Water supply pipeline flow-state ice slurry cleaning device
By using a clamping plate and spring structure to limit and protect the water supply pipeline, the problem of pipeline rupture caused by excessive ice slurry injection pressure is solved, ensuring the safe use of the water supply pipeline.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-28
- Publication Date
- 2026-03-13
AI Technical Summary
Existing water supply pipeline cleaning devices, when using ice slurry, are prone to pipeline rupture if the injection pressure is too high, affecting operational safety.
A clamp and spring structure is used to limit and protect the water supply pipeline. The spring force and the tight fit of the handwheel ensure that the clamp fits the outer surface of the pipeline, reducing the risk of rupture caused by excessive injection pressure.
This effectively reduces the possibility of water supply pipes rupturing due to excessive ice slurry injection pressure, and improves the safety and stability of pipe use.
Smart Images

Figure CN223988855U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of water supply pipeline technology, specifically to a water supply pipeline fluidized ice slurry cleaning device. Background Technology
[0002] Water supply pipelines are used to transport drinking water, domestic water, and industrial water. Their main function is to transport water from the water source or water treatment facility to the user terminal, such as homes, businesses, and public buildings. Water supply pipelines are an indispensable and important component of the water supply system. When selecting and using water supply pipelines, it is necessary to comprehensively consider various factors to ensure the safe, reliable, and efficient operation of the pipeline system.
[0003] In the process of cleaning water supply pipes, ice slurry (also known as fluid ice, liquid ice, dynamic ice, fluidized ice, or fluidized ice) can generally be used as the cleaning medium. Using ice slurry as the cleaning medium does not require the use of chemical agents, so it is environmentally friendly, pollution-free, and safe.
[0004] Existing devices that use ice slurry to clean water supply pipelines require a certain pressure to be applied during the injection of the ice slurry into the pipeline to ensure proper injection. However, if the injection pressure is too high, it will increase the pressure in the pipeline, which may cause the pipeline to rupture due to excessive pressure, affecting the use of the water supply pipeline. Therefore, it is necessary to propose a flow-through ice slurry cleaning device for water supply pipelines to solve the above problems. Utility Model Content
[0005] The purpose of this utility model is to provide a fluidized ice slurry cleaning device for water supply pipelines, in order to solve the problem that when using ice slurry to clean water supply pipelines, a certain pressure needs to be applied to the ice slurry when injecting it into the pipeline to ensure that the ice slurry is injected into the pipeline normally. However, if the injection pressure is too high, it will increase the pressure in the pipeline, which may easily cause the pipeline to rupture due to excessive pressure, thus affecting the use of the water supply pipeline.
[0006] To solve the above-mentioned technical problems, the technical solution adopted by this utility model is as follows:
[0007] A water supply pipeline fluidized ice slurry cleaning device includes a mounting frame; a clamping plate 1 is movably mounted on the top of the mounting frame via a telescopic frame; a clamping plate 2 is positioned on top of the clamping plate 1; a sliding plate is fixedly mounted on the top of the clamping plate 1, the sliding plate penetrating the interior of the clamping plate 2; a pair of clamping blocks are slidably mounted on the top of the clamping plate 2 via a pair of springs, each clamping block being located at one end of the sliding plate; a screw is fixedly mounted on the top of the clamping plate 1 on one side of each sliding plate, the screw penetrating the interior of the clamping plate 2; handwheels are fitted to the top and bottom of the clamping plate 2, each handwheel being attached to the outside of the screw. The surface is threaded. A clamping plate three is movably mounted on the top of the mounting bracket at one end of clamping plate one via an adjusting bracket. A clamping plate four is provided on the other side of clamping plate three. A movable plate is fixedly mounted on one side of clamping plate three, and the movable plate passes through the interior of clamping plate four. A limit block is slidably mounted on the other side of clamping plate four via a pair of springs three. Each limit block is located at both ends of the movable plate. A lead screw is fixedly connected to the other side of clamping plate three at the bottom of the movable plate. The lead screw passes through the interior of clamping plate four. Rollers are fitted on both sides of the surface of clamping plate four, and each roller is threadedly connected to the outer surface of the lead screw.
[0008] During the cleaning of water supply pipes using ice slurry, a certain pressure needs to be applied when injecting the ice slurry to ensure proper injection into the pipe. However, if the injection pressure is too high, it will increase the pressure in the pipe, which may cause the pipe to rupture due to excessive pressure, affecting the use of the water supply pipe. In this application, the elastic force of spring one can generate tension on the clamping block, allowing the clamping block to squeeze and limit the sliding plate. Furthermore, by tightly fitting the two handwheels to the surface of clamping plate two, clamping plate two can be limited, ensuring that clamping plate one and clamping plate two can be in contact with the water supply. The top and bottom of the outer surface of the pipe fit together, thus providing a certain degree of limit protection for the water supply pipe. The elastic force of the spring three itself can generate tension on the limiting block, allowing the limiting block to squeeze and limit the movable plate. Furthermore, by tightly fitting the two rotating wheels with the surface of the clamping plate two, the clamping plate two can be limited, ensuring that the clamping plates four and three can fit together with both sides of the outer surface of the water supply pipe, thereby further limiting and protecting the water supply pipe. This reduces the possibility of the water supply pipe rupturing due to excessive pressure when the ice slurry is injected into the pipe, thus achieving a protective effect on the water supply pipe.
[0009] A further improvement of the present invention is that: a stop block is attached to the other side surface of each clamping block, a spring two is fixedly installed on the other side surface of each stop block, and the other side surface of each spring two is fixedly connected to the surface of the clamping plate two.
[0010] In the above technical solution, when the clamping block is pulled outward, the elastic force of the second spring can generate a pushing force on the stop block, so that the stop block is engaged with the inner end surface of the clamping block, separating the clamping block from the slide plate. This makes it easier to adjust the distance between the second clamping plate and the first clamping plate, eliminating the need for the operator to constantly move the clamping block and providing convenience for the operator's work.
[0011] A further improvement of this utility model is that anti-slip pads are attached to the surfaces of both ends of the skateboard, and each anti-slip pad is tightly attached to the surface of each clamping block.
[0012] By adopting the above technical solution, the friction between the surface of the clamping block and the slide plate can be increased by setting the anti-slip pad, thereby reducing the possibility of the clamping block and the slide plate sliding against each other and improving the stability of the second clamping plate.
[0013] A further improvement of this utility model is that a slider is fixedly installed at the bottom of each clamping block, and each slider is slidably connected to the inner wall of the clamping plate.
[0014] By adopting the above technical solution, the contact area between the clamping block and the two surfaces of the clamping plate can be increased by installing a slider, thereby further ensuring that the clamping block can maintain linear movement.
[0015] A further improvement of the present invention is that: a partition block is attached to the top surface of each limiting block, a spring four is fixedly installed on the top of each partition block, and the top surface of each spring four is fixedly connected to the surface of the clamping plate four.
[0016] In the above technical solution, when the limiting block is pulled outward, the elastic force of the spring four itself can generate a pushing force on the spacer, so that the spacer is engaged with the inner end surface of the limiting block, separating the limiting block from the movable plate, so as to adjust the distance between the clamping plate four and the clamping plate three. This eliminates the need for the operator to constantly move the limiting block, thus providing convenience for the operator's work.
[0017] A further improvement of this utility model is that protective pads are attached to the surfaces of both ends of the movable plate, and each protective pad is tightly attached to the surface of each limiting block.
[0018] By adopting the above technical solution, the friction between the surface of the limiting block and the movable plate can be increased by setting a protective pad, thereby reducing the possibility of mutual sliding between the surface of the limiting block and the movable plate and improving the stability of the clamping plate.
[0019] A further improvement of this utility model is that a guide block is fixedly installed on one side of each limiting block, and each guide block is slidably connected to the inner wall of the clamping plate four.
[0020] By adopting the above technical solution, the contact area between the limiting block and the four surfaces of the clamping plate can be increased by installing the guide block, thereby further ensuring that the limiting block maintains linear movement.
[0021] Due to the adoption of the above technical solution, the technological progress achieved by this utility model compared to the prior art is as follows:
[0022] 1. This utility model provides a water supply pipeline fluidized ice slurry cleaning device. It utilizes a spring and clamping block to press the sliding plate, and by tightly fitting two handwheels to the surface of clamping plate two, it can limit the clamping plate two, ensuring that clamping plate one and clamping plate two can fit against the top and bottom of the outer surface of the water supply pipeline. A spring and limiting block press the movable plate, and by tightly fitting two rotating wheels to the surface of clamping plate two, it can limit the clamping plate two, ensuring that clamping plate four and clamping plate three can fit against both sides of the outer surface of the water supply pipeline. This achieves limiting protection of the outer surface of the water supply pipeline, reducing the possibility of the water supply pipeline rupture due to excessive pressure applied when the ice slurry is injected into the pipeline, thus protecting the water supply pipeline.
[0023] 2. This utility model provides a water supply pipeline fluid ice slurry cleaning device. When the clamping block is pulled outward, the second spring can push the stop block to engage with the inner end surface of the clamping block, separating the clamping block from the sliding plate. This eliminates the need for the operator to constantly move the clamping block, thus facilitating the operator's adjustment of the distance between the second clamping plate and the first clamping plate.
[0024] 3. This utility model provides a water supply pipeline fluid ice slurry cleaning device. When the limiting block is pulled outward, the spring four can push the partition block to engage with the inner end surface of the limiting block, separating the limiting block from the movable plate. This eliminates the need for the operator to constantly move the limiting block, thus facilitating the operator's adjustment of the distance between the clamping plate four and the clamping plate three. Attached Figure Description
[0025] The present invention will be further described below with reference to the accompanying drawings.
[0026] Figure 1 This is a perspective view of the present utility model;
[0027] Figure 2 This is a perspective view of the entire mounting bracket of this utility model;
[0028] Figure 3 This is a partial cross-sectional structural diagram of the clamping plate of this utility model;
[0029] Figure 4 This is a partial cross-sectional structural diagram of the clamping plate of this utility model.
[0030] Figure 5 This is a partial cross-sectional structural diagram of the skateboard of this utility model;
[0031] Figure 6 This is a partial cross-sectional structural diagram of the movable plate of this utility model.
[0032] In the diagram: 1. Mounting frame; 2. Clamping plate one; 3. Clamping plate two; 4. Clamping plate three; 5. Clamping plate four; 6. Telescopic frame; 7. Slide plate; 8. Clamping block; 9. Screw; 10. Handwheel; 11. Adjustment frame; 12. Movable plate; 13. Limiting block; 14. Lead screw; 15. Rotary wheel; 16. Anti-slip pad; 17. Sliding block; 18. Spring one; 19. Stop block; 20. Spring two; 21. Protective pad; 22. Guide block; 23. Spring three; 24. Spacer block; 25. Spring four. Detailed Implementation
[0033] The present invention will be further described in detail below with reference to embodiments:
[0034] Example 1
[0035] like Figure 1 and Figure 2 As shown, this utility model provides a water supply pipeline fluidized ice slurry cleaning device, including a mounting frame 1; a clamping plate 2 is movably mounted on the top of the mounting frame 1 via a telescopic frame 6, a clamping plate 3 is provided on the top of the clamping plate 2, a sliding plate 7 is fixedly mounted on the top of the clamping plate 2, the sliding plate 7 penetrates the interior of the clamping plate 3, a pair of clamping blocks 8 are slidably mounted on the top of the clamping plate 3 via a pair of springs 18, each clamping block 8 is located at both ends of the sliding plate 7, a screw 9 is fixedly mounted on the top of the clamping plate 2 on one side of each sliding plate 7, the screw 9 penetrates the interior of the clamping plate 2, handwheels 10 are fitted to the top and bottom of the clamping plate 2, each handwheel 10 is connected to the screw 9. The outer surface is threaded. The top of the mounting bracket 1 at one end of the clamping plate 2 is movably mounted with the clamping plate 3 4 via the adjusting bracket 11. The other side of the clamping plate 3 4 is provided with the clamping plate 4 5. A movable plate 12 is fixedly mounted on one side of the clamping plate 3 4. The movable plate 12 passes through the interior of the clamping plate 4 5. On the other side of the clamping plate 4 5, a limit block 13 is slidably mounted via a pair of springs 3 23. Each limit block 13 is located at both ends of the movable plate 12. A lead screw 14 is fixedly connected to the other side of the clamping plate 3 4 at the bottom of the movable plate 12. The lead screw 14 passes through the interior of the clamping plate 4 5. Rotary wheels 15 are attached to both sides of the clamping plate 4 5. Each rotary wheel 15 is threadedly connected to the outer surface of the lead screw 14.
[0036] In this embodiment, during the cleaning of the water supply pipe using ice slurry, a certain pressure needs to be applied to the ice slurry when injecting it into the pipe to ensure proper injection. However, if the injection pressure is too high, it will increase the pressure in the pipe, which may cause the pipe to rupture due to excessive pressure, affecting the use of the water supply pipe. In this application, the elasticity of spring 18 can generate tension on clamping block 8, allowing clamping block 8 to squeeze and limit the sliding plate 7. Furthermore, by tightly fitting the two handwheels 10 to the surface of clamping plate 2 3, clamping plate 2 3 can be limited, ensuring that clamping plate 1 2 and clamping plate 2 3 can be engaged with... The top and bottom of the outer surface of the water supply pipe are fitted together, thus providing a certain degree of limit protection for the water supply pipe. The elastic force of the spring 23 itself can generate a pulling force on the limiting block 13, so that the limiting block 13 can squeeze and limit the movable plate 12. Furthermore, by tightly fitting the two rotating wheels 15 with the surface of the clamping plate 3, the clamping plate 3 can be limited. This ensures that the clamping plate 5 and the clamping plate 3 can fit together with both sides of the outer surface of the water supply pipe, thereby further limiting and protecting the water supply pipe. This reduces the possibility of the water supply pipe breaking due to excessive pressure when the ice slurry is injected into the pipe, thus protecting the water supply pipe.
[0037] Example 2
[0038] like Figure 1 , Figure 2 and Figure 5 As shown, based on Embodiment 1, this utility model provides a technical solution: Preferably, a stop 19 is attached to the other side surface of each clamping block 8, a spring 20 is fixedly installed on the other side surface of each stop 19, the other side surface of each spring 20 is fixedly connected to the surface of the clamping plate 3, anti-slip pads 16 are attached to the surfaces at both ends of the slide plate 7, each anti-slip pad 16 is tightly attached to the surface of each clamping block 8, and a slider 17 is fixedly installed at the bottom of each clamping block 8, and each slider 17 is slidably connected to the inner wall of the clamping plate 3.
[0039] In this embodiment, when the clamping block 8 is pulled outward, the elastic force of the second spring 20 can generate a pushing force on the stop block 19, causing the stop block 19 to engage with the inner end surface of the clamping block 8, separating the clamping block 8 from the slide plate 7. This facilitates the adjustment of the distance between the second clamping plate 3 and the first clamping plate 2, eliminating the need for the operator to constantly move the clamping block 8, thus providing convenience for the operator's work. By setting the anti-slip pad 16, the friction between the surface of the clamping block 8 and the slide plate 7 can be increased, thereby reducing the possibility of the clamping block 8 and the slide plate 7 sliding against each other and improving the stability of the second clamping plate 3. By installing the slider 17, the contact area between the surface of the clamping block 8 and the second clamping plate 3 can be increased, further ensuring that the clamping block 8 can maintain linear movement.
[0040] Example 3
[0041] like Figure 1 , Figure 2 and Figure 6 As shown, based on Embodiment 2, this utility model provides a technical solution: Preferably, a partition 24 is attached to the top surface of each limiting block 13, a spring 25 is fixedly installed on the top of each partition 24, the top surface of each spring 25 is fixedly connected to the surface of the clamping plate 5, protective pads 21 are attached to the surfaces of both ends of the movable plate 12, each protective pad 21 is tightly attached to the surface of each limiting block 13, a guide block 22 is fixedly installed on one side of each limiting block 13, and each guide block 22 is slidably connected to the inner wall of the clamping plate 5.
[0042] In this embodiment, when the limiting block 13 is pulled outward, the elastic force of the spring 25 itself can generate a pushing force on the spacer 24, causing the spacer 24 to engage with the inner end surface of the limiting block 13, separating the limiting block 13 from the movable plate 12. This facilitates the adjustment of the distance between the clamping plate 5 and the clamping plate 4, eliminating the need for the operator to constantly move the limiting block 13, thus providing convenience for the operator's work. By setting the protective pad 21, the friction between the surface of the limiting block 13 and the movable plate 12 can be increased, thereby reducing the possibility of mutual sliding between the surface of the limiting block 13 and the movable plate 12 and improving the stability of the clamping plate 5. By installing the guide block 22, the contact area between the surface of the limiting block 13 and the clamping plate 5 can be increased, further ensuring that the limiting block 13 maintains linear movement.
[0043] The working principle of the fluidized ice slurry cleaning device for water supply pipelines is explained in detail below.
[0044] like Figures 1-6As shown, depending on the actual diameter of the water supply pipe, the operator can use the telescopic frame 6 and the adjusting frame 11 to adjust the positions of clamp 1 2 and clamp 3 4 respectively, so that clamp 4 5 and clamp 3 4, as well as clamp 2 3 and clamp 1 2, can be fitted onto the outer surface of the water supply pipe, so that the surfaces of clamp 1 2 and clamp 3 4 are in contact with the outer surface of the water supply pipe. Then, pull the clamp 8 outward, and use spring 2 20 to push the stop 19, so that it is locked onto the inner surface of clamp 8. Then, turn the two handwheels 10 to adjust the distance between clamp 2 3 and clamp 1 2. After the adjustment is completed, the operator can move the stop 19 to the other side, and then use spring 1 18 to pull the clamp 8, so that clamp 8 is tightly in contact with the surface of anti-slip pad 16, and turn the two handwheels 10 to the state of being tightly in contact with the surface of clamp 2 3, thereby adjusting the clamp 1 2. After the second limit is reached, the operator pulls the limit block 13 outwards, and uses the spring 25 to push the partition 24, so that it is locked onto the inner surface of the limit block 13. Then, the two rotating wheels 15 are rotated to adjust the distance between the clamping plate 4 and the clamping plate 3. After adjustment, the operator can push the partition 24 to the top, and then use the spring 3 to pull the limit block 13, so that the limit block 13 is tightly attached to the surface of the protective pad 21. The two rotating wheels 15 are rotated to a state of tight contact with the surface of the clamping plate 4, thereby limiting the clamping plate 4 and achieving the limiting protection of the outer surface of the water supply pipe. The operator can pass the pipe used for the fluidized ice slurry through the guide tube of the clamping plate 2, and then insert it into the water supply pipe. With the help of external pressure equipment, the fluidized ice slurry can be guided to the water supply pipe, thereby realizing the cleaning operation of the water supply pipe.
[0045] The present invention has been described in detail above. However, modifications or improvements can be made to it, which will be obvious to those skilled in the art. Therefore, any modifications or improvements that do not depart from the spirit of the present invention are within the protection scope of the present invention.
Claims
1. A device for cleaning water supply pipeline flow regime ice slurry, comprising a mounting frame (1); characterized in that: The top of mounting frame (1) is movably provided with clamping plate one (2) through telescopic frame (6), the top of clamping plate one (2) is provided with clamping plate two (3), the top of clamping plate one (2) is fixedly provided with sliding plate (7), sliding plate (7) penetrates the inside of clamping plate two (3), the top of clamping plate two (3) is slidably provided with a pair of clamping blocks (8) through a pair of spring one (18), each clamping block (8) is located at the both ends of sliding plate (7) respectively, the top of clamping plate one (2) on the one side of each sliding plate (7) is fixedly provided with screw rod (9), screw rod (9) penetrates the inside of clamping plate two (3), the top and bottom of clamping plate two (3) are provided with hand wheel (10) respectively, each hand wheel (10) is in threaded connection with the outer surface of screw rod (9), the top of mounting frame (1) on the one end of clamping plate one (2) is movably provided with clamping plate three (4) through adjusting frame (11), the other side of clamping plate three (4) is provided with clamping plate four (5), the side of clamping plate three (4) is fixedly provided with movable plate (12), movable plate (12) penetrates the inside of clamping plate four (5), the other side of clamping plate four (5) is slidably provided with limit block (13) through a pair of spring three (23), each limit block (13) is located at the both ends of movable plate (12) respectively, the other side of clamping plate three (4) on the bottom of movable plate (12) is fixedly connected with lead screw (14), lead screw (14) penetrates the inside of clamping plate four (5), both sides of clamping plate four (5) are provided with rotating wheel (15) respectively, each rotating wheel (15) is in threaded connection with the outer surface of lead screw (14).
2. A device for cleaning water pipes from ice slurry flow according to claim 1, characterized in that: The other side surface of each clamping block (8) is provided with stop block (19), the other side surface of each stop block (19) is fixedly provided with spring two (20), and the other side surface of each spring two (20) is fixedly connected with the surface of clamping plate two (3).
3. A device for cleaning water pipes from ice slurry flow according to claim 2, characterized in that: The surfaces of both ends of sliding plate (7) are attached with anti-skid pads (16), and each anti-skid pad (16) is tightly attached to the surface of each clamping block (8).
4. A device for cleaning water pipes from ice slurry flow according to claim 3, characterized in that: The bottom of each clamping block (8) is fixedly provided with sliding block (17), and each sliding block (17) is slidably connected with the inner wall of clamping plate two (3).
5. A device for cleaning water pipes from ice slurry flow according to claim 1, characterized in that: The top surface of each limit block (13) is provided with spacer block (24), the top of each spacer block (24) is fixedly provided with spring four (25), and the top surface of each spring four (25) is fixedly connected with the surface of clamping plate four (5).
6. A device for cleaning water pipes from ice slurry flow according to claim 5, characterized in that: The surfaces of both ends of movable plate (12) are attached with protective pads (21), and each protective pad (21) is tightly attached to the surface of each limit block (13).
7. A device for cleaning water pipes from ice slurry flow according to claim 6, characterized in that: The side of each limit block (13) is fixedly provided with guide block (22), and each guide block (22) is slidably connected with the inner wall of clamping plate four (5). The other side surface of each clamping block (8) is provided with stop block (19), the other side surface of each stop block (19) is fixedly provided with spring two (20), and the other side surface of each spring two (20) is fixedly connected with the surface of clamping plate two (3).