A cleaning device and cleaning method for producing carbon-coated aluminum foil
By designing a sliding component and adjusting the sliding of the cleaning component in the cleaning device, the switching of the cleaning component between different cleaning chambers is realized, which solves the problem of secondary contamination in the aluminum foil cleaning process, ensures the cleanliness of the cleaning solution, simplifies the structure and improves efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- YUNNAN HAOXIN ALUMINUM FOIL
- Filing Date
- 2024-08-06
- Publication Date
- 2026-04-24
AI Technical Summary
In the existing technology, the aluminum foil becomes secondary contaminated due to the decrease in the cleanliness of the circulating cleaning solution during the aluminum foil cleaning process, which affects the bonding quality of the carbon coating layer.
Design a cleaning device for producing carbon-coated aluminum foil. By adjusting the sliding component and the cleaning component, the cleaning component can be switched between different cleaning chambers. Fresh cleaning solution is used for spraying, avoiding secondary pollution caused by circulating cleaning solution.
It effectively avoids secondary contamination of aluminum foil, ensures the cleanliness of the cleaning solution, simplifies the structure of the cleaning device, reduces costs, and improves cleaning efficiency.
Smart Images

Figure CN118768282B_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of aluminum foil production technology, and in particular relates to a cleaning device and cleaning method for producing carbon-coated aluminum foil. Background Technology
[0002] Carbon-coated aluminum foil involves uniformly and finely coating dispersed nano-conductive graphite and carbon-coated particles onto aluminum foil. It provides excellent static conductivity, collects microcurrents from the active material, significantly reduces the contact resistance between the positive / negative electrode materials and the current collector, and improves adhesion between them. This reduces the amount of binder needed, resulting in a significant improvement in overall battery performance. The thickness of carbon-coated aluminum foil is typically 12-18 micrometers, and the foil surface must be extremely clean, with a dyne value exceeding a certain threshold. Therefore, cleaning the aluminum foil before production is a crucial step.
[0003] In existing technologies, aluminum foil cleaning often involves using liquid alkali with degreasing additives to achieve certain degreasing and oxide removal requirements, followed by cleaning with pure water and finally drying. However, in the production cleaning process, the cleaning water is recycled, meaning that during the continuous cleaning of aluminum foil, the cleaning water is constantly recycled and pumped back to the nozzle to clean the aluminum foil. As the cleaning time increases, the cleanliness of the cleaning solution decreases. Some grease is broken down in the liquid, while some detaches from the aluminum foil surface and floats on the liquid surface. If the cleanliness of the cleaning solution is not up to standard, repeated cleaning can lead to secondary contamination of the aluminum foil. The cleaned aluminum foil often has problems such as oil spots, indentations, stains, and scratches on the foil surface, which affects the quality of bonding with the carbon coating layer. Summary of the Invention
[0004] In view of the technical problems existing in the background art, the present invention provides a cleaning device and cleaning method for producing carbon-coated aluminum foil, so as to reduce the problem of secondary pollution in the aluminum foil cleaning process.
[0005] To achieve the above objectives, the technical solution provided by the present invention is as follows:
[0006] A cleaning device for producing carbon-coated aluminum foil includes a housing, a sliding assembly, and cleaning assemblies. The housing is divided into a first cleaning chamber and a second cleaning chamber by a partition. A sliding groove is formed through the outer wall of the housing, communicating with both the first and second cleaning chambers. The sliding assemblies are slidably disposed within the sliding groove. Two cleaning assemblies are positioned at a fixed distance between adjacent sliding assemblies, and the aluminum foil to be cleaned passes between the two cleaning assemblies. A telescopic mechanism is provided on the outer wall of the housing, and the telescopic mechanism is connected and driven by the sliding assemblies.
[0007] Optionally, the sliding component includes a slider, the bottom end of which is provided with a limiting block, the slider is slidably disposed in a sliding groove, and the limiting block slides close to the inner wall of the box.
[0008] Optionally, a slot 1 is provided through one side of the slider, and the two ends of the two cleaning components are slidably disposed in the slot 1; the outer wall of the box is provided with a second slot and a third slot, which are perpendicular to the first slot, respectively. The second slot is connected to the first cleaning chamber, and the third slot is connected to the second cleaning chamber; the slider is provided with a drive device that is connected and drives the two cleaning components. When the sliding component reaches the position of the second slot or the third slot, the drive device is used to drive the two cleaning components to move away from each other along the second slot or the third slot.
[0009] Optionally, the cleaning assembly includes a spray pipe, with sliding seats provided at both ends of the spray pipe. The sliding seats are slidably disposed in the slot. When the two sliding seats are in contact, the upper and lower ends of the two sliding seats are in close contact with the slot and slide synchronously with the slider.
[0010] Optionally, the driving device includes a lead screw, a lead screw nut, and a drive motor. Mounting plates are respectively provided at the upper and lower ends of the slider. A fixed seat is provided at the end of each mounting plate. A lead screw is provided on two adjacent fixed seats, and one end of the lead screw is connected to the drive motor. A second slot is recessed within the inner wall of the first slot, and the lead screw is located in the second slot. A lead screw nut is fixed at the end of the sliding seat, and the lead screw nut is slidably disposed in the second slot, with the lead screw nut and lead screw engaging. When the two sliding seats slide to the second or third slot position, the drive motor drives and controls the two sliding seats to slide away from each other along the inner wall of the second or third slot.
[0011] Optionally, a water inlet connector is provided on the side wall of one of the sliders. One side of the water inlet connector has a water inlet 1, and two flexible hoses are connected to the water outlet of the water inlet connector. Pipe grooves are provided at the upper and lower ends of the slider, and the pipe grooves are connected to the slot 1. The sliding seat is connected to the spray pipe, and a water inlet 2 is provided on one side of the sliding seat. The flexible hoses are respectively inserted into the pipe grooves and extend into the slot 1 to connect with the water inlet 2.
[0012] Optionally, guide grooves are respectively provided on the inner walls of the upper and lower end boxes where slide groove one and slide groove two intersect, and the guide grooves are through-connected and communicate with slide groove one and slide groove two; guide grooves are respectively provided on the inner walls of the upper and lower end boxes where slide groove one and slide groove three intersect, and the guide grooves are through-connected and communicate with slide groove one and slide groove three; when the two sliding seats slide to the position of slide groove two or slide groove three, the elastic hose located at the upper end of the slider is aligned with the upper guide groove, and the elastic hose located at the lower end of the slider is aligned with the lower guide groove; when the drive motor drives and controls the two sliding seats to slide away from each other along the inner wall of slide groove two or slide groove three, the elastic hose slides and stretches along the guide groove.
[0013] Optionally, the telescopic mechanism is a hydraulic cylinder, and the piston rod of the hydraulic cylinder is connected to one end of the slider.
[0014] Optionally, the outer wall of the housing is provided with a pump body one and a pump body two. The water suction pipe one of the pump body one extends into the first cleaning chamber through a slide groove two, and the water suction pipe two of the pump body two extends into the second cleaning chamber through a slide groove three. The water outlets of the pump body one and the pump body two are respectively connected to a three-way pipe. One end of the three-way pipe is provided with a valve body, and a main water inlet pipe is connected to the valve body. The main water inlet pipe is connected to the water inlet one of the water inlet connector.
[0015] A cleaning method for a cleaning apparatus used in the production of carbon-coated aluminum foil includes the following steps:
[0016] S1, control the sliding component to slide along the first slide to the second slide position, so that the cleaning component slides into the first cleaning chamber, then drive the motor to adjust the distance between the two cleaning components, and then start the pump to realize the aluminum foil spraying operation;
[0017] S2, When the cleaning medium in the first cleaning chamber needs to be replaced, the control sliding component slides along the slide groove one to the slide groove three position, so that the cleaning component slides into the second cleaning chamber. Then the drive motor drives the adjustment of the distance between the two cleaning components, and then the pump body two starts to realize the aluminum foil spraying operation.
[0018] The present invention has the following advantages and beneficial effects:
[0019] This invention designs a cleaning device for producing carbon-coated aluminum foil. By controlling a sliding component to slide along a chute, the cleaning component slides into either a first or second cleaning chamber. A drive motor then adjusts the distance between the two cleaning components, and the pump is activated to spray the aluminum foil. This design eliminates the need to stop the machine to change the cleaning solution during aluminum foil cleaning. The cleaning components can be directly adjusted to reach the corresponding cleaning chamber. This backup design allows for timely replacement of the cleaning solution, avoiding secondary contamination of the aluminum foil caused by using circulating cleaning solution. This fundamentally controls the cleanliness of the cleaning solution, ensuring no secondary contamination occurs when circulating cleaning water cleans the aluminum foil. Therefore, it eliminates the need for oil scraping or degreasing devices after the cleaning process, and avoids the need for scraping devices in subsequent processes to ensure the cleanliness of the aluminum foil.
[0020] Secondly, this structure allows each cleaning component to slide and adjust its position to reach each cleaning chamber for cleaning operations, which further simplifies the structure of the cleaning device and reduces costs. Furthermore, since the cleaning components can be adjusted, when the cleaning fluid is not clean enough, it is necessary to drain the cleaning fluid and clean the inner wall of the cleaning chamber. The adjustable position of the cleaning components will not interfere with or hinder the cleaning work, thus improving cleaning efficiency and reducing cleaning difficulty. Attached Figure Description
[0021] Figure 1 Structural diagram of a cleaning apparatus for producing carbon-coated aluminum foil provided by the present invention;
[0022] Figure 2 for Figure 1 Front view;
[0023] Figure 3 for Figure 1 Top view;
[0024] Figure 4 for Figure 2 A cross-sectional view along the AA direction;
[0025] Figure 5 for Figure 1 The left view;
[0026] Figure 6 for Figure 5 An isometric side sectional view along the BB direction;
[0027] Figure 7 This is a connection structure diagram of the cleaning component and the sliding component provided by the present invention;
[0028] Figure 8 for Figure 7 Front view;
[0029] Figure 9This is a structural diagram of the cleaning assembly provided by the present invention;
[0030] Figure 10 One of the structural diagrams of the sliding component provided by the present invention;
[0031] Figure 11 This is the second structural diagram of the sliding component provided by the present invention;
[0032] Figure 12 for Figure 11 The left view;
[0033] Figure 13 for Figure 12 An isometric side sectional view along the DD direction;
[0034] Figure 14 The structural diagram of the box provided by this invention;
[0035] Figure 15 for Figure 14 Front view;
[0036] Figure 16 for Figure 15 An isometric side sectional view along the CC direction;
[0037] Icons: 1-Box body, 1a-First cleaning chamber, 1b-Second cleaning chamber, 1c-Drying chamber, 11-Aluminum foil channel one, 12-Baffle, 13-Allowing groove, 14-Drying box, 15-Aluminum foil channel two, 16-Aluminum foil channel three, 17-Slide chute one, 18-Slide chute two, 181-Guide chute, 19-Slide chute three, 2-First guide roller, 3-Second guide roller, 4-Cleaning assembly, 41-Spray pipe, 42-Sliding seat, 43-Screw nut, 44-Water inlet two, 45-Spray 5-Hole, 5-Sliding assembly, 51-Slider, 511-Slot 1, 512-Slot 2, 513-Pipe groove, 514-Limit block, 52-Mounting plate, 521-Fixed seat, 53-Drive motor, 54-Screw rod, 55-Water inlet connector, 551-Water inlet 1, 552-Elastic hose, 6-Hydraulic cylinder, 61-Piston rod, 7-Main water inlet pipe, 71-Valve body, 72-Tee pipe, 73-Pump body 1, 74-Pump body 2, 75-Water suction pipe 1, 76-Water suction pipe 2. Detailed Implementation
[0038] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are some embodiments of the present invention, but not all embodiments.
[0039] Therefore, the following detailed description of the embodiments of the invention provided in the accompanying drawings is not intended to limit the scope of the claimed invention, but merely to illustrate selected embodiments of the invention. All other embodiments obtained by those skilled in the art based on the embodiments of the invention without inventive effort are within the scope of protection of the invention.
[0040] Example 1
[0041] like Figures 1-6 As shown, a cleaning device for producing carbon-coated aluminum foil includes a housing 1, a sliding assembly 5, and a cleaning assembly 4, among other components.
[0042] like Figures 1-6 As shown, a partition 12 is provided inside the housing 1, dividing the inner cavity of the housing 1 into a first cleaning chamber 1a and a second cleaning chamber 1b. A clearance groove 13 is provided inside the partition 12. Horizontal sliding grooves 17 are provided through the outer walls on both sides of the housing 1, communicating with the first cleaning chamber 1a and the second cleaning chamber 1b respectively. Sliding components 5 are slidably disposed in the sliding grooves 17. Two cleaning components 4 are arranged at a fixed distance between adjacent sliding components 5. The aluminum foil to be cleaned passes between the two cleaning components 4 to achieve the cleaning operation. A telescopic mechanism is provided on the outer wall of the housing 1, which is connected and driven by the sliding components 5 to drive the sliding components 5 and the cleaning components 4 to move synchronously, allowing the cleaning components 4 to reach the first cleaning chamber 1a or the second cleaning chamber 1b via the clearance grooves 13.
[0043] This invention allows the sliding component 5 to slide along the slide groove 17, enabling the cleaning component 4 to slide into the first cleaning chamber 1a or the second cleaning chamber 1b to perform aluminum foil spraying. This design eliminates the need to stop the machine to change the cleaning fluid during aluminum foil cleaning; the cleaning component 4 can be directly adjusted to reach the corresponding cleaning chamber. This backup design allows for timely replacement of the cleaning fluid, avoiding secondary contamination of the aluminum foil caused by prolonged use of circulating cleaning fluid. It also fundamentally controls the cleanliness of the cleaning fluid, ensuring no secondary contamination occurs when the circulating cleaning water cleans the aluminum foil. This eliminates the need for an oil scraping or degreasing device after the cleaning process, eliminating the need for a scraping device in subsequent processes to ensure the cleanliness of the aluminum foil.
[0044] Secondly, with this structure, the position of a single cleaning component 4 can be adjusted to reach each cleaning chamber to perform the cleaning operation, which can further simplify the structure of the cleaning device and reduce costs. Furthermore, since the position of the cleaning component 4 can be adjusted, when the cleaning fluid is not clean enough, it is necessary to drain the cleaning fluid and clean the inner wall of the cleaning chamber 1. The cleaning component 4 can be adjusted to reach another cleaning chamber without interfering with or hindering the cleaning work, thereby improving the cleaning efficiency and reducing the cleaning difficulty.
[0045] Example 2
[0046] In this embodiment, the sliding component 5 is further designed.
[0047] like Figures 10-13 As shown, the sliding component 5 includes a slider 51, and a limiting block 514 is provided at the bottom end of the slider 51. The slider 51 is slidably disposed in the slide groove 17, and the limiting block 514 slides close to the inner wall of the box 1, thereby realizing the sliding limitation of the slider 51 along the slide groove 17.
[0048] like Figures 1-6 As shown in Figures 10-13, further, a slot 511 is provided through one side of the slider 51, and the two ends of the two cleaning components 4 are slidably disposed in the slot 511. The outer wall of the housing 1 is provided with a second slot 18 and a third slot 19 that are perpendicular to the first slot 17. The second slot 18 and the first slot 17 intersect each other in a cross shape, and the third slot 19 and the first slot 17 intersect each other in a cross shape. The second slot 18 is connected to the first cleaning chamber 1a, and the third slot 19 is connected to the second cleaning chamber 1b. The slider 51 is provided with a drive device that is connected and driven to the two cleaning components 4. When the sliding component 5 reaches the position of the second slot 18 or the third slot 19, the drive device is used to drive the two cleaning components 4 to slide away from each other along the second slot 18 or the third slot 19, thereby adjusting the distance between the two cleaning components 4 to adjust the spray intensity. This design allows for the sliding adjustment of the position of the cleaning component 4, enabling it to reach the first cleaning chamber 1a or the second cleaning chamber 1b for aluminum foil cleaning. It also allows for the adjustment of the interval between the two cleaning components 4 to regulate the spray intensity, thereby enabling a more thorough spray cleaning of the aluminum foil.
[0049] Example 3
[0050] This embodiment further designs the cleaning component 4 based on embodiment 2.
[0051] like Figure 9 As shown, the cleaning component 4 includes a spray pipe 41 with several spray holes 45 evenly distributed on it. Sliding seats 42 are provided at both ends of the spray pipe 41. The sliding seats 42 are slidably disposed in the slot 1 511. When the two sliding seats 42 are in contact, the upper and lower ends of the two sliding seats 42 are in close contact with the slot 1 17 and slide synchronously with the slider 51, so that the slider 51 and the sliding seats 42 can slide synchronously in the slot 1 17 (that is, the height of the two sliding seats 42 is consistent with the height of the slot 1 17), thus realizing position adjustment.
[0052] Example 4
[0053] Based on Example 3, this embodiment further designs a drive device for adjusting the distance between the two cleaning components 4.
[0054] As shown in the figure Figures 1-16 As shown, the driving device includes a lead screw 54, a lead screw nut 43, and a drive motor 53. Mounting plates 52 are respectively provided at the upper and lower ends of the slider 51. The mounting plates 52 are slidably arranged close to the outer wall of the housing 1. A fixed seat 521 is provided at the end of the mounting plate 52. The lead screw 54 is rotatably arranged on two adjacent fixed seats 521. One end of the lead screw 54 is connected to the drive motor 53. The drive motor 53 is fixed on one of the fixed seats 521. The inner wall of slot 1 511 is recessed to form slot 2 512, and the lead screw 54 is located in slot 2 512. The end of the sliding seat 42 is fixed with a lead screw nut 43, which is slidably disposed in slot 2 512 and is connected to the lead screw 54. When the two sliding seats 42 and the slider 51 slide synchronously to the position of slot 2 18 or slot 3 19, the two sides of the slider 51 are located in slot 1 17, and slot 1 511 is directly opposite slot 2 18 or slot 3 19. That is, the sliding seat 42 just slides to the position of slot 2 18 or slot 3 19. Then the drive motor 53 drives and controls the two sliding seats 42 to slide away from each other along the inner wall of slot 2 18 or slot 3 19, thereby realizing the adjustment of the distance between the two spray components. When the sliding seat 42 slides into the second slide groove 18 or the third slide groove 19, the entire sliding component 5 is limited and fixed. Because of the cross-shaped slide groove, the slider 51 is located in the first slide groove 17, and the sliding seat 42 is located in the second slide groove 18 or the third slide groove 19, thus achieving the limitation in the lateral direction.
[0055] Furthermore, a water inlet connector 55 is provided on the side wall of one of the sliders 51. One side of the water inlet connector 55 has a water inlet 551, and two flexible hoses 552 are connected to the water outlet of the water inlet connector 55. Pipe grooves 513 are provided at the upper and lower ends of the slider 51, and the pipe grooves 513 are connected to the slot 511. The sliding seat 42 is connected to the spray pipe 41, and one side of the sliding seat 42 has a water inlet 44. The flexible hoses 552 are respectively inserted into the pipe grooves 513 and extend into the slot 511 to connect with the water inlet 44. This design, using the water inlet connector 55, divides the water into two streams, which are respectively introduced into the two cleaning components 4 to achieve spraying operation. When the two cleaning components 4 are far apart, the flexible hoses 552 can freely extend and retract a certain distance.
[0056] Furthermore, guide grooves 181 are respectively provided on the inner walls of the upper and lower end boxes 1 where slide groove 17 and slide groove 2 18 intersect. Guide grooves 181 are through-connected to slide groove 17 and slide groove 2 18. Guide grooves 181 are preferably triangular in shape, meaning that guide grooves 181 are through-connected to both slide groove 17 and slide groove 2 18. Guide grooves 181 are respectively provided on the inner walls of the upper and lower end boxes 1 where slide groove 17 and slide groove 3 19 intersect. Guide grooves 181 are through-connected to slide groove 17 and slide groove 3 19. Guide grooves 181 are preferably triangular in shape, meaning that guide grooves 181 are through-connected to both slide groove 17 and slide groove 2 18. Furthermore, the guide groove 181 and the pipe groove 513 are connected. When the two sliding seats 42 slide to the position of the second slide groove 18 or the third slide groove 19, the elastic hose 552 located in the pipe groove 513 at the upper end of the slider 51 is set directly opposite the upper guide groove 181, and the elastic hose 552 located in the pipe groove 513 at the lower end of the slider 51 is set directly opposite the lower guide groove 181. When the drive motor 53 drives and controls the two sliding seats 42 to slide away from each other along the inner wall of the second slide groove 18 or the third slide groove 19, the elastic hose 552 slides and stretches along the guide groove 181, thereby realizing the guiding operation of the elastic hose 552 when the distance between the two cleaning components 4 is adjusted.
[0057] In this invention, the telescopic mechanism is preferably a hydraulic cylinder 6. The piston rod 61 of the hydraulic cylinder 6 is connected to one end of the slider 51, and the sliding assembly 5 is driven to move in the slide groove 17 by the hydraulic cylinder 6.
[0058] Furthermore, the outer wall of the housing 1 is equipped with a pump body 1 73 and a pump body 2 74. The pump body 1 73's suction pipe 1 75 extends into the first cleaning chamber 1a via a slide groove 2 18, and the pump body 2 74's suction pipe 2 76 extends into the second cleaning chamber 1b via a slide groove 3 19. The outlets of the pump body 1 73 and the pump body 2 74 are respectively connected to a three-way pipe 72. One end of the three-way pipe 72 is equipped with a valve body 71, and a main water inlet pipe 7 is connected to the valve body 71. The main water inlet pipe 7 is connected to the inlet 551 of the water inlet connector 55. With this design, the valve body 71 can be used to control the corresponding passage, and the pump body 1 73 can be used to draw cleaning fluid from the first cleaning chamber 1a for spraying, or the pump body 2 74 can be used to draw cleaning fluid from the second cleaning chamber 1b for spraying.
[0059] In this invention, a drying chamber 14 is provided at the end of the housing 1. The drying chamber 14 has a drying cavity 1c. One side of the housing 1 has an aluminum foil through groove 11, and the two sides of the drying chamber 14 have aluminum foil through grooves 15 and 16 respectively. A first guide roller 2 is provided in the first cleaning cavity 1a, and a second guide roller 3 is provided in the second cleaning cavity 1b. The aluminum foil passes through the aluminum foil through groove 11, the first guide roller 2, the clearance groove 13, the second guide roller 3, the aluminum foil through groove 15, and the aluminum foil through groove 16 in sequence. The cleaning component 4 slides through the clearance groove 13 to reach the first cleaning cavity 1a or the second cleaning cavity 1b, and the aluminum foil is located between the two cleaning components 4 (i.e., between the two spray pipes 41).
[0060] A cleaning method for a cleaning apparatus used in the production of carbon-coated aluminum foil includes the following steps:
[0061] S1, control the sliding component 5 to slide along the first slide groove 17 to the second slide groove 18, so that the cleaning component 4 slides into the first cleaning chamber 1a. Then drive the motor 53 to adjust the distance between the two cleaning components 4. Then the valve body 71 connects the water inlet main pipe 7 and the pump body 73. The pump body 73 starts to realize the aluminum foil spraying operation.
[0062] S2, when the first cleaning chamber 1a needs to be cleaned and the cleaning medium needs to be replaced, the control sliding component 5 slides along the slide groove 17 to the slide groove 19, so that the cleaning component 4 slides into the second cleaning chamber 1b. Then the drive motor 53 drives the adjustment of the distance between the two cleaning components 4. Then the valve body 71 connects the water inlet main pipe 7 and the pump body 2 74. The pump body 2 74 starts to realize the aluminum foil spraying operation. At the same time, since the cleaning component 4 has left the first cleaning chamber 1a, the cleaning liquid in the first cleaning chamber 1a can be released and the first cleaning chamber 1a can be cleaned. After cleaning, the clean cleaning liquid is replaced for later use.
[0063] The above are merely preferred embodiments of the present invention and are not intended to limit the present invention. Various modifications and variations can be made to the present invention by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the scope of protection of the present invention.
Claims
1. A cleaning apparatus for producing carbon-coated aluminum foil, characterized in that... Includes the housing, sliding components, and cleaning components. The box is equipped with a partition to divide the inner cavity of the box into a first cleaning chamber and a second cleaning chamber; a sliding groove is provided through the outer wall of the box, and the sliding groove is connected to the first cleaning chamber and the second cleaning chamber respectively. The sliding component is slidably disposed in the slide groove one, and two cleaning components are disposed at a fixed distance between two adjacent sliding components, and the aluminum foil to be cleaned passes through the two cleaning components; The outer wall of the housing is provided with a telescopic mechanism, and the telescopic mechanism and the sliding component are connected and driven together. The sliding assembly includes a slider, a limit block is provided at the bottom end of the slider, the slider is slidably disposed in a slide groove, and the limit block slides close to the inner wall of the box; A slot 1 is provided through one side of the slider, and the two ends of the two cleaning components are slidably disposed in the slot 1; the outer wall of the box is provided with a second slot and a third slot, which are perpendicular to the first slot. The second slot is connected to the first cleaning chamber, and the third slot is connected to the second cleaning chamber; the slider is provided with a drive device that is connected to and drives the two cleaning components. When the sliding component reaches the position of the second slot or the third slot, the drive device is used to drive the two cleaning components to move away from each other along the second slot or the third slot.
2. The cleaning apparatus for producing carbon-coated aluminum foil according to claim 1, characterized in that: The cleaning assembly includes a spray pipe, and each end of the spray pipe is provided with a sliding seat. The sliding seats are slidably disposed in the slot. When the two sliding seats are in contact, the upper and lower ends of the two sliding seats are in close contact with the slot and slide synchronously with the slider.
3. The cleaning apparatus for producing carbon-coated aluminum foil according to claim 2, characterized in that: The driving device includes a lead screw, a lead screw nut, and a drive motor. Mounting plates are respectively provided at the upper and lower ends of the slider. A fixed seat is provided at the end of each mounting plate. A lead screw is provided on two adjacent fixed seats, and one end of the lead screw is connected to the drive motor. A second slot is recessed within the inner wall of the first slot, and the lead screw is located in the second slot. A lead screw nut is fixed to the end of the sliding seat, and the lead screw nut is slidably disposed in the second slot, with the lead screw nut and lead screw engaging. When the two sliding seats slide to the second or third slot position, the drive motor drives and controls the two sliding seats to slide away from each other along the inner wall of the second or third slot.
4. The cleaning apparatus for producing carbon-coated aluminum foil according to claim 3, characterized in that: One of the sliders has a water inlet connector on its side wall. One side of the water inlet connector has a water inlet 1. Two flexible hoses are connected to the water outlet of the water inlet connector. The upper and lower ends of the slider are respectively provided with pipe grooves. The pipe grooves are connected to the slot 1. The sliding seat is connected to the spray pipe. One side of the sliding seat is provided with a water inlet 2. The flexible hoses are respectively inserted into the pipe grooves and extend into the slot 1 and connected to the water inlet 2.
5. The cleaning apparatus for producing carbon-coated aluminum foil according to claim 4, characterized in that: The upper and lower end walls of the housings where slide 1 and slide 2 intersect are respectively provided with guide grooves, which are through-connected to slide 1 and slide 2; the upper and lower end walls of the housings where slide 1 and slide 3 intersect are respectively provided with guide grooves, which are through-connected to slide 1 and slide 3; when the two sliding seats slide to the position of slide 2 or slide 3, the elastic hose at the upper end of the slider is aligned with the upper guide groove, and the elastic hose at the lower end of the slider is aligned with the lower guide groove; when the drive motor drives the two sliding seats to slide away from each other along the inner wall of slide 2 or slide 3, the elastic hose slides and stretches along the guide groove.
6. The cleaning apparatus for producing carbon-coated aluminum foil according to claim 5, characterized in that: The telescopic mechanism is a hydraulic cylinder, and the piston rod of the hydraulic cylinder is connected to one end of the slider.
7. The cleaning apparatus for producing carbon-coated aluminum foil according to claim 5, characterized in that: The outer wall of the housing is provided with pump body one and pump body two. The water suction pipe one of pump body one extends into the first cleaning chamber through slide groove two, and the water suction pipe two of pump body two extends into the second cleaning chamber through slide groove three. The water outlets of pump body one and pump body two are respectively connected to a three-way pipe. One end of the three-way pipe is provided with a valve body, and a main water inlet pipe is connected to the valve body. The main water inlet pipe is connected to the water inlet one of the water inlet connector.
8. A cleaning method based on the cleaning apparatus for producing carbon-coated aluminum foil according to any one of claims 1-7, comprising the following steps: S1, control the sliding component to slide along the first slide to the second slide position, so that the cleaning component slides into the first cleaning chamber, then drive the motor to adjust the distance between the two cleaning components, and then start the pump to realize the aluminum foil spraying operation; S2, When the cleaning medium in the first cleaning chamber needs to be replaced, the control sliding component slides along the slide groove one to the slide groove three position, so that the cleaning component slides into the second cleaning chamber. Then the drive motor drives the adjustment of the distance between the two cleaning components, and then the pump body two starts to realize the aluminum foil spraying operation.
Citation Information
Patent Citations
Formed foil cleaning device beneficial to water saving
CN213255911U
Cleaning device for modified fiber antibacterial non-woven fabric
CN216338427U