Surface cleaning device for high-quality hot-dip aluminum-zinc plate
By designing automated cleaning and vacuuming components, the automation problem of surface cleaning of hot-dip aluminum zinc plates is solved, the coating accuracy and production efficiency are improved, and the secondary pollution of aluminum zinc plates is avoided.
Patent Information
- Application Number
- CN202422260128.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-14
- Publication Date
- 2025-07-25
- Estimated Expiration
- 2034-09-14
AI Technical Summary
The surface cleaning of existing hot-dip aluminum zinc plates requires manual operation, which affects the accuracy and efficiency of the coating, and is not thoroughly cleaned, resulting in the recurrence of pollution.
Design a high-quality hot-dip aluminum zinc plate surface cleaning device including cleaning components and vacuum cleaners, and use lifting drives and vacuum cleaners to achieve automatic cleaning. Through the cooperation of cleaning rollers and ventilation hoods, dust and dirt can be quickly removed and dirty, avoiding accumulation in the rack.
Automatic cleaning of hot-dip aluminum zinc plates is realized, which improves production efficiency, ensures coating quality, prevents aluminum zinc plates from being contaminated again, and improves cleaning effect.
Smart Images

Figure CN223145488U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of cleaning equipment, in particular to a surface cleaning device for high-quality hot-dip aluminized zinc plates. Background Art
[0002] The hot-dip aluminized zinc plate is a high-performance steel material, which is made of cold-rolled steel plates as the base material and coated with an Al-Zn alloy coating on both sides of the steel plate through a hot-dip technology. This coating combines the physical protection and high durability of aluminum and the electrochemical protection characteristics of zinc, making the hot-dip aluminized zinc plate have a variety of excellent properties. When the existing hot-dip aluminized zinc plates are processed, the staff needs to manually hold a brush board to clean the dust or dirt on the hot-dip aluminized zinc plate. Otherwise, during the subsequent coating processing, the dust or dirt may affect the accuracy, resulting in low coating integrity, increasing the work intensity of the staff, making the existing device have limitations, and reducing the work efficiency. Content of the Utility Model
[0003] The technical problem to be solved by the utility model is: in order to overcome the problem that in the prior art, the staff needs to manually hold a brush board to clean the dust or dirt on the hot-dip aluminized zinc plate, otherwise, during the subsequent coating processing, the dust or dirt may affect the accuracy, resulting in low coating integrity, a surface cleaning device for high-quality hot-dip aluminized zinc plates is provided.
[0004] The technical solution adopted by the utility model to solve its technical problem is: a surface cleaning device for high-quality hot-dip aluminized zinc plates, including a frame, a transmission mechanism and a cleaning mechanism. The transmission mechanism is installed on the frame and is used for transporting aluminized zinc plates. The cleaning mechanism includes a cleaning component and a dust suction component. The cleaning component includes a mounting seat, a lifting driving part, a connecting seat and a cleaning roller. The mounting seat is fixedly connected to the frame, the lifting driving part is fixedly connected to the mounting seat, the output end of the lifting driving part is in transmission connection with the connecting seat, the cleaning roller is rotatably connected to the connecting seat, a connecting cavity is formed on the connecting seat, the cleaning roller is located in the connecting cavity, and the lifting driving part is used to provide power for the cleaning roller to move away from or close to the transmission mechanism;
[0005] The dust suction component includes a ventilation hood, a connecting main pipe, connecting branch pipes and a fan. The ventilation hood is connected to the input end of the connecting main pipe through a corrugated pipe. The fan is fixedly connected to the frame and is located outside the frame. The output end of the connecting main pipe is connected to the input end of the fan. The input end of the connecting branch pipe is connected to the connecting seat, and the input end of the connecting branch pipe is communicated with the connecting cavity. The output end of the connecting branch pipe is connected to the input end of the fan. Through the design of the cleaning component and the dust suction component, on the one hand, the automatic cleaning of aluminized zinc plates is realized, which provides convenience for subsequent coating and improves production efficiency. On the other hand, through the design of the dust suction component, the dirt and dust swept down are quickly cleaned, preventing them from staying in the frame and causing the aluminized zinc plates to be polluted again.
[0006] To solve the problem of how to arrange the lifting driving member, it further includes that the lifting driving member comprises a motor, a lead screw, and a nut seat matching with the lead screw. The motor is fixedly connected to the mounting seat, the output end of the motor is drivingly connected to the input end of the lead screw, the nut seat is threadedly connected to the lead screw, and the nut seat is fixedly connected to the connecting seat.
[0007] To solve the problem of low adsorption efficiency of the ventilation hood, it further includes that the ventilation hood faces the contact part between the cleaning roller and the aluminum-zinc plate.
[0008] To solve the problem of low adsorption efficiency of the ventilation hood, it further includes that the dust suction assembly comprises an adjusting bolt. The adjusting bolt is threadedly connected to the mounting seat, the adjusting bolt abuts against the ventilation hood, and the ventilation hood is located between the adjusting bolt and the cleaning roller.
[0009] It further includes that the output end of the connecting branch pipe is connected to the connecting main pipe.
[0010] To solve the problem that dust or impurities adhere to the cleaning roller and are not easy to remove, affecting subsequent cleaning, it further includes that the dust suction assembly comprises a scraper. The scraper is arranged on the connecting seat and is located in the connecting cavity, and the end of the scraper contacts the cleaning roller.
[0011] It further includes that the scraper is elastically connected to the connecting seat.
[0012] It further includes that the scraper and the connecting seat are connected by a torsion spring.
[0013] The beneficial effects of the present utility model are as follows: A surface cleaning device for high-quality hot-dip aluminum-zinc plates provided by the present utility model, through the design of the cleaning assembly and the dust suction assembly, on the one hand, realizes the automatic cleaning of the aluminum-zinc plate, provides convenience for subsequent coating, and improves production efficiency. On the other hand, through the design of the dust suction assembly, the dirt and dust swept down are quickly cleaned, preventing them from staying in the frame and causing the aluminum-zinc plate to be polluted again;
[0014] Through the design of the ventilation hood on the connecting main pipe and the connecting branch pipe, the dirt in the frame and the dirt on the cleaning roller can be cleaned. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] The present utility model will be further described below in conjunction with the drawings and embodiments.
[0016] Figure 1 is a schematic structural diagram of the present utility model;
[0017] Figure 2 is the present utility model Figure 1 the enlarged structural schematic diagram at A in;
[0018] Figure 3 is the sectional structural schematic diagram at the connecting seat of the present utility model.
[0019] In the figure: 1. Frame, 2. Transmission mechanism, 3. Cleaning mechanism, 31. Sweeping assembly, 311. Mounting seat, 312. Lifting drive, 3121. Motor, 3122. Lead screw, 3123. Nut seat, 313. Connecting seat, 3131. Connecting cavity, 314. Sweeping roller, 32. Dust suction assembly, 321. Ventilation hood, 322. Connecting main pipe, 323. Connecting branch pipe, 324. Fan, 325. Bellows, 326. Adjusting bolt, 327. Scraper, 328. Torsion spring. Specific implementation mode
[0020] Now, the present utility model will be further described in detail with reference to the accompanying drawings. These drawings are all simplified schematic diagrams, only showing the basic structure of the present utility model in a schematic manner, so they only show the components related to the present utility model.
[0021] As Figure 1 is a schematic structural diagram of the present utility model. A surface cleaning device for high-quality hot-dip aluminized zinc plates includes a frame 1, a transmission mechanism 2, and a cleaning mechanism 3. The transmission mechanism 2 is installed on the frame 1, and the transmission mechanism 2 is used to transport aluminized zinc plates. The cleaning mechanism 3 includes a sweeping assembly 31 and a dust suction assembly 32. The sweeping assembly 31 includes a mounting seat 311, a lifting drive 312, a connecting seat 313, and a sweeping roller 314. The mounting seat 311 is fixedly connected to the frame 1, the lifting drive 312 is fixedly connected to the mounting seat 311, the output end of the lifting drive 312 is in transmission connection with the connecting seat 313, the sweeping roller 314 is rotatably connected to the connecting seat 313, a connecting cavity 3131 is provided on the connecting seat 313, and the sweeping roller 314 is located in the connecting cavity 3131. The lifting drive 312 is used to provide power for the sweeping roller 314 to move away from or close to the transmission mechanism 2; the lifting drive 312 includes a motor 3121, a lead screw 3122, and a nut seat 3123 that matches the lead screw 3122. The motor 3121 is fixedly connected to the mounting seat 311, the output end of the motor 3121 is in transmission connection with the input end of the lead screw 3122, the nut seat 3123 is threadedly connected to the lead screw 3122, and the nut seat 3123 is fixedly connected to the connecting seat 313. The lifting drive 312 can control the contact degree between the sweeping roller 314 and the aluminized zinc plate, so as to adapt to aluminized zinc plates of different thicknesses.
[0022] As Figure 2 、 Figure 3As shown in the figure, the dust collection assembly 32 includes a ventilation hood 321, a main connecting pipe 322, connecting branch pipes 323, and a fan 324. The ventilation hood 321 is connected to the input end of the main connecting pipe 322 through a corrugated pipe 325. The fan 324 is fixedly connected to the frame 1 and is located outside the frame 1. The output end of the main connecting pipe 322 is connected to the input end of the fan 324. The input end of the connecting branch pipe 323 is connected to the connecting seat 313, and the input end of the connecting branch pipe 323 communicates with the connecting cavity 3131. The output end of the connecting branch pipe 323 is connected to the input end of the fan 324. Through the design of the cleaning assembly 31 and the dust collection assembly 32, on the one hand, the automatic cleaning of the aluminum-zinc plate is realized, which provides convenience for subsequent coating and improves production efficiency. On the other hand, through the design of the dust collection assembly 32, the dirt and dust swept down are quickly cleaned, preventing them from staying in the frame and causing the aluminum-zinc plate to be contaminated again;
[0023] As Figure 2 、 Figure 3 shown, through the design of the ventilation hood 321 on the main connecting pipe 322 and the connecting branch pipes 323, the dirt inside the frame 1 and the dirt on the cleaning roller can be cleaned.
[0024] The ventilation hood 321 faces the contact area between the cleaning roller 314 and the aluminum-zinc plate, making the suction more precise, enabling the quick and precise cleaning of the debris swept from the aluminum-zinc plate, ensuring the cleanliness inside the frame 1, and preventing the aluminum-zinc plate from being contaminated again.
[0025] As Figure 2 、 Figure 3 shown, the dust collection assembly 32 includes an adjusting bolt 326. The adjusting bolt 326 is threadedly connected to the mounting seat 311. The adjusting bolt 326 abuts against the ventilation hood 321. The ventilation hood 321 is located between the adjusting bolt 326 and the cleaning roller 314 and is used to adjust the angle of the ventilation hood 321, along with the adjustment of the position of the cleaning roller 314, so that the suction direction is more accurate.
[0026] The output end of the connecting branch pipe 323 is connected to the main connecting pipe 322.
[0027] As Figure 2 、 Figure 3 shown, the dust collection assembly 32 includes a scraper 327. The scraper 327 is arranged on the connecting seat 313 and is located inside the connecting cavity 3131. The end of the scraper 327 contacts the cleaning roller 314.
[0028] The scraper 327 is elastically connected to the connecting seat 313. The scraper 327 and the connecting seat 313 are connected through a torsion spring 328, which can more effectively scrape the debris on the cleaning roller 314 so that it can be sucked away through the connecting branch pipe 323, thus ensuring the subsequent cleaning of the cleaning roller 314.
[0029] Inspired by the above-described ideal embodiments of the present utility model, through the above description, relevant staff can completely make various changes and modifications without departing from the technical idea of the present utility model. The technical scope of the present utility model is not limited to the content in the specification, and its technical scope must be determined according to the scope of the claims.
Claims
1. A surface cleaning device for high-quality hot-dip aluminized zinc plates, characterized in that, It includes a frame (1), a transmission mechanism (2) and a cleaning mechanism (3). The transmission mechanism (2) is installed on the frame (1). The transmission mechanism (2) is used for transporting aluminum-zinc plates. The cleaning mechanism (3) includes a cleaning assembly (31) and a dust suction assembly (32). The cleaning assembly (31) includes a mounting seat (311), a lifting driving member (312), a connecting seat (313) and a cleaning roller (314). The mounting seat (311) is fixedly connected to the frame (1). The lifting driving member (312) is fixedly connected to the mounting seat (311). The output end of the lifting driving member (312) is in transmission connection with the connecting seat (313). The cleaning roller (314) is rotatably connected to the connecting seat (313). A connecting cavity (3131) is formed in the connecting seat (313). The cleaning roller (314) is located in the connecting cavity (3131). The lifting driving member (312) is used to provide power for the cleaning roller (314) to move away from or close to the transmission mechanism (2). The dust suction assembly (32) includes a ventilation hood (321), a connecting main pipe (322), connecting branch pipes (323) and a fan (324). The ventilation hood (321) is connected to the input end of the connecting main pipe (322) through a corrugated pipe (325). The fan (324) is fixedly connected to the frame (1). The fan (324) is located outside the frame (1). The output end of the connecting main pipe (322) is connected to the input end of the fan (324). The input end of the connecting branch pipe (323) is connected to the connecting seat (313), and the input end of the connecting branch pipe (323) communicates with the connecting cavity (3131). The output end of the connecting branch pipe (323) is connected to the input end of the fan (324).
2. The surface cleaning device for a high-quality hot-dip aluminized zinc plate according to claim 1, characterized in that: The lifting driving member (312) includes a motor (3121), a lead screw (3122) and a nut seat (3123) matching the lead screw (3122). The motor (3121) is fixedly connected to the mounting seat (311). The output end of the motor (3121) is in transmission connection with the input end of the lead screw (3122). The nut seat (3123) is in threaded connection with the lead screw (3122). The nut seat (3123) is fixedly connected to the connecting seat (313).
3. A surface cleaning device for a high-quality hot-dip aluminized zinc plate according to claim 1, characterized in that: The ventilation hood (321) faces the contact area between the cleaning roller (314) and the aluminum-zinc plate.
4. The surface cleaning device for a high-quality hot-dip aluminized zinc plate according to claim 3, wherein: The dust suction assembly (32) includes an adjusting bolt (326). The adjusting bolt (326) is in threaded connection with the mounting seat (311). The adjusting bolt (326) abuts against the ventilation hood (321). The ventilation hood (321) is located between the adjusting bolt (326) and the cleaning roller (314).
5. The surface cleaning device for a high-quality hot-dip aluminized zinc plate according to claim 1, characterized in that: The output end of the connecting branch pipe (323) is connected to the connecting main pipe (322).
6. The surface cleaning device for a high-quality hot-dip aluminized zinc plate according to claim 1, wherein: The dust suction assembly (32) includes a scraper (327). The scraper (327) is arranged on the connecting seat (313), and the scraper (327) is located in the connecting cavity (3131). The end of the scraper (327) contacts the cleaning roller (314).
7. The surface cleaning device for a high-quality hot-dip aluminized zinc plate according to claim 6, wherein: The scraper (327) and the connecting seat (313) are elastically connected.
8. The surface cleaning device for a high-quality hot-dip aluminized zinc plate according to claim 7, wherein: The scraper (327) and the connecting seat (313) are connected by a torsion spring (328).