Cleaning device for stainless steel and carbon steel composite pipe machining

By combining the adjustment and cleaning mechanisms, the problems of difficulty in fixing steel pipes of different lengths and uneven cleaning in existing devices are solved, achieving stable fixing and uniform cleaning of stainless steel and carbon steel composite pipes.

CN224114780UActive Publication Date: 2026-04-14CHONGQING YINENG INTELLIGENT MFG IND GRP CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
CHONGQING YINENG INTELLIGENT MFG IND GRP CO LTD
Filing Date
2024-12-24
Publication Date
2026-04-14

AI Technical Summary

Technical Problem

Existing stainless steel-carbon steel composite pipe processing equipment is difficult to adapt to fixing steel pipes of different lengths, and the cleaning is not uniform or clean enough.

Method used

A cleaning device comprising a base, a slide, an adjustment mechanism, a motor, and a cleaning mechanism was designed. The slide spacing is adjusted by the threaded movement of the bidirectional screw and the slide, and the motor drives the screw and the servo motor drives the gear to achieve the fixation and uniform cleaning of steel pipes of different lengths.

Benefits of technology

It achieves stable fixation of steel pipes of different lengths and uniform surface cleaning, thus improving the cleaning effect.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224114780U_ABST
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Abstract

The utility model belongs to the technical field of cleaning devices, and particularly relates to a cleaning device for stainless steel and carbon steel composite pipe machining, which comprises a base, a sliding seat is slidably connected in the base, an adjusting mechanism is arranged on the sliding seat, a top block is mounted in the sliding seat through a bearing, a motor is fixedly mounted on the surface of the sliding seat, and the adjusting mechanism is arranged on the top block. And a rotating shaft of the motor penetrates through the sliding seat and is rotationally connected with the sliding seat, a cleaning mechanism is arranged on the rotating shaft of the motor, and a water inlet pipe is arranged on the cleaning mechanism. The technical effects of the scheme are that the motor drives the screw rod to rotate and the hanger plate to do threaded motion, so that the hanger plate drives the hollow cylinder to move, meanwhile, the servo motor drives the gear to rotate to be matched with the gear ring, so that the hollow cylinder rotates to spray water, and meanwhile, the steel wire brush brushes the surface of the steel pipe; and the device can clean the surface of the steel pipe more uniformly and cleanly.
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Description

Technical Field

[0001] This solution belongs to the field of cleaning equipment, specifically involving a cleaning device for processing stainless steel and carbon steel composite pipes. Background Technology

[0002] Stainless steel and carbon steel composite pipe is a type of pipe made of two materials: stainless steel and carbon steel. Stainless steel has advantages such as corrosion resistance, high temperature resistance, and pressure resistance, while carbon steel has advantages such as high strength and low price. Therefore, combining the two can give full play to their respective advantages and improve the performance and service life of the pipe. During the processing of stainless steel and carbon steel composite pipe, its surface needs to be cleaned. Utility model patent CN209836322U discloses a steel pipe cleaning device, including a cleaning tank and a steel pipe. A support platform is provided in the cleaning tank, and the support platform is Y-shaped with rounded left and right sides at its upper end. The steel pipe is placed on the upper end of the support platform and is inclined. A cleaning device is provided at the upper end of the cleaning tank. The cleaning device includes an L-shaped inlet platform and a horizontally positioned drainage platform, which are integrally set with an internal hollow cavity. Fresh water can be introduced into the drainage platform through the inlet platform and then transported into the cleaning tank. The steel pipe cleaning device described in this utility model has the following advantages: it can clean steel pipes with high efficiency, and the free end of the cleaning device can be connected to the feed port to mix the medicine with water, which can clean the steel pipe to a high degree, with high cleanliness and good effect.

[0003] However, when using this device, it is not convenient to adjust and control the fixing of steel pipes of different lengths. At the same time, the device does not clean the steel pipes evenly and thoroughly. Utility Model Content

[0004] The purpose of this solution is to provide an adjustable cleaning device for solar panel installation, in order to solve the problems that the device is not easy to adjust and control for fixing steel pipes of different lengths, and that the device does not clean the steel pipes evenly and thoroughly.

[0005] To achieve the above objectives, this solution provides a cleaning device for processing stainless steel and carbon steel composite pipes, including a base, a slide block slidably connected inside the base, an adjustment mechanism on the slide block, a top block mounted inside the slide block via a bearing, a motor fixedly mounted on the surface of the slide block, a motor shaft passing through the slide block and rotatably connected to the slide block, a cleaning mechanism on the motor shaft, a water inlet pipe on the cleaning mechanism, and a bidirectional screw rod connected to the slide block via a thread. A knob is fixedly connected to the outer side of the middle of the bidirectional screw rod, and a limit plate is fixedly connected to the upper end of the base, with the limit plate and the knob slidably connected. By rotating the bidirectional screw and slide block to create a threaded motion, the distance between the two slide blocks changes, which in turn changes the distance between the top blocks on the two slide blocks. This change in distance between the top blocks allows for the clamping of steel pipes of different lengths and diameters, facilitating the cleaning of these pipes. The cleaning mechanism includes a screw, which is fixedly connected to the end of the motor shaft. The screw and slide block are movably connected. A hanging plate is threadedly connected to the outside of the screw, and a support plate is fixedly connected to the lower end of the hanging plate. A hollow cylinder is mounted inside the support plate via bearings, and a toothed ring is fixedly connected to the outside of the hollow cylinder. A servo motor is fixedly mounted on the surface of the support plate, and the output shaft of the servo motor passes through the support plate and is rotatably connected to it. A water inlet pipe is slidably connected inside the hollow cylinder, and a wire brush is fixedly connected inside the hollow cylinder. The screw is driven by an electric motor to rotate and the hanging plate makes a spiral motion, which in turn causes the hanging plate to move the hollow cylinder. At the same time, the gear driven by the servo motor rotates and engages with the gear ring, causing the hollow cylinder to rotate and spray water. Meanwhile, the wire brush scrubs the surface of the steel pipe, making the surface of the steel pipe cleaner and more uniform.

[0006] The principle of this solution is as follows: During use, the steel pipe is passed through the hollow cylinder. The double-ended screw is manually rotated, causing the screw and the slide to move in a threaded motion. This changes the distance between the two slides, which in turn changes the distance between the top blocks on the two slides. By changing the distance between the two top blocks, steel pipes of different lengths and diameters can be tightly clamped, making it easier for the device to clean steel pipes of different lengths and diameters. Then, water is introduced into the hollow cylinder through the water inlet pipe. The motor is started, and the motor drives the screw to rotate and the hanging plate to move in a threaded motion. This causes the hanging plate to move the hollow cylinder. Then, the servo motor is started, and the servo motor drives the gear to rotate. The gear rotates the gear ring, which in turn rotates the hollow cylinder to spray water. At the same time, the wire brush scrubs the surface of the steel pipe, making the surface of the steel pipe cleaner and more uniform.

[0007] The technical advantage of this solution is that by rotating the bidirectional screw and the slide block to make a threaded movement, the distance between the two slide blocks changes, which in turn changes the distance between the top blocks on the two slide blocks. By changing the distance between the two top blocks, steel pipes of different lengths and diameters can be pressed tightly, thus making the device convenient for cleaning steel pipes of different lengths and diameters.

[0008] The screw is driven by an electric motor to rotate and the hanging plate makes a spiral motion, which in turn causes the hanging plate to move the hollow cylinder. At the same time, the gear driven by the servo motor rotates and engages with the gear ring, causing the hollow cylinder to rotate and spray water. Meanwhile, the wire brush scrubs the surface of the steel pipe, making the surface of the steel pipe cleaner and more uniform.

[0009] Furthermore, a motor is fixedly connected to the surface of the slide block, and the output end of the motor is fixedly connected to the top block. By setting the motor, the top block is driven to rotate.

[0010] Furthermore, a guide rod is fixedly connected to the upper end of the suspended platform, and the guide rod is slidably connected to the slide block. The guide rod prevents the suspended platform from rotating.

[0011] Furthermore, a gear is fixedly connected to the end of the output shaft of the servo motor, and the gear meshes with a gear ring. By setting the gear, the gear ring is driven to rotate.

[0012] Furthermore, the water inlet pipe and the retaining ring are fixedly connected, and the retaining ring and the hollow cylinder are rotatably connected. By setting the retaining ring, the annular groove on the hollow cylinder is sealed. Attached Figure Description

[0013] Figure 1 This is a perspective view of the overall structure of a cleaning device for processing stainless steel and carbon steel composite pipes according to an embodiment of the present invention.

[0014] Figure 2 This invention provides a cleaning device for processing stainless steel and carbon steel composite pipes. Figure 1 The left view;

[0015] Figure 3 This invention provides a cleaning device for processing stainless steel and carbon steel composite pipes. Figure 2 Enlarged view of point A in the image;

[0016] Figure 4 This invention provides a cleaning device for processing stainless steel and carbon steel composite pipes. Figure 1 A cross-sectional view of the hollow cylinder.

[0017] The following detailed explanation illustrates the specific implementation methods:

[0018] The reference numerals in the accompanying drawings of the instruction manual include: 1. Base; 2. Slide; 3. Adjustment mechanism; 4. Top block; 5. Motor; 6. Electric motor; 7. Cleaning mechanism; 8. Water inlet pipe; 31. Bidirectional screw; 32. Knob; 33. Limiting plate; 71. Screw; 72. Hanging plate; 73. Guide rod; 74. Support plate; 75. Hollow cylinder; 76. Gear ring; 77. Servo motor; 78. Gear; 79. Retaining ring; 710. Wire brush. Detailed Implementation

[0019] The implementation examples are basically as follows Figure 1 , Figure 2 As shown, this embodiment provides a cleaning device for processing stainless steel and carbon steel composite pipes, including a base 1, a slide 2 slidably connected inside the base 1, an adjustment mechanism 3 provided on the slide 2, a top block 4 installed inside the slide 2 via bearings, a motor 5 fixedly connected to the surface of the slide 2, the output end of the motor 5 being fixedly connected to the top block 4, and the top block 4 being driven to rotate by the motor 5, a motor 6 fixedly installed on the surface of the slide 2, the shaft of the motor 6 passing through the slide 2 and rotatably connected to the slide 2, a cleaning mechanism 7 provided on the shaft of the motor 6, and a water inlet pipe 8 provided on the cleaning mechanism 7.

[0020] like Figure 1 , Figure 2 , Figure 3 As shown, the adjustment mechanism 3 includes a bidirectional screw 31, which is connected to the slide 2 by a thread. A knob 32 is fixedly connected to the outer side of the middle part of the bidirectional screw 31. A limit plate 33 is fixedly connected to the upper end of the base 1. The limit plate 33 and the knob 32 are slidably connected. By rotating the bidirectional screw 31 and the slide 2 to make threaded movement, the distance between the two slides 2 changes, which in turn changes the distance between the top blocks 4 on the two slides 2. By changing the distance between the two top blocks 4, steel pipes of different lengths and diameters can be pressed tightly, making it convenient for the device to clean steel pipes of different lengths and diameters.

[0021] like Figure 1 , Figure 2 , Figure 4As shown, the cleaning mechanism 7 includes a screw 71. The screw 71 is fixedly connected to the end of the shaft of the motor 6. The screw 71 is movably connected to the slide block 2. A hanging plate 72 is threadedly connected to the outside of the screw 71. A guide rod 73 is fixedly connected to the upper end of the hanging plate 72. The guide rod 73 is slidably connected to the slide block 2. The guide rod 73 prevents the hanging plate 72 from rotating. A support plate 74 is fixedly connected to the lower end of the hanging plate 72. A hollow cylinder 75 is installed inside the support plate 74 through a bearing. A gear ring 76 is fixedly connected to the outside of the hollow cylinder 75. A servo motor 77 is fixedly installed on the surface of the support plate 74. The output shaft of the servo motor 77 passes through the support plate 74 and is rotatably connected to the support plate 74. A gear is fixedly connected to the end of the output shaft of the servo motor 77. 78. Gear 78 and gear ring 76 mesh. By setting gear 78, the gear ring 76 is driven to rotate. A water inlet pipe 8 is slidably connected inside the hollow cylinder 75. The water inlet pipe 8 and the retaining ring 79 are fixedly connected. The retaining ring 79 and the hollow cylinder 75 are rotatably connected. By setting the retaining ring 79, the annular groove on the hollow cylinder 75 is closed. A wire brush 710 is fixedly connected inside the hollow cylinder 75. The screw 71 is driven to rotate by the motor 6 and the hanging plate 72 makes a threaded movement, which in turn causes the hanging plate 72 to move the hollow cylinder 75. At the same time, the gear 78 is driven to rotate by the servo motor 77 and cooperates with the gear ring 76, which makes the hollow cylinder 75 rotate and spray water. At the same time, the wire brush 710 brushes the surface of the steel pipe, which makes the device clean the surface of the steel pipe more evenly and cleanly.

[0022] The specific implementation process of this utility model is as follows: In use, the steel pipe is passed through the hollow cylinder 75. The double-acting screw 31 is manually rotated, and the double-acting screw 31 and the slide 2 make a threaded movement, which changes the distance between the two slides 2, and thus the distance between the top blocks 4 on the two slides 2. By changing the distance between the two top blocks 4, steel pipes of different lengths and diameters can be pressed together, making it easier for the device to clean steel pipes of different lengths and diameters. Then, water is introduced into the hollow cylinder 75 through the water inlet pipe 8. The motor 6 is started, and the motor 6 drives the screw 71 to rotate and the hanging plate 72 to make a threaded movement, which causes the hanging plate 72 to move the hollow cylinder 75. Then, the servo motor 77 is started, and the servo motor 77 drives the gear 78 to rotate. The gear 78 rotates and drives the gear ring 76 to rotate, which drives the hollow cylinder 75 to rotate and spray water. At the same time, the wire brush 710 brushes the surface of the steel pipe, which makes the surface of the steel pipe cleaner and more uniform.

[0023] By rotating the bidirectional screw 31 and the slide 2 to make threaded movements, the distance between the two slides 2 changes, which in turn changes the distance between the top blocks 4 on the two slides 2. By changing the distance between the two top blocks 4, steel pipes of different lengths and diameters can be pressed tightly, making the device convenient for cleaning steel pipes of different lengths and diameters.

[0024] The screw 71 is driven to rotate by the electric motor 6 and the hanging plate 72 makes a spiral motion, which in turn causes the hanging plate 72 to move the hollow cylinder 75. At the same time, the gear 78 is driven to rotate by the servo motor 77 and cooperates with the gear ring 76, which causes the hollow cylinder 75 to rotate and spray water. Meanwhile, the wire brush 710 brushes the surface of the steel pipe, which makes the device clean the surface of the steel pipe more evenly and cleanly.

[0025] The above descriptions are merely embodiments of this utility model, and common knowledge regarding specific structures and characteristics is not elaborated upon here. It should be noted that those skilled in the art can make various modifications and improvements without departing from the structure of this utility model, and these should also be considered within the scope of protection of this utility model. These modifications will not affect the effectiveness of the implementation of this utility model or the practicality of the patent. The scope of protection claimed in this application shall be determined by the content of its claims, and the specific embodiments described in the specification can be used to interpret the content of the claims.

Claims

1. A cleaning device for processing stainless steel and carbon steel composite pipes, comprising a base, characterized in that: The base has a sliding block internally connected to it, and an adjustment mechanism is provided on the sliding block. A top block is mounted inside the sliding block via a bearing. A motor is fixedly mounted on the surface of the sliding block, and the motor's shaft passes through the sliding block and is rotatably connected to it. A cleaning mechanism with a water inlet pipe is provided on the motor's shaft. The adjustment mechanism includes a bidirectional screw, which is threadedly connected to the sliding block. A knob is fixedly connected to the outer side of the middle of the bidirectional screw. A limit plate is fixedly connected to the upper end of the base, and the limit plate and the knob are slidably connected. Next, the cleaning mechanism includes a screw, the end of the motor shaft is fixedly connected to the screw, the screw and the slide are movably connected, the outside of the screw is connected to a hanging plate by a thread, the lower end of the hanging plate is fixedly connected to a support plate, a hollow cylinder is installed inside the support plate through a bearing, a toothed ring is fixedly connected to the outside of the hollow cylinder, a servo motor is fixedly installed on the surface of the support plate, the output shaft of the servo motor passes through the support plate and is rotatably connected to the support plate, a water inlet pipe is slidably connected inside the hollow cylinder, and a wire brush is fixedly connected inside the hollow cylinder.

2. The cleaning device for processing stainless steel and carbon steel composite pipes according to claim 1, characterized in that: A motor is fixedly connected to the surface of the slide block, and the output end of the motor is fixedly connected to the top block.

3. The cleaning device for processing stainless steel and carbon steel composite pipes according to claim 1, characterized in that: A guide rod is fixedly connected to the upper end of the hanging plate, and the guide rod and the slide are slidably connected.

4. The cleaning device for processing stainless steel and carbon steel composite pipes according to claim 1, characterized in that: A gear is fixedly connected to the end of the output shaft of the servo motor, and the gear meshes with a gear ring.

5. The cleaning device for processing stainless steel and carbon steel composite pipes according to claim 1, characterized in that: The water inlet pipe and the retaining ring are fixedly connected, and the retaining ring and the hollow cylinder are rotatably connected.

Citation Information

Patent Citations

  • Steel pipe cleaning device

    CN209836322U