Coating head cleaning device
By designing a coating head cleaning device, the automated handling, disassembly, and cleaning of the coating head are realized, solving the problems of time-consuming, labor-intensive, and difficult-to-thorough manual cleaning in the existing technology, and improving the cleaning efficiency and coating quality of the coating head.
Patent Information
- Application Number
- CN202520415742.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-11
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2035-03-11
AI Technical Summary
Existing coating head cleaning methods consume a lot of manpower and time, and it is difficult to guarantee the consistency and thoroughness of cleaning. Especially for coating heads with complex structures and fine gaps, manual cleaning is very likely to leave impurities, affecting the coating effect.
A coating head cleaning device has been designed, including a transport component, a cleaning module, and a disassembly component. By automating the transport, disassembly, and cleaning processes, the device reduces operational difficulty and improves cleaning efficiency and quality.
This technology enables easy disassembly and thorough cleaning of the coating head, reducing labor intensity, improving cleaning efficiency and coating quality, and ensuring the consistency and thoroughness of coating head cleaning.
Smart Images

Figure CN223946019U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to coating equipment technical field especially relates to a coating head cleaning device. BACKGROUND
[0002] In the coating process, the coating head as the core component, its cleaning degree directly influences the coating quality. At present, the common coating head cleaning mode is mainly divided into two parts, split cleaning and non-split cleaning. Non-split cleaning is to use cleaning fluid to clean the inside of the coating head through the internal flow channel, but the non-flow channel part cannot be cleaned, and if the non-flow channel part is not cleaned for a long time, crystallization will be formed, thereby affecting the coating effect. Split cleaning needs to split the internal device of the coating head for cleaning, that is, after the first die head and the second die head of the coating head are separated, manual cleaning is carried out. In the prior art, the coating head is manually split, and since the coating head is very heavy and the first die head and the second die head are tightly and firmly attached after the screws are manually split, it is difficult for the operator to separate the first die head and the second die head. In addition, when manually cleaning, the operator needs to use a brush, solvent and other tools to clean each part of the coating head in detail. However, the wiping area inside the coating head is too large, and this way not only consumes a lot of manpower and time, but also it is difficult to ensure the consistency and completeness of cleaning due to the difference in manual operation. Especially for the coating head with complex structure and fine gap, manual cleaning is easy to leave impurities, affecting the subsequent coating effect.
[0003] Therefore, how to improve the convenience and efficiency of coating head cleaning is a difficult problem to be solved. SUMMARY
[0004] The utility model discloses a coating head cleaning device, not only convenient for split coating head, reduce the operation difficulty, and can improve the cleaning quality and cleaning efficiency, thereby improving the coating quality of coating head.
[0005] The utility model discloses a coating head cleaning device, not only convenient for split coating head, reduce the operation difficulty, and can improve the cleaning quality and cleaning efficiency, thereby improving the coating quality of coating head.
[0006] A coating head cleaning device comprises:
[0007] A carrying assembly is used to move the coating head.
[0008] A cleaning module is used to clean the coating head.
[0009] A split assembly comprises a first connecting block, a second connecting block and a first driving device, the coating head comprises a first die head and a second die head, the first connecting block is connected with the first die head, the second connecting block is connected with the second die head, and the first driving device is used to drive the first connecting block and the second connecting block to move away from or close to each other, so as to drive the first die head and the second die head to move away from or close to each other.
[0010] Preferably, the disassembling assembly further comprises a second driving device, which is connected with the first driving device and capable of driving the first driving device to rotate to drive the coating head to rotate.
[0011] Preferably, the coating head further comprises a gasket, which is arranged between the first die and the second die, and the second driving device is capable of driving the coating head to rotate to a horizontal position when the first die and the second die are disassembled or assembled, the coating lip opening of the coating head is perpendicular to the direction of gravity, so that the gasket is arranged horizontally.
[0012] Preferably, the disassembling assembly further comprises a third driving device, which is used for driving the first connecting block and the second connecting block to move away from or close to the coating head.
[0013] Preferably, the conveying assembly comprises a conveying module and a support, one end of the support is connected with the conveying module, and the other end of the support is connected with the coating head, the conveying module is used for driving the support to lift or translate, and the support drives the coating head to lift or translate.
[0014] Preferably, the conveying assembly further comprises a fourth driving device, the support is connected with the conveying module through the fourth driving device, and the fourth driving device is used for driving the support to move in the length direction of the coating head.
[0015] Preferably, the conveying assembly further comprises a guide assembly, the guide assembly comprises a guide groove and a limiting block, the limiting block is arranged at one end of the guide groove, a guide block is arranged on the conveying module, and the guide block moves along the guide groove to the limiting block.
[0016] Preferably, the conveying module comprises a forklift, and the cleaning module comprises an ultrasonic water tank.
[0017] Preferably, the cleaning module and the disassembling assembly are arranged on the rack.
[0018] Preferably, the number of the disassembling assemblies is two, the two disassembling assemblies are arranged close to two ends of the rack respectively, and the cleaning module is arranged between the two disassembling assemblies.
[0019] Compared with the prior art, the beneficial effects of the utility model at least include:
[0020] The coating head cleaning device of the utility model, since the coating head is heavy, moves the coating head through the carrying assembly, does not need manual carrying, reduces the labor intensity of personnel and improves the carrying efficiency. The first connecting block and the second connecting block are driven to be far away or close to each other through the first driving device, so as to drive the first die head and the second die head to be far away or close to each other, which not only facilitates the splitting of the coating head, reduces the operation difficulty, thereby improves the working efficiency. The split coating head is cleaned through the cleaning module, which not only realizes automatic cleaning, does not need manual cleaning, improves the cleaning efficiency and reduces the working intensity of personnel, but also can fully clean the coating head, ensures that there is no impurity remaining in the coating head, thereby improving the coating quality of the coating head. BRIEF DESCRIPTION OF DRAWINGS
[0021] Figure 1 It is the structure schematic view when the coating head cleaning device of the utility model embodiment sets the cleaning module.
[0022] Figure 2 It is the structure schematic view when the coating head cleaning device of the utility model embodiment does not set the cleaning module.
[0023] Figure 3 It is Figure 1 The partial close-up view of A in the figure.
[0024] Figure 4 It is Figure 2 The partial close-up view of B in the figure.
[0025] Figure 5 It is the structure schematic view of the split assembly and the coating head in the utility model embodiment and the horizontal setting.
[0026] Figure 6 It is Figure 5 The partial close-up view of C in the figure.
[0027] Figure 7 It is the structure schematic view of the split assembly and the coating head in the utility model embodiment and the vertical setting.
[0028] Figure 8 It is Figure 7 The partial close-up view of D in the figure.
[0029] In the figure: 100, coating head cleaning device; 1, carrying assembly; 11, carrying module; 111, guide block; 112, forklift; 12, support; 13, fourth driving device; 131, fourth mounting plate; 132, fourth handle; 133, third driving rod; 134, third sliding block; 135, third guide rail; 2, cleaning module; 21, ultrasonic water tank; 3, splitting assembly; 31, first connecting block; 32, second connecting block; 33, first driving device; 331, first mounting plate; 332, first handle; 333, first driving rod; 334, first sliding block; 335, first guide rail; 336, first locking part; 34, second driving device; 341, second mounting plate; 342, second handle; 343, second driving rod; 344, support plate; 345, second locking part; 35, third driving device; 351, third mounting plate; 352, third handle; 353, second sliding block; 354, second guide rail; 355, third locking part; 4, guide assembly; 41, guide groove; 42, limiting block; 5, rack; 51, support leg; 200, coating head; 210, first die head; 220, second die head; 230, gasket. DETAILED DESCRIPTION
[0030] Example implementations will now be described more fully with reference to the accompanying drawings. Example implementations can be implemented in any
[0031] The words expressing position and direction described in the present application are explained by taking the drawings as an example, but changes can also be made according to needs, and the changes made are all included in the protection scope of the present application.
[0032] Reference Figures 1 to 8 The present application provides a coating head cleaning device 100 for carrying, splitting and cleaning the coating head 200. The coating head cleaning device 100 comprises a carrying assembly 1, a cleaning module 2 and a splitting assembly 3, and can further comprise a guide assembly 4 and a rack 5, and the cleaning module 2, the splitting assembly 3 and the guide assembly 4 can be arranged on the rack 5.
[0033] Specifically, reference Figure 1 , Figure 2 , Figure 3 , Figure 4The carrying assembly 1 is used to move the coating head 200, that is, the carrying assembly 1 can carry the coating head 200 and carry the coating head 200 to a predetermined position. Since the coating head 200 is heavy, the coating head 200 is moved by the carrying assembly 1, manual carrying is not required, the labor intensity of personnel is reduced, the carrying efficiency is improved, and the risk of injury during manual carrying can be avoided. As an example, in actual use, the carrying assembly 1 can transfer the coating head 200 from the coating device to the disassembly assembly 3 for disassembly, then transfer the coating head 200 from the disassembly assembly 3 to the cleaning module 2 for cleaning, after the cleaning module 2 finishes cleaning, the carrying assembly 1 can transfer the coating head 200 to the disassembly assembly 3 for assembly, and finally transfer the coating head 200 from the disassembly assembly 3 to the coating device.
[0034] With reference to Figure 1 , Figure 2 , Figure 3 , Figure 4 The carrying assembly 1 can include a carrying module 11 and a bracket 12, one end of the bracket 12 can be connected with the carrying module 11, and the other end of the bracket 12 can be connected with the coating head 200. The bracket 12 can be connected with the coating head 200 by clamping, screw locking or the like. The carrying module 11 is used to drive the bracket 12 to lift or translate, and the bracket 12 drives the coating head 200 to lift or translate. The carrying module 11 can include a forklift 112, and the bracket 12 can be arranged on the forklift 112. The forklift 112 can drive the bracket 12 to lift in the vertical direction, thereby driving the coating head 200 to lift in the vertical direction. The forklift 112 can also drive the bracket 12 to translate in the horizontal direction, thereby driving the coating head 200 to translate in the horizontal direction.
[0035] In this embodiment, the carrying assembly 1 can further include a fourth driving device 13, and the bracket 12 can be connected with the carrying module 11 through the fourth driving device 13. The fourth driving device 13 is used to drive the bracket 12 to move in the length direction of the coating head 200. That is, the fourth driving device 13 can adjust the position of the coating head 200 in the horizontal direction. Not only can it ensure that the coating head 200 is aligned with the ultrasonic water tank 21, thereby ensuring that the coating head 200 can accurately drop into the ultrasonic water tank 21, but also can ensure that the distance between the two ends of the coating head 200 and the two disassembly assemblies 3 is equal or approximately equal. This facilitates the connection between the coating head 200 and the two disassembly assemblies 3, thereby improving the working efficiency.
[0036] As an example, with reference to Figure 3The fourth driving device 13 can include a fourth mounting plate 131, a fourth handle 132, and a third driving rod 133. The fourth mounting plate 131 can be connected with the carrying module 11, the third driving rod 133 can be connected with the fourth handle 132 and the bracket 12 respectively, the third driving rod 133 can be controlled to drive the bracket 12 to move in the length direction of the coating head 200 through the fourth handle 132, so as to drive the coating head 200 to move in the length direction of the coating head 200, and then adjust the position of the coating head 200 in the horizontal direction.
[0037] The fourth driving device 13 can further include a third sliding block 134 and a third guide rail 135. The third sliding block 134 can be connected with the bracket 12, and the third guide rail 135 can be arranged on the fourth mounting plate 131. The extension direction of the third guide rail 135 is parallel to the extension direction of the third driving rod 133. The bracket 12 can move along the third guide rail 135 with the third sliding block 134, so as to drive the coating head 200 to move along the third guide rail 135. The third sliding block 134 and the third guide rail 135 not only have a guiding effect, but also make the movement between the third sliding block 134 and the third guide rail 135 more smooth, so as to reduce the difficulty of operating the fourth handle 132 and facilitate personnel operation.
[0038] Reference Figure 1 The cleaning module 2 is used for cleaning the coating head 200. As an example, the cleaning module 2 can include an ultrasonic water tank 21. The ultrasonic water tank 21 is used for containing cleaning liquid. The disassembled coating head 200 can be located in the ultrasonic water tank 21, and the ultrasonic water tank 21 can automatically clean the coating head 200. The ultrasonic water tank 21 utilizes the cavitation effect generated by high-frequency sound waves, which can remove dirt from the surface of the coating head 200 in a very short time, can penetrate into tiny pores and gaps, and can clean some parts that are difficult to reach by traditional cleaning methods, so as to achieve a higher cleaning effect. The labor intensity is reduced. By cleaning the disassembled coating head 200 through the cleaning module 2, the ultrasonic cleaning is more time-saving than manual cleaning and traditional cleaning methods. The cleaning process has high automation. Not only can the coating head 200 be automatically cleaned without manual cleaning, but also the cleaning efficiency is improved and the working intensity of personnel is reduced. In addition, the coating head 200 can be fully cleaned to ensure that no impurities are left on the coating head 200, thereby improving the coating quality of the coating head 200.
[0039] Reference Figure 1 , Figure 2 , Figure 6 , Figure 8The split assembly 3 can include a first connecting block 31, a second connecting block 32, and a first driving device 33, the coating head 200 can include a first die head 210 and a second die head 220, the first connecting block 31 can be connected with the first die head 210, the first connecting block 31 can be connected with the first die head 210 by clamping, screw locking, etc., the second connecting block 32 can be connected with the second die head 220, the second connecting block 32 can be connected with the second die head 220 by clamping, screw locking, etc., and the first driving device 33 is used to drive the first connecting block 31 and the second connecting block 32 to move away from or close to each other, so as to drive the first die head 210 and the second die head 220 to move away from or close to each other.
[0040] With reference to Figure 5 、 Figure 6 When the coating head 200 needs to be cleaned, the first driving device 33 is used to drive the first connecting block 31 and the second connecting block 32 to move away from each other, so as to drive the first die head 210 and the second die head 220 to move away from each other, that is, to split the coating head 200, so that when the first die head 210 and the second die head 220 are located in the ultrasonic water tank 21, the inside of the first die head 210 and the second die head 220 is completely soaked in the cleaning liquid, so as to ensure that the inside of the coating head 200 is cleaned, and thus the coating quality of the coating head 200 can be improved. Figure 7 、 Figure 8 When the cleaning is completed, the first driving device 33 is used to drive the first connecting block 31 and the second connecting block 32 to move close to each other, so as to drive the first die head 210 and the second die head 220 to move close to each other, that is, to assemble the coating head 200, so as to improve the assembly efficiency of the coating head 200.
[0041] As an example, with reference to Figure 6 、 Figure 8 The first driving device 33 can include a first mounting plate 331, a first handle 332, and a first driving rod 333, the first connecting block 31 can be fixedly installed on the first mounting plate 331, the first driving rod 333 is connected with the first handle 332 and the second connecting block 32 respectively, the first driving rod 333 is for example a lead screw, the first driving rod 333 can be controlled by the first handle 332 to drive the second connecting block 32 to move in the extension direction of the first driving rod 333, so as to drive the first die head 210 and the second die head 220 to move away from or close to each other. In some embodiments, the first driving rod 333 can also drive the first connecting block 31 to move, or the first driving rod 333 can also drive the first connecting block 31 and the second connecting block 32 to move simultaneously.
[0042] The first driving device 33 can further include a first sliding block 334 and a first guide rail 335. The first sliding block 334 can be connected with the second connecting block 32, and the first guide rail 335 can be arranged on the first mounting plate 331. The extension direction of the first guide rail 335 is parallel to the extension direction of the first driving rod 333. The second connecting block 32 can move along the first guide rail 335 with the first sliding block 334. The first sliding block 334 and the first guide rail 335 not only have a guiding effect, but also move more smoothly between the first sliding block 334 and the first guide rail 335. Therefore, the difficulty of operating the first handle 332 can be reduced, and personnel operation is facilitated.
[0043] The first driving device 33 can further include a first locking portion 336. When the position adjustment of the second connecting block 32 is completed, the first locking portion 336 is used for locking the second connecting block 32, so as to ensure the stability of the position of the second connecting block 32, thereby ensuring the stability of the relative position between the first connecting block 31 and the second connecting block 32. The first locking portion 336 can lock the first mounting plate 331 and the second connecting block 32 with each other.
[0044] As a preferred mode, referring to Figure 1 、 Figure 2 The coating head cleaning device 100 can further include a rack 5. The washing module and the splitting assembly 3 can be arranged on the rack 5. The number of the splitting assembly 3 is preferably two. The two splitting assemblies 3 can be symmetrically arranged. The two splitting assemblies 3 can be arranged near the two ends of the rack 5 respectively. The cleaning module 2 can be arranged between the two splitting assemblies 3, that is, the cleaning module 2 can be arranged on the rack 5 between the two splitting assemblies 3. The two splitting assemblies 3 can be connected with the two ends of the coating head 200 respectively. In this way, the connection between the splitting assembly 3 and the coating head 200 is more stable. Not only can the stability of the coating head 200 during splitting be ensured, but also the falling of the coating head 200 during splitting can be prevented, thereby improving the safety of operation.
[0045] The bottom of the rack 5 is provided with a plurality of supporting legs 51. The plurality of supporting legs 51 are uniformly distributed. The supporting legs 51 not only have a supporting effect, but also the height of the supporting legs 51 can be adjusted, so as to ensure that the whole rack 5 can be in a horizontal state.
[0046] Referring to Figure 4The coating head cleaning device 100 can further comprise a guide assembly 4, which can comprise a guide groove 41 and a limiting block 42. The limiting block 42 can be arranged at one end of the guide groove 41, and the limiting block 42 can be arranged at the end of the guide groove 41 away from the carrying module 11. The carrying module 11 can be provided with a guide block 111, which can move along the guide groove 41 to the limiting block 42. In this embodiment, the guide assembly 4 can be arranged at the bottom of the rack 5. When the carrying module 11 moves towards the rack 5, the guide block 111 can be aligned with the guide groove 41 and move along the guide groove 41 to the limiting block 42. This can ensure that the carrying module 11 moves in the predetermined direction and ensures that the carrying module 11 moves to the predetermined position, thereby improving the positioning accuracy of the coating head 200, and facilitating the connection of the coating head 200 with the splitting assembly 3 or the accurate lowering of the coating head 200 to the ultrasonic water tank 21. The guide block 111 is preferably a rotatable component, for example, a bearing. The guide block 111 and the guide groove 41 cooperate with each other not only to guide, but also the bearing can rotate, which can reduce the friction between the guide block 111 and the guide groove 41, thereby reducing the wear between the guide block 111 and the guide groove 41, and further ensuring the guiding accuracy, while also prolonging the service life of the guide block 111 and the guide groove 41.
[0047] In this application, since the coating head 200 is heavy, the coating head 200 is moved by the carrying assembly 1, without the need for manual carrying, thereby reducing the labor intensity of personnel and improving the carrying efficiency. Since the first die 210 and the second die 220 are tightly and firmly attached, it is difficult for a person to separate the first die 210 and the second die 220. The first connecting block 31 and the second connecting block 32 are driven away from or close to each other by the first driving device 33 to drive the first die 210 and the second die 220 away from or close to each other. This not only facilitates the splitting of the coating head 200, reduces the operation difficulty, and thereby improves the working efficiency. The split coating head 200 is cleaned by the cleaning module 2, which not only realizes automatic cleaning, without the need for manual cleaning by personnel, thereby improving the cleaning efficiency and reducing the working intensity of personnel, but also can fully clean the coating head 200, ensuring that no impurities are left in the coating head 200, thereby improving the coating quality of the coating head 200. During the entire splitting and cleaning process of the coating head 200, the coating head cleaning device 100 greatly reduces the risk caused by the splitting process of the coating head 200, and improves the cleaning efficiency.
[0048] In a specific embodiment, referring to Figure 6 、 Figure 8 The splitting assembly 3 can further comprise a second driving device 34, which is connected with the first driving device 33 and can drive the first driving device 33 to rotate to drive the coating head 200 to rotate, i.e., the second driving device 34 can change the rotation angle of the coating head 200.
[0049] Reference Figure 5 , the coating head 200 further comprises a gasket 230, which is arranged between the first die 210 and the second die 220. As an example, when the carrying assembly 1 moves the coating head 200 to the disassembling assembly 3, the coating lip opening of the coating head 200 is oriented to coincide with the direction of gravity, that is, the coating head 200 is vertically arranged, and at this time, the gasket 230 is also vertically arranged. If the first die 210 and the second die 220 are separated from each other at this time, the gasket 230 will suddenly fall off, and since the gasket 230 is thin and has small structural strength, the gasket 230 will be damaged. Therefore, when the first die 210 and the second die 220 are disassembled or assembled, the second driving device 34 can drive the coating head 200 to rotate to a horizontal position, and the coating lip opening of the coating head 200 is oriented to be perpendicular to the direction of gravity, so that the gasket 230 is arranged horizontally. In this way, when the first die 210 and the second die 220 are separated from each other, the gasket 230 can be prevented from falling off, thereby preventing the gasket 230 from being damaged, and also preventing the gasket 230 from falling off and causing harm to the operator. When the first die 210, the second die 220 and the gasket 230 are assembled, the gasket 230 can also be prevented from falling off, and the assembly is also facilitated, thereby improving the assembly efficiency.
[0050] Reference Figure 7 When the coating head 200 needs to be cleaned, the second driving device 34 drives the coating head 200 to rotate, so that the coating head 200 is vertically arranged. That is, when the coating head 200 is located in the ultrasonic water tank 21, the coating head 200 is vertically arranged, and under the action of gravity, not only is it convenient for the impurities on the coating head 200 to fall off, thereby improving the cleaning efficiency, but also when the coating head is lifted from the ultrasonic water tank 21, it is also convenient for the cleaning liquid to flow out of the coating head 200, thereby accelerating the drying of the coating head 200.
[0051] As an example, reference Figure 6 , Figure 8 , the second driving device 34 can comprise a second mounting plate 341, a second handle 342 and a second driving rod 343, the second driving rod 343 is connected with the second mounting plate 341 through a support plate 344, and the two ends of the second driving rod 343 are connected with the second handle 342 and the first mounting plate 331 respectively. The second handle 342 can control the second driving rod 343 to drive the first mounting plate 331 to rotate, thereby driving the coating head 200 to rotate.
[0052] The second driving device 34 can further comprise a second locking portion 345, which can lock the second driving rod 343 when the coating head 200 is rotated to a predetermined position, thereby preventing the second driving rod 343 from continuing to rotate, thereby ensuring the stability of the position of the coating head 200.
[0053] As a preferred mode, reference is made to Figure 5 、 Figure 7 The split assembly 3 can further comprise a third driving device 35 for driving the first connecting block 31 and the second connecting block 32 away from or close to the coating head 200. In the embodiment, the third driving device 35 can reduce or expand the distance between the two split assemblies 3, so that not only can different sizes of coating heads 200 be compatible, improving the use range of the coating head cleaning device 100, but also facilitating the moving device to move the coating head 200 between the two split assemblies 3, and also facilitating the moving device to move the coating head 200 out of the two split assemblies 3. As an example, when the moving assembly 1 moves the coating head 200 between the two split assemblies 3, the distance between the two split assemblies 3 can be greater than the length of the coating head 200, and then the first connecting block 31 and the second connecting block 32 are driven by the third driving device 35 to be close to the coating head 200, so as to facilitate the connection of the first connecting block 31 and the second connecting block 32 with the coating head 200. In this way, the precision of the operation of the moving assembly 1 can be reduced, the operation difficulty can be reduced, and the scratching between the coating head 200 and the moving assembly 1 can be prevented.
[0054] As an example, reference is made to Figure 6 、 Figure 8 The third driving device 35 can comprise a third mounting plate 351, a third handle 352, a second sliding block 353 and a second guide rail 354. The third handle 352 can be connected with the second driving device 34, that is, the third handle 352 can be connected with the second mounting plate 341, the second guide rail 354 can be provided on the third mounting plate 351, and the second sliding block 353 can be connected with the second driving device 34, that is, the second sliding block 353 can be connected with the second mounting plate 341. The second driving device 34 can be driven to move along the second guide rail 354 by pushing and pulling the third handle 352, and the first connecting block 31 and the second connecting block 32 can move along with the second mounting plate 341 along the second guide rail 354. That is, the third driving device 35 can drive the first driving device 33 and the second driving device 34 to move simultaneously. In some embodiments, the third driving device 35 can also be provided on the second driving device 34, that is, the third driving device 35 is provided between the first driving device 33 and the second driving device 34, the third driving device 35 drives the first driving device 33 to move, and the second driving device 34 drives the third driving device 35 and the first driving device 33 to rotate simultaneously. The second sliding block 353 and the second guide rail 354 not only have a guiding effect, but also move more smoothly between the second sliding block 353 and the second guide rail 354, which can reduce the difficulty of operating the third handle 352 and facilitate personnel operation.
[0055] The third driving device 35 can further comprise a third locking portion 355, which can lock the second driving device 34 to prevent the second driving device 34 from moving along the second guide rail 354 when the distance adjustment between the two split assemblies 3 is completed.
[0056] Although the embodiments of the utility model have been shown and described above, it can be understood that the above-mentioned embodiments are exemplary and cannot be understood as limiting the utility model, and the ordinary skilled in the art can change, modify, replace and transform the above-mentioned embodiments within the scope of the utility model without departing from the principles and purposes of the utility model, and all these changes should belong to the protection scope of the utility model claim.
Claims
1. A head coating cleaning device, characterized by, The application relates to a coating head disassembling and cleaning device. The device comprises: a carrying assembly for moving the coating head; a cleaning module for cleaning the coating head; 2. The bell applicator cleaning apparatus of claim 1, wherein, a disassembling assembly, which comprises a first connecting block, a second connecting block and a first driving device, the coating head comprises a first die and a second die, the first connecting block is connected with the first die, the second connecting block is connected with the second die, and the first driving device is used for driving the first connecting block and the second connecting block to move away from or close to each other, so as to drive the first die and the second die to move away from or close to each other.
3. The bell applicator cleaning apparatus of claim 2, wherein, The disassembling assembly further comprises a second driving device, which is connected with the first driving device and can drive the first driving device to rotate, so as to drive the coating head to rotate.
4. The bell applicator cleaning apparatus of claim 1, wherein, The coating head further comprises a gasket, which is arranged between the first die and the second die, when the first die and the second die are disassembled or assembled, the second driving device can drive the coating head to rotate to a horizontal position, the coating lip opening of the coating head is perpendicular to the direction of gravity, so that the gasket is arranged horizontally.
5. The bell applicator cleaning apparatus of claim 1, wherein, The disassembling assembly further comprises a third driving device, which is used for driving the first connecting block and the second connecting block to move away from or close to the coating head.
6. The bell applicator cleaning apparatus of claim 5, wherein, The carrying assembly comprises a carrying module and a support, one end of the support is connected with the carrying module, and the other end of the support is connected with the coating head, the carrying module is used for driving the support to lift or translate, and the support drives the coating head to lift or translate.
7. The bell applicator cleaning apparatus of claim 5, wherein, The carrying assembly further comprises a fourth driving device, the support is connected with the carrying module through the fourth driving device, and the fourth driving device is used for driving the support to move in the length direction of the coating head.
8. The bell applicator cleaning apparatus of claim 5, wherein, The device further comprises a guide assembly, which comprises a guide groove and a limiting block, the limiting block is arranged at one end of the guide groove, a guide block is arranged on the carrying module, and the guide block moves along the guide groove to the limiting block.
9. The bell applicator cleaning apparatus of claim 1, wherein, The carrying module comprises a forklift, and the cleaning module comprises an ultrasonic water tank.
10. The coating head washing apparatus according to claim 9, wherein The device further comprises a rack, and the cleaning module and the disassembling assembly are arranged on the rack. The number of the disassembling assemblies is two, and the two disassembling assemblies are arranged close to two ends of the rack respectively, and the cleaning module is arranged between the two disassembling assemblies.