Mirror surface aluminum continuous cleaning device
Through the design of the continuous cleaning device for mirror aluminum, the combination of the rotating support part and the storage part is used to achieve continuous cleaning of the mirror aluminum, which solves the problem of low cleaning efficiency in the existing technology, improves the cleaning efficiency and quality, and completes double-sided cleaning and rapid drying.
Patent Information
- Application Number
- CN202511089427.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-05
- Publication Date
- 2025-09-23
AI Technical Summary
Existing mirror aluminum cleaning devices are difficult to achieve convenient and effective continuous cleaning, resulting in low cleaning efficiency and poor results.
A continuous cleaning device for mirrored aluminum was designed. It utilized a continuous cleaning mechanism distributed around the inner wall of a rotating support part, combined with a storage part for storing different treatment liquids. By driving the rotating support part to intermittently deflect, continuous impurity removal, oil removal, and oxide layer removal can be achieved. The intermediate cleaning part assisted with blowing and drying, and the collection part was used to achieve immersion and vibration cleaning.
It improves cleaning efficiency, reduces equipment footprint, achieves efficient and high-quality mirror aluminum preparation cleaning, and completes double-sided cleaning and rapid drying.
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Figure CN120679766A_ABST
Abstract
Description
Technical Field
[0001] The invention belongs to the technical field of cleaning equipment, in particular to a continuous cleaning device for mirrored aluminum. Background Art
[0002] The mirror aluminum continuous cleaning device is a device used to clean dirt and oxides on the surface of mirror aluminum. It is usually used in the surface treatment process of aluminum materials. Through multiple cleaning operations, it can remove impurities such as oil, dust, oxides, etc. on the surface of mirror aluminum materials, thereby maintaining the smoothness and quality of the aluminum surface.
[0003] The mirror aluminum cleaning device in the prior art often has multiple cleaning equipment preset during use. The mirror aluminum to be processed is continuously transferred to different cleaning equipment to complete the cleaning treatment by spraying, flushing or immersion. Due to the different cleaning conditions, the mirror aluminum to be cleaned needs to flow back and forth between different equipment to complete the cleaning operation. Moreover, due to the differences in the various cleaning processes, it is difficult to establish a convenient and effective continuous cleaning method. For the multiple cleaning operations of mirror aluminum, the actual cleaning efficiency is low and the use effect is poor. Summary of the Invention
[0004] The object of the present invention is to provide a continuous cleaning device for mirror-surface aluminum to solve the problems raised in the above-mentioned background technology.
[0005] In order to achieve the above-mentioned purpose, the present invention provides the following technical solutions: a continuous cleaning device for mirror aluminum, comprising a support cylinder, an eccentric placement assembly is provided inside the support cylinder, a rotating support portion is rotatably installed inside the support cylinder, a continuous cleaning mechanism is arranged around the inner wall of the rotating support portion, a driving assembly is provided above the support cylinder, the driving assembly drives the continuous cleaning mechanism to rotate outside the placement assembly, an intermediate cleaning portion is arranged around the inner wall of the rotating support portion, an air supply mechanism is provided on one side of the support cylinder, the air supply mechanism is intermittently connected to the intermediate cleaning portion, and a collecting portion is provided at the bottom of the placement assembly. The continuous cleaning mechanism includes a nozzle, a storage part, a baffle 1 and a baffle 2. The nozzle is connected and arranged at the bottom of the storage part. The storage parts are specifically three, and the three storage parts are respectively a de-impurity liquid storage unit, a de-oiling liquid storage unit and a de-oxidation liquid storage unit. The three storage parts are evenly spaced on the inner wall of the rotating support part. The baffle 1, the baffle 2 and the placement component form a cleaning area. The collecting part seals the bottom of the enclosed cleaning area and performs immersion cleaning. At the same time, the collecting part also controls the movement of the aluminum plate in the placement component to perform dynamic cleaning.
[0006] Preferably, the placement assembly includes a lifting control part, a carrier plate and an adaptive arc groove, the lifting control part is an electric push rod 2, the free end of the lifting control part is fixedly connected to the carrier plate through a connecting plate, the lifting control part is fixed to the outside of the support tube through a bottom support plate, and the adaptive arc groove is opened on both sides of the top of the carrier plate.
[0007] Preferably, the rotating support part includes a mounting ring, a support ring and a gear ring, the support ring and the gear ring are fixedly sleeved on the outside of the mounting ring, the mounting ring is rotatably arranged in the mounting ring through the support ring, and the baffle 1 and baffle 2 are fixed on the inner wall of the mounting ring.
[0008] Preferably, the driving assembly includes a driving motor and a gear, the output shaft of the driving motor is fixedly connected to the gear, and the gear is meshingly connected to the gear ring.
[0009] Preferably, the collecting portion includes a storage frame, a top slot and an export slot, the storage frame is fixed to the bottom of the carrier plate, the top slot and the export slot are respectively opened at the top and bottom of the carrier plate, the top slot and the export slot are connected to each other, and the export slot is connected to the storage frame.
[0010] Preferably, the collecting part further includes a movable plate, an electric push rod and a conducting port, the movable plate is movably sleeved inside the storage frame, the electric push rod is fixed in the storage frame, and the movable end of the electric push rod is fixedly connected to the movable plate, the conducting port is opened at the top of the movable plate, the conducting port and the guide groove are spatially offset from each other, and a protrusion is provided on the top of the movable plate, and the protrusion and the guide groove are adapted to each other.
[0011] Preferably, the air supply mechanism includes an air supply pump and a distribution conducting ring. The air supply pump is connected to the conducting hole in the distribution conducting ring through a connecting pipe. The distribution conducting ring is fixed in the support cylinder through an outer connecting rod. The distribution conducting ring is in contact with the cross-section of the rotating support part, and the conducting hole is located on the rotation path of the middle cleaning part.
[0012] Preferably, the intermediate cleaning portion includes an intermediate jet frame, an intermediate cavity and a side port, the intermediate cavity is opened on the inner wall of the mounting ring, the intermediate cavity is opened at the end of the mounting ring, and the side port and the intermediate cavity are connected to each other, the intermediate jet frame is distributed on the inner wall of the mounting ring, and is connected to the intermediate cavity one-to-one, the end face of the intermediate jet frame is provided with a spray hole, and the side port is intermittently connected to the air supply mechanism.
[0013] Preferably, the inner wall of the support cylinder is provided with an inner ring cavity, and the number of the inner ring cavities is two, and the two inner ring cavities correspond one to one with the support ring and the gear ring respectively.
[0014] Preferably, an operating port is provided on the outer side surface of the support cylinder, and the continuous cleaning mechanism on the rotating support portion is replenished with liquid through the operating port.
[0015] The beneficial effects of the present invention are as follows: (1) The present invention utilizes a continuous cleaning mechanism distributed around the inner wall of the rotating support part, cooperates with a storage part for storing different treatment liquids in the continuous cleaning mechanism, and drives the rotating support part to deflect intermittently to change the flushing direction of different liquids, and successively and continuously directs the liquids toward the aluminum plate eccentrically arranged on the inner ring side of the rotating support part, thereby continuously completing impurity removal cleaning, oil removal cleaning and oxide layer removal cleaning. The continuous cleaning mechanism that deflects in sequence and the placement components are used to establish independent cleaning intervals in sequence to complete continuous cleaning without interfering with each other. On the one hand, the continuous cleaning efficiency is improved, and on the other hand, the space occupied by the equipment for multiple cleanings is reduced. The integrated rotating continuous cleaning is used to achieve efficient and high-quality mirror aluminum preparation cleaning.
[0016] (2) The present invention arranges an intermediate cleaning section between the three cleaning units of the continuous cleaning mechanism. When the three independent cleanings are completed, auxiliary purging and cleaning are performed between each cleaning. On the one hand, the surface liquid is cleaned when each cleaning is completed to avoid affecting the cleaning effect of the next cleaning liquid. On the other hand, after each cleaning is completed, the final purging and drying is performed to achieve enhanced cleaning and quick drying after cleaning.
[0017] (3) The present invention utilizes the electric push rod 1 in the collecting part, the movable plate and the raised part on the top of the movable plate to achieve the bottom sealing of the raised cleaning section after the collecting part is moved upward, thereby achieving the accommodation of the cleaning liquid during cleaning, completing the accumulation of the cleaning liquid and immersing the aluminum plate, and then completing the immersion cleaning process. According to the cleaning needs, the cleaning section established above can be utilized to complete the immersion cleaning when the bottom of the cleaning section is closed. At the same time, the aluminum plate is lifted up when the raised part is closed, so that the bottom of the aluminum plate is opened, and the upper and lower surfaces of the aluminum plate are simultaneously immersed in the immersion state, thereby completing simple and fast double-sided cleaning, and further completing double-sided cleaning in the immersion state.
[0018] (4) The present invention further utilizes the collecting part and cooperates with the electric push rod in the collecting part. During cleaning, the movable plate drives the raised part to push the aluminum plate back and forth through reciprocating up and down control, thereby realizing the vibration of the aluminum plate during the cleaning process. When vibrating, the bottom of the aluminum plate opens, and the cleaning liquid sprayed out is combined with the intermittent opening of the bottom and its own vibration during the sputtering stage of the cleaning liquid spraying, thereby completing further cleaning treatment and realizing double-sided enhanced cleaning in the spraying state. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 It is a structural schematic diagram of the present invention; Figure 2It is a cross-sectional schematic diagram of the present invention; Figure 3 It is a cross-sectional schematic diagram of the rotary support portion and the continuous cleaning mechanism of the present invention; Figure 4 is a schematic diagram of a rotating support portion of the present invention; Figure 5 A schematic diagram of the mounting ring of the present invention; Figure 6 This is a schematic diagram of the connection between the placement component and the collection part of the present invention; Figure 7 is a schematic cross-sectional view of the collecting portion of the present invention; Figure 8 Schematic diagram of the gas supply mechanism of the present invention.
[0020] In the figure: 1. Support cylinder; 2. Placement component; 21. Lifting control part; 22. Carrying plate; 23. Adapting arc groove; 3. Rotating support part; 31. Mounting ring; 32. Support ring; 33. Gear ring; 4. Continuous cleaning mechanism; 41. Nozzle; 42. Storage part; 43. Baffle 1; 44. Baffle 2; 5. Drive component; 51. Drive motor; 52. Gear; 6. Collection part; 61. Storage frame; 62. Top groove; 63. Lead-out groove; 64. Movable plate; 65. Electric push rod 1; 66. Conducting port; 7. Air supply mechanism; 71. Air supply pump; 72. Distribution conducting ring; 8. Middle jet frame; 9. Middle cavity; 10. Side port; 11. Operation port; 12. Inner ring cavity. DETAILED DESCRIPTION
[0021] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0022] like Figures 1 to 8As shown, the embodiment of the present invention provides a continuous cleaning device for mirror aluminum, including a support cylinder 1, an eccentric placement component 2 is provided inside the support cylinder 1, a rotating support portion 3 is rotatably installed inside the support cylinder 1, a continuous cleaning mechanism 4 is arranged around the inner wall of the rotating support portion 3, a driving component 5 is provided above the support cylinder 1, the driving component 5 drives the continuous cleaning mechanism 4 to rotate outside the placement component 2, an intermediate cleaning portion is arranged around the inner wall of the rotating support portion 3, an air supply mechanism 7 is provided on one side of the support cylinder 1, the air supply mechanism 7 is intermittently connected to the intermediate cleaning portion, a collecting portion 6 is provided at the bottom of the placement component 2, and a continuous cleaning mechanism 4 is arranged around the inner wall of the rotating support portion 3. The washing mechanism 4 includes a nozzle 41, a storage part 42, a baffle 1 43 and a baffle 2 44. The nozzle 41 is connected and arranged at the bottom of the storage part 42. There are three storage parts 42, and the three storage parts 42 are respectively a de-impurity liquid storage unit, a de-oiling liquid storage unit and a de-oxidation liquid storage unit. The three storage parts 42 are evenly spaced on the inner wall of the rotating support part 3. The baffle 1 43, the baffle 2 44 and the placement component 2 form a cleaning interval. The collecting part 6 seals the bottom of the enclosed cleaning interval and performs immersion cleaning. At the same time, the collecting part 6 also controls the movement of the aluminum plate in the placement component 2 for dynamic cleaning.
[0023] Example 1: When in use, the aluminum plate to be cleaned is placed on the carrier 22 in the placement component 2, the lifting control part 21 is started, the carrier 22 is driven to move up and be located in an eccentric position, the driving component 5 is started, and the meshing gear ring 33 is driven to rotate through the gear 52, so that the rotating support part 3 is deflected inside the support cylinder 1, so that the impurity removal liquid storage unit in the continuous cleaning mechanism 4 is rotated to the top, and the corresponding connected nozzle 41 is directed to the placed aluminum plate, and at this time, the baffle 1 43 and the baffle 2 44 that are rotated together are surrounded on the outside of the carrier 22, and surrounded by the carrier 22 to form a closed impurity removal cleaning interval, and the impurity removal liquid storage unit is started, so that the primary impurity removal cleaning water is sprayed out through the nozzle 41 and toward the aluminum plate for cleaning, so that the surface impurities and dust are separated and discharged along the top groove 62 and the outlet groove 6 in the collecting part 6. 3 flows into the storage frame 61. After completing the primary cleaning, the driving component 5 drives the rotating support part 3 to further deflect, so that the degreasing liquid storage unit rotates to the top, and the degreasing cleaning interval is established again according to the deflected baffle 1 43 and baffle 2 44, and the degreasing liquid unit is started, so that the degreasing liquid is sprayed out through the corresponding nozzle 41, and is sprayed toward the aluminum plate for a second time to remove the oil stains, and the clean water is diverted to the collection part 6. Then the driving component 5 drives the rotating support part 3 to rotate again, so that the deoxidizing liquid unit is deflected to the top, and a cleaning closed interval for removing the oxidation layer is established, and the liquid is sprayed through the nozzle 41 to clean the aluminum plate to complete the deoxidation layer treatment. The cleaning treatment of three different items is completed continuously, and then the lifting control part 21 is started, the carrier 22 is lowered, and the cleaned aluminum plate is taken out to complete the cleaning.
[0024] First, by utilizing the continuous cleaning mechanism 4 distributed around the inner wall of the rotating support part 3, cooperating with the storage part 42 for storing different treatment liquids in the continuous cleaning mechanism 4, by driving the rotating support part 3 to deflect intermittently, the flushing direction of different liquids is changed, and they are successively and continuously directed toward the aluminum plate eccentrically arranged on the inner ring side of the rotating support part 3, thereby continuously completing the impurity removal cleaning, oil removal cleaning and oxide layer removal cleaning, and utilizing the sequentially deflected continuous cleaning mechanism 4 and the placement component 2 to establish independent cleaning intervals in turn to complete continuous cleaning without interfering with each other. On the one hand, the continuous cleaning efficiency is improved, and on the other hand, the space occupied by the equipment for multiple cleanings is reduced. The integrated rotating continuous cleaning is utilized to achieve efficient and high-quality mirror aluminum preparation cleaning.
[0025] Among them, the placement component 2 includes a lifting control part 21, a carrier plate 22 and an adaptive arc groove 23. The lifting control part 21 is an electric push rod 2. The free end of the lifting control part 21 is fixedly connected to the carrier plate 22 through a connecting plate. The lifting control part 21 is fixed to the outside of the support tube 1 through the bottom support plate. The adaptive arc groove 23 is opened on both sides of the top of the carrier plate 22. The rotating support part 3 includes a mounting ring 31, a support ring 32 and a gear ring 33. The support ring 32 and the gear ring 33 are both fixedly sleeved on the outside of the mounting ring 31. The mounting ring 31 is rotatably set in the mounting ring 31 through the support ring 32. The driving component 5 includes a driving motor 51 and a gear 52. The output shaft of the driving motor 51 is fixedly connected to the gear 52. The gear 52 is meshed with the gear ring 33. The baffle 1 43 and the baffle 2 44 are both fixed on the inner wall of the mounting ring 31.
[0026] The placement component 2 is controlled to rise and fall to ensure that there is sufficient pick-up and placement space on the top of the carrier 22 after it moves, which is convenient for transferring and placing aluminum plates. The rotating support part 3 cooperates with the driving component 5 to achieve intermittent deflection.
[0027] Among them, the collecting part 6 includes a storage frame 61, a top groove 62 and an export groove 63. The storage frame 61 is fixed at the bottom of the carrier 22. The top groove 62 and the export groove 63 are respectively opened at the top and bottom of the carrier 22. The top groove 62 and the export groove 63 are connected to each other, and the export groove 63 is connected to the storage frame 61.
[0028] The collecting unit 6 realizes the extraction and collection of the cleaning liquid.
[0029] Among them, the collecting part 6 also includes a movable plate 64, an electric push rod 65 and a conducting port 66. The movable plate 64 is movably sleeved inside the storage frame 61, the electric push rod 65 is fixed in the storage frame 61, and the movable end of the electric push rod 65 is fixedly connected to the movable plate 64. The conducting port 66 is opened at the top of the movable plate 64. The conducting port 66 and the lead-out groove 63 are spatially staggered with each other. A protrusion is provided on the top of the movable plate 64, and the protrusion and the lead-out groove 63 are adapted to each other.
[0030] Through the electric push rod 65, the movable plate 64 and the protrusion, on the one hand, the cleaning area is sealed and immersion cleaning is achieved. On the other hand, the aluminum plate is pushed and the bottom of the aluminum plate is opened. After the pushing stops, double-sided cleaning in an immersed state is achieved, and double-sided cleaning after vibration is completed under reciprocating pushing and reciprocating sealing.
[0031] Example 3: When immersion cleaning is required, as the nozzle 41 sprays liquid toward the area enclosed by baffle 1 43, baffle 2 44 and the carrier plate 22, the electric push rod 1 65 in the collecting part 6 is started to move the movable plate 64 upward, and the protrusion is movably nested in the guide groove 63 and seals the guide groove 63. At the same time, the protrusion lifts the placed aluminum plate, so that the cleaning closed area further forms a relatively sealed immersion area, so that the cleaning liquid forms liquid accumulation in the area, the aluminum plate is immersed in the liquid accumulation, and the immersion cleaning is completed; and in conjunction with the lifted aluminum plate, the aluminum plate completes the cleaning process on the upper and lower sides in the immersed state.
[0032] First, by utilizing the electric push rod 65, the movable plate 64 and the raised portion on the top of the movable plate 64 in the collecting part 6, the bottom sealing of the cleaning interval of the raised portion is achieved after the collecting part 6 is moved upward, so that the cleaning liquid can be contained during cleaning, the cleaning liquid is accumulated and the aluminum plate is immersed, and then the immersion cleaning process is completed. According to the cleaning needs, the cleaning interval established above can be utilized to complete the immersion cleaning when the bottom of the cleaning interval is closed. At the same time, the aluminum plate lifted up when the raised portion is closed can be used to open the bottom of the aluminum plate, cooperate with the immersion state, and complete the immersion cleaning of the upper and lower surfaces of the aluminum plate at the same time, thereby completing simple and fast double-sided cleaning, and further completing double-sided cleaning in the immersion state.
[0033] Example 4: When the aluminum plate is being sprayed and rinsed, the electric push rod 65 in the collecting part 6 is started back and forth to control the up and down vibration of the aluminum plate, and the auxiliary cleaning of the bottom surface of the aluminum plate is completed by coordinating the splashing liquid of the top rinse and the reciprocating vibration of the aluminum plate.
[0034] First, by further utilizing the collecting part 6 and cooperating with the electric push rod 65 in the collecting part 6, during cleaning, the movable plate 64 is reciprocated by the up and down control to drive the raised part to push the aluminum plate, thereby realizing the vibration of the aluminum plate during the cleaning process. When vibrating, the bottom of the aluminum plate is opened, and the cleaning liquid sprayed out is combined with the intermittent opening of the bottom and its own vibration in the stage of spraying and sputtering of the cleaning liquid, so as to complete the further cleaning process and realize the double-sided enhanced cleaning in the spraying state.
[0035] Among them, the air supply mechanism 7 includes an air supply pump 71 and a distribution conducting ring 72. The air supply pump 71 is connected to the conducting hole in the distribution conducting ring 72 through a connecting pipe. The distribution conducting ring 72 is fixed in the support tube 1 through an outer connecting rod. The distribution conducting ring 72 is in contact with the cross-section of the rotating support part 3. The conducting hole is located on the rotation path of the intermediate cleaning part. The intermediate cleaning part includes an intermediate jet frame 8, an intermediate cavity 9 and a side port 10. The intermediate cavity 9 is opened on the inner wall of the mounting ring 31. The intermediate cavity 9 is opened at the end of the mounting ring 31, and the side port 10 is connected to the intermediate cavity 9. The intermediate jet frame 8 is distributed on the inner wall of the mounting ring 31 and is connected one-to-one with the intermediate cavity 9. The end face of the intermediate jet frame 8 is provided with a spray hole, and the side port 10 is intermittently connected to the air supply mechanism 7.
[0036] By utilizing the cooperation of the air supply mechanism 7 and the intermediate cleaning part, an open start-up purge cleaning is interspersed between the three cleanings. On the one hand, the processing between each liquid cleaning is completed to avoid interference. On the other hand, the final drying process is completed after the three cleanings.
[0037] Example 2: When performing continuous cleaning, as the driving component 5 drives the rotating support part 3 to rotate, after completing the impurity removal cleaning and before the oil removal cleaning, the intermediate cleaning part located between the impurity removal liquid unit and the oil removal liquid unit rotates to the upper side, and the air supply mechanism 7 is kept started. The air supply pump 71 passes pressurized air into the distribution conduction ring 72, and is connected to the distribution conduction ring 72 when the side port 10 in the intermediate cleaning part is deflected to the upper side. At this time, the pressurized air is ejected through the nozzle of the intermediate jet frame 8, and is flushed toward the aluminum plate after the impurity removal cleaning, blowing out the surface liquid, and completing the corresponding blowing in the gaps where the continuous cleaning mechanism 4 is deflected in sequence.
[0038] First, by interleaving the intermediate cleaning section between the three cleaning units of the continuous cleaning mechanism 4, auxiliary purging and cleaning are performed between each cleaning when the three independent cleanings are completed. On the one hand, the surface liquid is cleaned when each cleaning is completed to avoid affecting the cleaning effect of the next cleaning liquid. On the other hand, after each cleaning is completed, the final purging and drying is performed to achieve enhanced cleaning and quick drying after cleaning.
[0039] The inner wall of the support tube 1 is provided with an inner ring cavity 12 , and there are two inner ring cavities 12 , which correspond one to one with the support ring 32 and the gear ring 33 , respectively.
[0040] An operating port 11 is provided on the outer side surface of the support tube 1 , and the continuous cleaning mechanism 4 on the rotating support portion 3 is operated to replenish liquid through the operating port 11 .
[0041] The working principle and use process of the present invention are as follows: when in use, the aluminum plate to be cleaned is placed on the carrier 22 in the placement component 2, the lifting control part 21 is started, the carrier 22 is driven to move up and is located in the eccentric position, the driving component 5 is started, and the meshing gear ring 33 is driven to rotate through the gear 52, so that the rotating support part 3 is deflected inside the support cylinder 1, so that the impurity removal liquid storage unit in the continuous cleaning mechanism 4 is rotated to the top, and the corresponding connected nozzle 41 is directed to the placed aluminum plate, and at this time, the baffle 1 43 and the baffle 2 44 that are rotated together are surrounded by the outside of the carrier 22, and are surrounded by the carrier 22 to form a closed impurity removal cleaning interval, the impurity removal liquid storage unit is started, so that the primary impurity removal cleaning water is sprayed out through the nozzle 41 and toward the aluminum plate for cleaning, so that the surface impurities and dust are separated and discharged along the top groove 62 and The dewatering groove 63 flows into the storage frame 61. After the primary cleaning is completed, the driving component 5 drives the rotating support part 3 to further deflect, so that the degreasing liquid storage unit rotates to the top, and the degreasing cleaning interval is established again according to the deflected baffle 1 43 and baffle 2 44, and the degreasing liquid unit is started, so that the degreasing liquid is sprayed through the corresponding nozzle 41 and sprayed toward the aluminum plate for a second time to remove the oil stains, and the clean water is diverted to the collection part 6. Then the driving component 5 drives the rotating support part 3 to rotate again, so that the deoxidizing liquid unit deflects to the top, and establishes a closed cleaning interval for removing the oxidation layer, and sprays the liquid through the nozzle 41 to clean the aluminum plate to complete the deoxidation layer treatment. The cleaning treatment of three different items is completed continuously, and then the lifting control part 21 is started to lower the carrier plate 22, and the cleaned aluminum plate is taken out to complete the cleaning; During continuous cleaning, as the driving assembly 5 drives the rotating support part 3 to rotate, after the impurity removal cleaning is completed and before the oil removal cleaning, the intermediate cleaning part located between the impurity removal liquid unit and the oil removal liquid unit rotates upward, the air supply mechanism 7 is kept started, and the air supply pump 71 passes pressurized air into the distribution conductive ring 72. When the side port 10 in the intermediate cleaning part deflects to the upper side, it is connected with the distribution conductive ring 72. At this time, the pressurized air is ejected through the nozzle of the intermediate jet frame 8 and flushed toward the aluminum plate after the impurity removal cleaning, blowing out the surface liquid, and completing the corresponding blowing in the gaps where the continuous cleaning mechanism 4 is deflected in sequence; When immersion cleaning is required, as the nozzle 41 sprays liquid toward the area enclosed by the baffle 1 43, the baffle 2 44 and the carrier plate 22, the electric push rod 1 65 in the collecting part 6 is activated, so that the movable plate 64 moves upward, and the protrusion is movably nested in the outlet groove 63 and seals the outlet groove 63. At the same time, the protrusion lifts up the placed aluminum plate, so that the cleaning closed area further forms a relatively sealed immersion area, so that the cleaning liquid forms an accumulation in the area, the aluminum plate is immersed in the accumulation, and the immersion cleaning is completed; and with the lifted aluminum plate, the aluminum plate is cleaned from top to bottom in the immersed state; When the aluminum plate is being sprayed and rinsed, the electric push rod 65 in the collecting part 6 is started back and forth to control the up and down vibration of the aluminum plate, and the auxiliary cleaning of the bottom surface of the aluminum plate is completed in coordination with the splashing liquid of the top rinse and the reciprocating vibration of the aluminum plate.
[0042] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.
Claims
1. A continuous cleaning device for mirrored aluminum, comprising a support cylinder (1), characterized in that: The support cylinder (1) is eccentrically provided with a placement component (2), the support cylinder (1) is rotatably provided with a rotation support portion (3), the inner wall of the rotation support portion (3) is surrounded by a continuous cleaning mechanism (4), a driving component (5) is provided above the support cylinder (1), the driving component (5) drives the continuous cleaning mechanism (4) to rotate outside the placement component (2), the inner wall of the rotation support portion (3) is surrounded by an intermediate cleaning portion, an air supply mechanism (7) is provided on one side of the support cylinder (1), the air supply mechanism (7) is intermittently connected to the intermediate cleaning portion, and a collecting portion (6) is provided at the bottom of the placement component (2). The continuous cleaning mechanism (4) includes a nozzle (41), a storage part (42), a baffle 1 (43) and a baffle 2 (44), wherein the nozzle (41) is connected and arranged at the bottom of the storage part (42), the storage parts (42) are specifically three, and the three storage parts (42) are respectively a de-impurity liquid storage unit, a de-oiling liquid storage unit and a de-oxidation liquid storage unit, the three storage parts (42) are distributed on the inner wall of the rotating support part (3) at equal intervals, and the baffle 1 (43), the baffle 2 (44) and the placement component (2) enclose a cleaning interval. The collecting portion (6) seals the bottom of the enclosed cleaning area and performs immersion cleaning. At the same time, the collecting portion (6) also controls the movement of the aluminum plate in the placement component (2) to perform dynamic cleaning.
2. The continuous cleaning device for mirrored aluminum according to claim 1, characterized in that: The placement assembly (2) includes a lifting control part (21), a carrier plate (22) and an adaptive arc groove (23), wherein the lifting control part (21) is a second electric push rod, and the free end of the lifting control part (21) is fixedly connected to the carrier plate (22) via a connecting plate, and the lifting control part (21) is fixed to the outside of the support tube (1) via a bottom support plate, and the adaptive arc groove (23) is opened on both sides of the top of the carrier plate (22).
3. The continuous cleaning device for mirrored aluminum according to claim 2, characterized in that: The rotating support portion (3) comprises a mounting ring (31), a supporting ring (32) and a gear ring (33); the supporting ring (32) and the gear ring (33) are both fixedly sleeved on the outside of the mounting ring (31); the mounting ring (31) is rotatably arranged in the mounting ring (31) via the supporting ring (32); and the baffle plate 1 (43) and the baffle plate 2 (44) are both fixed on the inner wall of the mounting ring (31).
4. The continuous cleaning device for mirrored aluminum according to claim 3, characterized in that: The drive assembly (5) comprises a drive motor (51) and a gear (52), wherein the output shaft of the drive motor (51) is fixedly connected to the gear (52), and the gear (52) is meshedly connected to the gear ring (33).
5. The continuous cleaning device for mirrored aluminum according to claim 4, characterized in that: The collecting portion (6) comprises a storage frame (61), a top slot (62) and a lead-out slot (63); the storage frame (61) is fixed to the bottom of the carrier plate (22); the top slot (62) and the lead-out slot (63) are respectively opened at the top and bottom of the carrier plate (22); the top slot (62) and the lead-out slot (63) are communicated with each other, and the lead-out slot (63) is communicated with the storage frame (61).
6. The continuous cleaning device for mirrored aluminum according to claim 5, characterized in that: The collecting portion (6) further comprises a movable plate (64), an electric push rod (65) and a conducting port (66), wherein the movable plate (64) is movably sleeved inside the storage frame (61), the electric push rod (65) is fixed in the storage frame (61), and the movable end of the electric push rod (65) is fixedly connected to the movable plate (64), and the conducting port (66) is opened at the top of the movable plate (64), and the conducting port (66) and the guide groove (63) are spatially offset from each other, and a protrusion is provided on the top of the movable plate (64), and the protrusion and the guide groove (63) are adapted to each other.
7. The continuous cleaning device for mirrored aluminum according to claim 1, characterized in that: The air supply mechanism (7) comprises an air supply pump (71) and a distribution conducting ring (72). The air supply pump (71) is connected to a conducting hole in the distribution conducting ring (72) through a connecting pipe. The distribution conducting ring (72) is fixed in the support cylinder (1) through an outer connecting rod. The distribution conducting ring (72) abuts against the cross section of the rotating support part (3). The conducting hole is located on the rotation path of the middle cleaning part.
8. The continuous cleaning device for mirrored aluminum according to claim 7, characterized in that: The intermediate cleaning portion comprises an intermediate jet frame (8), an intermediate cavity (9) and a side port (10); the intermediate cavity (9) is circumferentially opened on the inner wall of the mounting ring (31); the intermediate cavity (9) is opened at the end of the mounting ring (31); and the side port (10) and the intermediate cavity (9) are communicated with each other; the intermediate jet frame (8) is circumferentially distributed on the inner wall of the mounting ring (31) and is communicated with the intermediate cavity (9) in a one-to-one correspondence; a spray hole is provided on the end face of the intermediate jet frame (8); and the side port (10) is intermittently connected to the air supply mechanism (7).
9. The continuous cleaning device for mirrored aluminum according to claim 3, characterized in that: The inner wall of the support cylinder (1) is provided with an inner ring cavity (12), and the number of the inner ring cavities (12) is two, and the two inner ring cavities (12) correspond one to one with the support ring (32) and the gear ring (33), respectively.
10. The continuous cleaning device for mirrored aluminum according to claim 1, characterized in that: An operating port (11) is provided on the outer side surface of the support cylinder (1), and a liquid replenishing operation is performed on the continuous cleaning mechanism (4) on the rotating support portion (3) through the operating port (11).