layer, the friction force when transporting the water supply pipe body can be increased, and the water supply pipe body can be prevented from slipping during transportation. At the same time, the arc setting of the anti-slip component is exposed to the inner groove of the installation, so that the arc-shaped raised anti-slip outer layer is arranged at equal intervals on the outer wall of the water supply pipe body, replacing the outer wall of the water supply pipe body contacting the ground, thereby enhancing the wear resistance of the water supply pipe body. BRIEF DESCRIPTION OF THE DRAWINGS

[0028] Figure 1 It is a front cross-sectional structural schematic diagram of the present utility model.

[0029] Figure 2 for Figure 1 Schematic diagram of the enlarged structure at point A in the middle.

[0030] Figure 3 for Figure 1 Schematic diagram of the enlarged structure at point B in the middle.

[0031] Figure 4 This is a side structural diagram of the water supply pipe body of the utility model.

[0032] Figure 5 It is a schematic cross-sectional view of the anti-skid assembly of the present invention.

[0033] In the figure: 1. Pipe body assembly; 11. Water supply pipe body; 12. Inner lining layer; 13. Insulating pipe column; 14. Installation inner groove; 2. Anti-slip assembly; 21. Anti-slip outer layer; 22. Moisture-proof sleeve; 23. Buffer outer layer; 24. Wrapping steel tape; 25. Buffer inner layer; 26. Center column. DETAILED DESCRIPTION

[0034] In order to enable those skilled in the art to better understand the technical solution of the present invention, the present invention is described in detail below with reference to the accompanying drawings. The description in this part is only exemplary and explanatory and should not have any limiting effect on the scope of protection of the present invention.

[0035] like Figure 1-5As shown, a wear-resistant stainless steel water supply pipe includes a pipe body component 1 and an anti-skid component 2. The pipe body component 1 includes a water supply pipe body 11, and the anti-skid component 2 includes a central column 26. The inner wall of the water supply pipe body 11 is fixed with an inner lining layer 12. The inner side of the outer wall of the water supply pipe body 11 is provided with an installation inner groove 14. The inner side of the installation inner groove 14 is fixed with an insulating pipe column 13. The outer wall of the central column 26 is provided with a buffer inner layer 25. The end of the buffer inner layer 25 away from the central column 26 is connected to a wrapped steel strip 24. The end of the wrapped steel strip 24 away from the buffer inner layer 25 is connected to a buffer outer layer 23. The end of the buffer outer layer 23 away from the wrapped steel strip 24 is connected to a moisture-proof sleeve layer 22. The moisture-proof sleeve The end of the layer 22 away from the buffer outer layer 23 is connected to the anti-slip outer layer 21, and the inner lining layer 12 is a hollow cylindrical tube made of polyurethane material. The inner lining layer 12 is adhered to the inner wall of the water supply pipe body 11 by industrial glue, and the inner lining layer 12 is adhered along the length direction of the water supply pipe body 11; through the setting of the inner lining layer 12, it is used for direct contact with the water body, and at the same time, the inner lining layer 12 has strong hardness, as well as wear resistance, shock absorption, radiation resistance, and good air permeability, which can prevent the water body from being in long-term contact with the water supply pipe body 11 and causing damage to it, thereby improving the service life of the water supply pipe body 11, and the insulating pipe column 13 is a cylinder made of porous rubber, and the insulating pipe column 13 is away from the installation inner groove 14. One end of the wall is adhered to the anti-slip outer layer 21, and the installation inner groove 14 is opened at equal intervals on the outer wall of the water supply pipe body 11; through the setting of the installation inner groove 14, the groove body for installing the anti-slip component 2, the insulating pipe column 13 made of porous rubber makes it have a certain elasticity, and the pores can absorb the noise generated by the water flow, thereby reducing the noise when the water body flows, the central column 26 is a rubber cylindrical tube body made of fluororubber, the length of the central column 26 is the same as the length of the installation inner groove 14, and both ends of the central column 26 are connected to the inner wall of the installation inner groove 14 by industrial glue; through the setting of the central column 26, it is used to form a buffer inner layer 25, a wrapped steel belt 24, and a buffer outer layer 23. The installation and fixation of the moisture-proof sleeve 22 and the anti-slip outer layer 21. The buffer outer layer 23 is arranged along the length direction of the moisture-proof sleeve 22. The buffer outer layer 23 is wrapped around the outer wall of the wrapped steel belt 24. The thickness of the circumferential wall of the buffer inner layer 25 is the same as the thickness of the circumferential wall of the buffer outer layer 23. The buffer inner layer 25 is arranged to cooperate with the buffer outer layer 23 to improve the resistance of the anti-slip component 2 when it is subjected to impact force, thereby improving the service life of the anti-slip component 2. A wrapped steel belt 24 is arranged between the buffer inner layer 25 and the buffer outer layer 23. The wrapped steel belt 24 is wrapped around the outer wall of the circumferential surface of the buffer inner layer 25. The wrapped steel belt 24 is wound along the length direction of the buffer inner layer 25.By arranging a wrapped steel belt 24 between the buffer inner layer 25 and the buffer outer layer 23, the tensile resistance of the buffer inner layer 25 and the buffer outer layer 23 can be improved. At the same time, the wrapped steel belt 24 has high tensile strength and bending performance, thereby increasing the structural strength of the anti-slip component 2 when in use. The moisture-proof sleeve 22 is an EPDM rubber layer. The moisture-proof sleeve 22 is wrapped around the outer wall of the buffer outer layer 23. The moisture-proof sleeve 22 is arranged along the length direction of the buffer outer layer 23. The moisture-proof sleeve 22 has resistance to polar solutions and chemicals, low water absorption and good insulation properties, and is used for moisture-proof protection of the buffer outer layer 23, the wrapped steel belt 24, and the buffer inner layer 25, and can The anti-slip outer layer 21 is a ceramic silicone rubber layer that is arranged along the length of the moisture-proof jacket 22 and wrapped around the outer wall of the moisture-proof jacket 22. The anti-slip outer layer 21 increases friction when transporting the water supply pipe 11, preventing it from slipping during transport. Furthermore, the arc-shaped arrangement of the anti-slip assembly 2, which exposes the inner mounting groove 14, allows the arc-shaped raised anti-slip outer layer 21 to be evenly spaced on the outer wall of the water supply pipe 11, replacing the outer wall of the water supply pipe 11 in contact with the ground, thereby enhancing the wear resistance of the water supply pipe 11.

[0036] The working principle of the present invention is as follows: when in use, the inner lining layer 12 is provided for direct contact with the water body, and at the same time, the inner lining layer 12 has strong hardness, and is wear-resistant, shock-absorbing, radiation-resistant, and air-resistant, which can prevent the water body from being damaged by long-term contact with the water supply pipe body 11, thereby improving the service life of the water supply pipe body 11. The inner groove 14 is provided for the groove body for installing the anti-slip component 2. The insulating pipe column 13 made of porous rubber has a certain elasticity, and the pores can absorb the noise generated by the water flow, thereby reducing the noise when the water body flows. The central column 26 is provided for forming the installation and fixation of the buffer inner layer 25, the wrapped steel belt 24, the buffer outer layer 23, the moisture-proof sleeve 22, and the anti-slip outer layer 21. The buffer inner layer 25 is provided for use in conjunction with the buffer outer layer 23 to improve the resistance of the anti-slip component 2 when subjected to impact force, thereby improving the service life of the anti-slip component 2. A wrapped steel tape 24 is provided between the buffer inner layer 25 and the buffer outer layer 23, which can improve the tensile strength of the buffer inner layer 25 and the buffer outer layer 23. At the same time, the wrapped steel tape 24 has high tensile strength and bending performance, thereby increasing the structural strength of the anti-slip component 2 when in use. The moisture-proof sleeve 22 has resistance to polar solutions and chemicals, low water absorption and good insulation properties, which is used to protect the buffer outer layer 23, the wrapped steel tape 24, and the buffer inner layer 25 from moisture, and can reduce the use of The anti-skid outer layer 21 can increase the friction when transporting the water supply pipe body 11, and prevent the water supply pipe body 11 from slipping during transportation. At the same time, the anti-skid component 2 exposes the arc setting of the inner groove 14, so that the arc-shaped raised anti-skid outer layer 21 is evenly spaced on the outer wall of the water supply pipe body 11, replacing the outer wall of the water supply pipe body 11 contacting the ground, thereby enhancing the wear resistance of the water supply pipe body 11.

[0037] It should be noted that, in this article, the terms "comprises", "includes" or any other variations thereof are intended to cover non-exclusive inclusion, so that a process, method, article or apparatus that includes a series of elements includes not only those elements, but also includes other elements not explicitly listed, or also includes elements inherent to such process, method, article or apparatus.

[0038] This article uses specific examples to illustrate the principles and implementation methods of the present invention. The above examples are only used to help understand the method and core ideas of the present invention. The above is only a preferred implementation method of the present invention. It should be pointed out that due to the limitations of textual expression, there are objectively infinite specific structures. For ordinary technicians in this technical field, without departing from the principles of the present invention, they can make several improvements, modifications or changes, and can also combine the above technical features in an appropriate manner; these improvements, modifications, changes or combinations, or the direct application of the concept and technical solution of the utility model to other occasions without improvement, should be regarded as the scope of protection of the present utility model.

Claims

1. A wear-resistant stainless steel water supply pipe, comprising a pipe body assembly (1) and an anti-slip assembly (2), wherein the pipe body assembly (1) comprises a water supply pipe body (11), and the anti-slip assembly (2) comprises a central column (26), characterized in that: An inner lining layer (12) is fixed to the inner wall of the water supply pipe body (11), an inner mounting groove (14) is provided on the inner side of the outer wall of the peripheral surface of the water supply pipe body (11), an insulating pipe column (13) is fixed to the inner side of the mounting groove (14), a buffer inner layer (25) is provided on the outer wall of the central column (26), an end of the buffer inner layer (25) away from the central column (26) is connected to a wrapped steel strip (24), an end of the wrapped steel strip (24) away from the buffer inner layer (25) is connected to a buffer outer layer (23), an end of the buffer outer layer (23) away from the wrapped steel strip (24) is connected to a moisture-proof sleeve (22), and an end of the moisture-proof sleeve (22) away from the buffer outer layer (23) is connected to an anti-slip outer layer (21).

2. The wear-resistant stainless steel water supply pipe according to claim 1, characterized in that: The inner lining layer (12) is a hollow cylindrical tube made of polyurethane material. The inner lining layer (12) is adhered to the inner wall of the water supply pipe body (11) by industrial glue. The inner lining layer (12) is adhered along the length direction of the water supply pipe body (11).

3. The wear-resistant stainless steel water supply pipe according to claim 1, characterized in that: The insulating tube column (13) is a cylindrical body made of porous rubber. One end of the insulating tube column (13) away from the inner wall of the mounting inner groove (14) is adhered to the anti-slip outer layer (21). The mounting inner groove (14) is opened at equal intervals on the outer wall of the circumference of the water supply pipe body (11).

4. The wear-resistant stainless steel water supply pipe according to claim 1, characterized in that: The central column (26) is a rubber cylindrical tube made of fluororubber. The length of the central column (26) is the same as the length of the installation inner groove (14). Both ends of the central column (26) are connected to the inner wall of the installation inner groove (14) by gluing with industrial glue.

5. The wear-resistant stainless steel water supply pipe according to claim 1, characterized in that: The buffer outer layer (23) is arranged along the length direction of the moisture-proof sleeve layer (22), and the buffer outer layer (23) is wrapped around the outer wall of the wrapped steel belt (24). The thickness of the peripheral wall of the buffer inner layer (25) is the same as the thickness of the peripheral wall of the buffer outer layer (23).

6. The wear-resistant stainless steel water supply pipe according to claim 1, characterized in that: A wrapping steel belt (24) is provided between the buffer inner layer (25) and the buffer outer layer (23), and the wrapping steel belt (24) is wrapped around the outer wall of the buffer inner layer (25). The wrapping steel belt (24) is wound along the length direction of the buffer inner layer (25).

7. The wear-resistant stainless steel water supply pipe according to claim 1, characterized in that: The moisture-proof sleeve (22) is an EPDM rubber layer, and the moisture-proof sleeve (22) is wrapped around the outer wall of the buffer outer layer (23). The moisture-proof sleeve (22) is arranged along the length direction of the buffer outer layer (23).

8. The wear-resistant stainless steel water supply pipe according to claim 1, characterized in that: The anti-slip outer layer (21) is a ceramic silicone rubber layer. The anti-slip outer layer (21) is arranged along the length direction of the moisture-proof sleeve (22). The anti-slip outer layer (21) is wrapped around the outer wall of the moisture-proof sleeve (22).