Rust removal cleaning device for metal material processing
By installing a drive motor in the rust removal and cleaning device to drive the gears and racks, the mesh cage can slide, which solves the problem of insufficient contact between the workpiece and the rust remover and improves the rust removal quality.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- FANGCHENGGANG RONGDING METAL PROD CO LTD
- Filing Date
- 2025-05-09
- Publication Date
- 2026-04-21
AI Technical Summary
Existing rust removal and cleaning devices for metal processing lack a shaking structure, which prevents workpieces soaked in rust remover from making complete contact with the rust remover, thus affecting the quality of rust removal.
By setting a drive motor to drive the gear to rotate, the gear meshes with the rack to move left and right, thereby pushing the push rod to continuously push the mesh box, so that it slides on the sliding component, achieving full contact between the workpiece and the rust remover.
It improves the quality of rust removal, ensures that the workpiece and rust remover react fully, and enhances the rust removal effect.
Smart Images

Figure CN224148184U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of metal rust removal, and in particular to a rust removal and cleaning device for metal material processing. Background Technology
[0002] Rust removal and cleaning equipment for metal processing refers to equipment used to remove rust, scale and other contaminants from metal surfaces, aiming to restore the smoothness of metal surfaces and improve their performance.
[0003] Existing rust removal and cleaning devices for metal processing lack a vibration mechanism for the workpiece during use, resulting in the workpiece being unable to fully contact the rust remover when it is soaked in it, thus affecting the quality of rust removal.
[0004] Therefore, to address the problem that existing rust removal and cleaning devices for metal processing lack a vibration mechanism for the workpiece during use, resulting in the workpieces soaked in the rust remover not fully contacting the rust remover and affecting the rust removal quality, a rust removal and cleaning device for metal processing can be designed. By incorporating a drive motor, its output end will drive the gear to rotate during operation. When the gear rotates, it can drive the rack meshing with it to move laterally left and right, thereby driving two push rods to continuously push the screen box, causing the screen box to slide on the upper surface of the sliding component. This vibrates the workpieces inside the screen box, allowing them to fully react with the rust remover and improve the rust removal quality. Utility Model Content
[0005] In order to overcome the problem that existing rust removal and cleaning devices for metal processing do not have a shaking structure for the workpiece during use, resulting in the workpieces that are soaked in rust remover not being able to fully contact the rust remover and affecting the quality of rust removal.
[0006] The technical solution of this utility model is as follows: a rust removal and cleaning device for metal material processing, including a reagent tank; it also includes a sliding component, a mesh box, push rods, a rack, a mounting base, a limiting block, a mounting plate, a drive motor, and a gear. The sliding component is provided on the inner bottom surface of the reagent tank, and the mesh box is placed at the moving end of the sliding component. Push rods are slidably connected to the upper positions of the left and right sides of the reagent tank. A rack is installed at the end of each push rod away from the reagent tank. Mounting bases are provided on the left and right sides of the reagent tank at the rear position of the rack. Mounting plates are installed on the left and right sides of the reagent tank at the front position of the rack. A drive motor is installed on the upper surface of the mounting plate. The output end of the drive motor is connected to a gear, and the gear meshes with the rack.
[0007] Preferably, by setting a drive motor, the output end of the motor will drive the gear to rotate during operation. When the gear rotates, it can drive the rack meshing with it to move laterally left and right, thereby driving the two push rods to continuously push the screen box, so that the screen box slides on the upper surface of the sliding component. This shakes the workpiece inside the screen box, allowing it to fully react with the rust remover and improve the rust removal quality. This solves the problem that existing rust removal and cleaning devices for metal processing do not have a shaking structure for the workpiece, resulting in the workpieces soaked in the rust remover not being able to fully contact the rust remover, thus affecting the rust removal quality.
[0008] Preferably, the sliding assembly includes a base plate, a sliding rod, a sliding seat, and a connecting plate; the base plate is installed at the middle of the bottom of the inner surface of the medicine box, and a sliding rod is provided inside the groove on the upper surface of the base plate. Two symmetrical sliding seats are slidably connected through the outer surfaces of the two sliding rods, and a connecting plate is connected between the two symmetrical sliding seats.
[0009] Preferably, the sliding assembly also includes a positioning seat and a positioning block; the upper surface of the connecting plate is provided with two symmetrical positioning seats, and the bottom surface of the cage is equipped with positioning blocks at the positions corresponding to the positioning seats, with the positioning seats and positioning blocks being compatible.
[0010] Preferably, a limit block is installed on the rear surface of the rack, and a limit groove is formed on the front surface of the mounting base, with the limit block and the limit groove being slidably connected.
[0011] Preferably, fixing posts are installed at the corners of the top surface of the cage, and lifting rings are provided on the top surface of the fixing posts.
[0012] Preferably, a liquid outlet pipe is installed on the lower right side surface of the medicine tank, and a connecting flange is installed at the end of the liquid outlet pipe away from the medicine tank.
[0013] Preferably, casters are provided at the corners of the bottom surface of the medicine box, and the casters are fixed to the medicine box with screws.
[0014] The beneficial effects of this utility model are:
[0015] 1. By setting up a drive motor, the output end of which drives the gear to rotate. When the gear rotates, it drives the rack that meshes with it to move laterally left and right. The movement of the rack drives two push rods to continuously push the screen box, so that the screen box slides on the upper surface of the sliding component. This shakes the workpiece inside the screen box, allowing it to fully react with the rust remover and improve the rust removal quality. This solves the problem that existing rust removal and cleaning devices for metal processing do not have a shaking structure for the workpiece, resulting in the workpieces soaked in the rust remover not being able to fully contact the rust remover and affecting the rust removal quality. Attached Figure Description
[0016] Figure 1 The diagram shown is a three-dimensional structural schematic of the rust removal and cleaning device for metal material processing according to this utility model.
[0017] Figure 2 The diagram shown is a three-dimensional structural schematic of the push rod of the rust removal and cleaning device for metal material processing according to this utility model.
[0018] Figure 3 The diagram shown is a three-dimensional structural diagram of the internal structure of the agent tank of the rust removal and cleaning device for metal material processing of this utility model.
[0019] Figure 4 The diagram shown is a three-dimensional structural schematic of the sliding component of the rust removal and cleaning device for metal material processing according to this utility model.
[0020] Explanation of reference numerals in the attached drawings: 1. Medicine tank; 201. Base plate; 202. Slide rod; 203. Slide seat; 204. Connecting plate; 205. Positioning seat; 206. Positioning block; 3. Wire mesh cage; 4. Push rod; 5. Rack; 6. Mounting seat; 7. Limiting block; 8. Mounting plate; 9. Drive motor; 10. Gear; 11. Limiting groove; 12. Fixed column; 13. Lifting ring; 14. Discharge pipe; 15. Connecting flange; 16. Caster wheel. Detailed Implementation
[0021] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0022] Please see Figures 1-4This utility model provides an embodiment of a rust removal and cleaning device for metal material processing, including a reagent tank 1; it also includes a sliding assembly, a mesh box 3, push rods 4, racks 5, mounting bases 6, limit blocks 7, mounting plates 8, a drive motor 9, and gears 10. The sliding assembly is located on the bottom inner surface of the reagent tank 1, and the mesh box 3 is placed at the moving end of the sliding assembly. Push rods 4 are slidably connected to the upper positions of the left and right sides of the reagent tank 1. Racks 5 are mounted on the ends of the two push rods 4 away from the reagent tank 1. Mounting bases 6 are located on the left and right sides of the reagent tank 1 at the rear positions of the racks 5. Mounting plates 8 are mounted on the left and right sides of the reagent tank 1 at the front positions of the racks 5. A drive motor 9 is mounted on the upper surface of the mounting plate 8. The output end of the motor 9 is connected to a gear 10, which meshes with the rack 5. By setting the motor 9, the output end drives the gear 10 to rotate during operation. When the gear 10 rotates, it can drive the rack 5 to move left and right, thereby driving the two push rods 4 to continuously push the screen box 3, so that the screen box 3 slides on the upper surface of the sliding component. This shakes the workpiece inside the screen box 3, allowing it to fully react with the rust remover and improve the rust removal quality. This solves the problem that existing rust removal and cleaning devices for metal processing do not have a shaking structure for the workpiece, resulting in the workpieces soaked in the rust remover not being able to fully contact the rust remover and affecting the rust removal quality.
[0023] Please see Figures 1-4In this embodiment, the sliding assembly includes a base plate 201, a sliding rod 202, a sliding seat 203, and a connecting plate 204. The base plate 201 is installed at the center of the bottom of the inner surface of the medicine box 1. Sliding rods 202 are provided inside the grooves on the upper surface of the base plate 201. Two symmetrical sliding seats 203 are slidably connected to the outer surfaces of the two sliding rods 202. A connecting plate 204 connects the two symmetrical sliding seats 203. By setting the connecting plate 204, the mesh box 3 is placed above the connecting plate 204. The arrangement of the sliding seats 203 and the sliding rods 202 allows the connecting plate 204 to move laterally, thereby assisting the mesh box 3 in moving. The sliding assembly also includes positioning seats 205 and positioning blocks 206. Two symmetrical positioning seats 205 are provided on the upper surface of the connecting plate 204. Positioning blocks 206 are installed on the bottom surface of the box 3 at positions corresponding to the positioning seats 205. The positioning seats 205 and positioning blocks 206 are compatible. By setting the positioning seats 205 and positioning blocks 206, it is easy to connect the net box 3 with the connecting plate 204, thereby limiting the net box 3 and preventing it from falling off the upper surface of the connecting plate 204 when it is pushed. A limiting block 7 is installed on the rear surface of the rack 5, and a limiting groove 11 is opened on the front surface of the mounting seat 6. The limiting block 7 and the limiting groove 11 are slidably connected. By setting the limiting block 7 and the limiting groove 11, the limiting block 7 can be driven to slide synchronously inside the limiting groove 11 when the rack 5 moves left and right. The limiting groove 11 can limit the sliding direction of the limiting block 7, thereby improving the stability of the rack 5 when it moves.
[0024] Please see Figures 1-4 In this embodiment, fixing posts 12 are installed at the corners of the top surface of the mesh cage 3. The top surface of the fixing posts 12 is provided with lifting rings 13. By setting the fixing posts 12 and lifting rings 13, it is easy for workers to lift the mesh cage 3 with a crane. The lower right side surface of the agent tank 1 is provided with a liquid outlet pipe 14. The end of the liquid outlet pipe 14 away from the agent tank 1 is provided with a connecting flange 15. By setting the liquid outlet pipe 14 and the connecting flange 15, it can be connected to the external filter structure to filter and recover the discharged rust remover. The corners of the bottom surface of the agent tank 1 are provided with casters 16. The casters 16 are fixed to the agent tank 1 with screws. By setting the casters 16, it is easy for workers to move the whole device, improving convenience.
[0025] During operation, the net box 3 is placed on top of the connecting plate 204. The sliding block 203 and sliding rod 202 allow the connecting plate 204 to move laterally, thus assisting the net box 3 in moving. The positioning seat 205 and positioning block 206 facilitate the connection between the net box 3 and the connecting plate 204, thereby limiting the position of the net box 3 and preventing it from falling off the upper surface of the connecting plate 204 when pushed. The limiting block 7 and limiting groove 11 allow the rack 5 to move laterally. When in motion, it can drive the limiting block 7 to slide synchronously inside the limiting groove 11. The limiting groove 11 can restrict the sliding direction of the limiting block 7, thereby improving the stability of the rack 5 when moving. By setting the fixed column 12 and the lifting ring 13, it is easy for the staff to lift the net box 3 with a crane. By setting the liquid outlet pipe 14 and the connecting flange 15, it can be connected to the external filter structure to filter and recover the discharged rust remover. By setting the universal wheel 16, it is easy for the staff to move the whole device, improving convenience.
[0026] Through the above steps, by setting the drive motor 9, its output end will drive the gear 10 to rotate. When the gear 10 rotates, it can drive the rack 5 meshing with it to move left and right. The movement of the rack 5 will drive the two push rods 4 to continuously push the screen box 3, so that the screen box 3 slides on the upper surface of the sliding component, thereby shaking the workpiece inside the screen box 3, so that it can fully react with the rust remover, improve the rust removal quality, and solve the problem that the existing rust removal and cleaning devices for metal processing do not have a shaking structure for the workpiece, resulting in the workpieces piled up and soaked in the rust remover not being able to fully contact the rust remover, thus affecting the rust removal quality.
Claims
1. A rust cleaning device for metal material processing, comprising a chemical agent tank (1); characterized in that: It also includes a sliding assembly, a mesh box (3), a push rod (4), a rack (5), a mounting base (6), a limit block (7), a mounting plate (8), a drive motor (9), and a gear (10). The sliding assembly is provided on the bottom surface of the medicine box (1). The mesh box (3) is placed on the moving end of the sliding assembly. The push rod (4) is inserted and slidably connected to the upper position of the left and right sides of the medicine box (1). The rack (5) is installed on the end of the two push rods (4) away from the medicine box (1). The mounting base (6) is provided on the left and right sides of the medicine box (1) at the rear side of the rack (5). The mounting plate (8) is installed on the left and right sides of the medicine box (1) at the front side of the rack (5). The drive motor (9) is installed on the upper surface of the mounting plate (8). The output end of the drive motor (9) is connected to the gear (10). The gear (10) meshes with the rack (5).
2. The rust cleaning device for metal material processing according to claim 1, characterized by: The sliding assembly includes a base plate (201), a slide rod (202), a slide seat (203), and a connecting plate (204); the base plate (201) is installed at the bottom center of the inner surface of the medicine box (1), and a slide rod (202) is provided inside the groove on the upper surface of the base plate (201). The outer surfaces of the two slide rods (202) are slidably connected to two symmetrical slide seats (203), and a connecting plate (204) is connected between the two symmetrical slide seats (203).
3. The rust cleaning device for metal material processing according to claim 2, characterized by: The sliding assembly also includes a positioning seat (205) and a positioning block (206); the upper surface of the connecting plate (204) is provided with two symmetrical positioning seats (205), and the bottom surface of the cage (3) is equipped with positioning blocks (206) corresponding to the positions of the positioning seats (205), and the positioning seats (205) and positioning blocks (206) are adapted to each other.
4. The rust cleaning device for metal material processing according to claim 1, characterized by: A limiting block (7) is installed on the rear surface of the rack (5), and a limiting groove (11) is opened on the front surface of the mounting base (6). The limiting block (7) and the limiting groove (11) are slidably connected.
5. The rust cleaning device for metal material processing according to claim 1, characterized by: Fixed posts (12) are installed at the corners of the top surface of the cage (3), and hanging rings (13) are provided on the top surface of the fixed posts (12).
6. The rust cleaning device for metal material processing according to claim 1, characterized by: A liquid outlet pipe (14) is installed on the lower right side surface of the medicine tank (1), and a connecting flange (15) is installed at the end of the liquid outlet pipe (14) away from the medicine tank (1).
7. The rust cleaning device for metal material processing according to claim 1, characterized by: The bottom surface of the medicine box (1) is equipped with casters (16) at the corners, and the casters (16) are fixed to the medicine box (1) by screws.