Electrolytic capacitor cleaning and drying equipment

By designing a multi-angle water spray and synchronously moving water removal brush structure, combined with ultrasonic cleaning and a curtain structure, the problem of limited cleaning area in electrolytic capacitor cleaning and drying equipment is solved, efficient cleaning and energy-saving drying are achieved, and processing efficiency is improved.

CN120644402APending Publication Date: 2025-09-16NANTONG TONGRONG ELECTRONIC CO LTD
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Patent Information

Application Number
CN202511098495.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-08-06
Publication Date
2025-09-16

AI Technical Summary

Technical Problem

The existing electrolytic capacitor cleaning and drying equipment has a limited cleaning area during cleaning, resulting in poor cleaning effect, and serious water stains on the conveyor belt and workpiece surface, affecting processing efficiency.

Method used

An electrolytic capacitor cleaning and drying equipment was designed, which included a cleaning tank, a drying box, a conveyor belt, a water spray assembly, a water spray angle adjustment assembly, a water removal assembly and a workpiece clamping assembly. Through multi-angle water spraying and synchronously moving water removal brushes, combined with ultrasonic cleaning and a curtain structure, comprehensive cleaning and efficient drying were achieved.

Benefits of technology

It improves the cleaning effect of electrolytic capacitors, reduces water stains on the conveyor belt and workpiece surface, shortens drying time, and improves processing efficiency and energy saving effects.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of cleaning and drying, in particular to electrolytic capacitor cleaning and drying equipment which comprises a cleaning pool and a drying box arranged on one side of the cleaning pool, a dryer is arranged on the upper end face of the drying box, a conveying belt is arranged on one side of the cleaning pool, and the conveying belt penetrates through the cleaning pool and the drying box. A cleaning assembly is arranged on the inner side of the cleaning pool and comprises a water spraying assembly, a water spraying angle adjusting assembly and a water removing assembly. Through the arrangement of the cleaning assembly, workpieces conveyed on the conveying belt can be washed at multiple angles, so that the cleaning area of the workpieces can be increased, the cleaning effect of the workpieces can be improved, and water stains on the surfaces of the cleaned workpieces and the conveying belt can be cleaned; in this way, residual water stains on the conveying belt can be reduced to flow out of the cleaning pool, residual water stains on the surfaces of cleaned workpieces can be reduced, the workpiece drying time can be shortened through cleaning of the water stains on the surfaces of the workpieces, and the workpiece machining efficiency of the device is improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of cleaning and drying, and in particular to an electrolytic capacitor cleaning and drying device. Background Art

[0002] Electrolytic capacitors are a common type of capacitor widely used in electronic circuits. Their basic principle is similar to other capacitors: storing electrical energy in a dielectric medium between two conductors. However, electrolytic capacitors differ from other types of capacitors in several ways, primarily in their structure and performance. As a key component in electronic circuits, the performance of electrolytic capacitors directly impacts the stability and lifespan of electronic devices. Cleaning and drying are essential steps in the production process to remove residual electrolyte, oil, and other impurities.

[0003] At present, electrolytic capacitor cleaning and drying equipment usually uses a direct spray of clean water to clean the electrolyte, oil and other impurities on the surface of the electrolytic capacitor during cleaning. The direct spray of clean water will be subject to certain restrictions on the cleaning area and cleaning surface of the electrolytic capacitor, which will reduce the cleaning effect of the electrolytic capacitor. Summary of the Invention

[0004] The purpose of this application is to provide an electrolytic capacitor cleaning and drying device to solve the problems raised by the above background technology.

[0005] In the first aspect, the present application provides an electrolytic capacitor cleaning and drying equipment that adopts the following technical solution: it includes a cleaning pool and a drying box arranged on one side of the cleaning pool, the upper end face of the drying box is provided with a dryer, a conveyor belt is provided on one side of the cleaning pool, the conveyor belt passes through the cleaning pool and the drying box, and a cleaning component is provided on the inside of the cleaning pool, the cleaning component includes a water spray component, a water spray angle adjustment component and a dewatering component, the water spray component is provided on the inside of the cleaning pool, and the water spray component is located above the conveyor belt, the water spray angle adjustment component is provided on the water spray component, the dewatering component is provided on one side of the water spray component, and the dewatering component is connected to the water spray component.

[0006] Preferably, the water spray assembly includes a first connecting plate arranged on the inner side of the cleaning pool, and there are multiple first connecting plates. A first connecting seat is provided on the lower end face of the first connecting plate, a half gear is rotatably provided on the inner side of the first connecting seat, a water sprayer is provided on the half gear, and two adjacent water sprayers on the first connecting plate are connected by a water pipe.

[0007] Preferably, the water spray angle adjustment assembly includes a tooth plate arranged below the first connecting plate, the tooth plate is located on the inner side of the first connecting seat on the lower end face of the first connecting plate, the tooth plate is meshed with the half gear on the first connecting seat, a first fixed plate is connected between two adjacent tooth plates, a drive motor is arranged above one of the tooth plates, the drive motor is connected to the first connecting plate, a fourth connecting plate is arranged on the tooth plate below the first connecting plate where the drive motor is located, and a guide groove is provided on the upper end face of the fourth connecting plate.

[0008] Preferably, a turntable is rotatably provided on the lower end surface of the first connecting plate where the driving motor is located, the output end of the driving motor is connected to the turntable, and a protrusion is provided on the lower end surface of the turntable, and the protrusion is inserted into the guide groove on the fourth connecting plate.

[0009] The above technical solution is used to enable the sprinkler to flip back and forth through the arrangement of the driving motor, turntable, protrusion, fourth connecting plate, guide groove, tooth plate, and half gear, so that the water spraying angle of the sprinkler can be regularly cyclically changed, thereby cleaning multiple surfaces of the workpiece.

[0010] Preferably, the dewatering assembly includes multiple groups of sliding rods arranged on the inner side of the cleaning pool, each group of sliding rods consists of two sliding rods, and each group of sliding rods is slidably provided with a movable plate, and the lower end surface of the movable plate is provided with a dewatering brush, and the end of the dewatering brush away from the movable plate is attached to the upper end surface of the conveyor belt, a movable plate close to the tooth plate is connected to the tooth plate through a second fixed plate, and two adjacent movable plates are connected through a third fixed plate.

[0011] The above technical solution can make the dewatering brush move synchronously with the tooth plate by setting the second fixed plate and the third fixed plate. The dewatering brush moving back and forth can improve the cleaning effect of water stains on the surface of the conveyor belt and the surface of the workpiece on the conveyor belt, and reduce the residual water stains on the surface of the conveyor belt and the surface of the workpiece on the conveyor belt. In the second aspect, the present application provides an electrolytic capacitor cleaning and drying equipment adopts the following technical solution: a workpiece clamping assembly is provided on the upper end face of the conveyor belt, and a plurality of the workpiece clamping assemblies are arranged at equal intervals. The workpiece clamping assembly includes a support plate arranged on the conveyor belt, a bottom plate is provided on the upper end face of the support plate, a workpiece placement plate is provided above the bottom plate, a second connecting seat is provided on the workpiece placement plate, and four second connecting seats are provided. A push rod is rotatably provided on the second connecting seat, and guide rods are provided at the four corners of the lower end face of the workpiece placement plate, and the ends of the guide rods away from the workpiece placement plate pass through the bottom plate.

[0012] Preferably, four fixed horizontal plates are provided on the upper end surface of the base plate, and the four fixed horizontal plates are arranged in a rectangular shape. A guide opening is opened on the fixed horizontal plate, and the guide opening is an inclined opening. A first fixed rod is provided at the four corners of the lower end surface of the workpiece placement plate, and the end of the first fixed rod away from the workpiece placement plate is slidably connected to the guide opening on the fixed horizontal plate through a slider.

[0013] Preferably, a second fixing rod is provided on the first fixing rod, a limiting slot is provided on the push rod, and one end of the second fixing rod away from the first fixing rod is slidably connected to the limiting slot on the push rod via a slider.

[0014] Preferably, a clamping plate is provided on one side of the connecting push rod, a push plate is rotatably connected between the clamping plate and the connecting push rod, a movable guide block is provided on the lower end face of the clamping plate, a slot is provided on the upper end face of the workpiece placing plate that is adapted to the movable guide block on the clamping plate, and a coil spring is connected between the workpiece placing plate and the base plate.

[0015] The above technical solution, the setting of the coil spring is used to restore the workpiece placement plate that is forced to move downward to its original position without external force Preferably, a third connecting plate is provided inside the cleaning pool, the third connecting plate is located on one side of the cleaning component, an ultrasonic generator is provided on the lower end surface of the third connecting plate, and curtains are provided at the inlet and outlet of the drying box.

[0016] In the above technical solution, the setting of the curtain can reduce the leakage of heat inside the drying box, thereby improving the utilization rate of the heat energy inside the drying box, and thus playing a role in energy saving. The setting of the ultrasonic generator is used to perform ultrasonic cleaning on the workpiece placed on the conveyor belt, and then wash it with water, which can improve the cleaning effect of the workpiece.

[0017] In summary, this application has the following beneficial technical effects: 1. The setting of the cleaning component can not only wash the workpieces transported on the conveyor belt at multiple angles, which can increase the cleaning area of ​​the workpieces and thus improve the cleaning effect of the workpieces, but also clean the water stains on the surface of the cleaned workpieces and the conveyor belt, which can reduce the residual water stains on the conveyor belt flowing out of the cleaning tank and the residual water stains on the surface of the workpiece after cleaning. The cleaning of the water stains on the surface of the workpiece can shorten the drying time of the workpiece and improve the processing efficiency of the device on the workpiece; 2. The arrangement of the driving motor, the turntable, the convex block, the fourth connecting plate, the guide groove, the tooth plate and the half gear is used to enable the sprinkler to flip back and forth, thereby making the water spraying angle of the sprinkler change regularly and cyclically, so as to clean multiple surfaces of the workpiece; 3. The arrangement of the second fixed plate and the third fixed plate enables the dewatering brush to move synchronously with the tooth plate. The dewatering brush that moves back and forth improves the cleaning effect of water stains on the surface of the conveyor belt and the surface of the workpiece on the conveyor belt, and reduces the residual water stains on the surface of the conveyor belt and the surface of the workpiece on the conveyor belt; 4. The workpiece clamping assembly can be used to automatically clamp and fix the workpiece placed on the conveyor belt. This method replaces the manual adjustment of the fixture to clamp the workpiece, thereby effectively improving the efficiency of the workpiece position fixation. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 It is a schematic diagram of the overall structure of an embodiment of the present application.

[0019] Figure 2 This is a first perspective view of a three-dimensional view of a workpiece clamping assembly according to an embodiment of the present application; Figure 3 This is an embodiment of the present application Figure 2 Enlarged view of point A in the middle; Figure 4 A second perspective view of a three-dimensional view of a workpiece clamping assembly according to an embodiment of the present application; Figure 5 A three-dimensional diagram of a cleaning pool according to an embodiment of the present application; Figure 6 This is a first perspective exploded view of the cleaning assembly of an embodiment of the present application; Figure 7 This is the second perspective of the exploded view of the cleaning component of an embodiment of the present application.

[0020] Description of reference numerals: 1. Cleaning tank; 2. Drying box; 3. Dryer; 4. Conveyor belt; 5. Cleaning assembly; 51. Water spray assembly; 511. First connecting plate; 512. First connecting seat; 513. Half gear; 514. Water sprayer; 515. Water pipe; 516. First fixing plate; 52. Water spray angle adjustment assembly; 521. Tooth plate; 522. Drive motor; 523. Fourth connecting plate; 524. Guide groove; 525. Turntable; 526. Bump; 53. Water removal assembly; 531. Sliding rod; 532. Moving plate; 533. Water removal Brush; 534, third fixed plate; 535, second fixed plate; 6, workpiece clamping assembly; 61, support plate; 62, bottom plate; 63, workpiece placement plate; 64, guide rod; 65, fixed horizontal plate; 66, guide port; 67, first fixed rod; 68, second fixed rod; 69, push rod; 610, limit slot; 611, second connecting seat; 612, push plate; 613, clamping plate; 614, movable guide block; 615, notch; 616, coil spring; 7, third connecting plate; 8, ultrasonic generator; 9, curtain. DETAILED DESCRIPTION

[0021] The following is combined with Figure 1 -Attached Figure 7 , further details of this application are given.

[0022] Example 1: An electrolytic capacitor cleaning and drying device comprises a cleaning pool 1 and a drying box 2 arranged on one side of the cleaning pool 1, a dryer 3 being provided on the upper end face of the drying box 2, a conveyor belt 4 being provided on one side of the cleaning pool 1, the conveyor belt 4 passing through the cleaning pool 1 and the drying box 2, a cleaning assembly 5 being provided on the inside of the cleaning pool 1, the cleaning assembly 5 comprising a water spray assembly 51, a water spray angle adjustment assembly 52 and a dewatering assembly 53, the water spray assembly 51 being provided on the inside of the cleaning pool 1, and the water spray assembly 51 being located above the conveyor belt 4, the water spray angle adjustment assembly 52 being provided on the water spray assembly 51, the dewatering assembly 53 being provided on one side of the water spray assembly 51, and the dewatering assembly 53 being connected to the water spray assembly 51.

[0023] By setting up the cleaning component 5, not only can the workpieces transported on the conveyor belt 4 be flushed at multiple angles, which can increase the cleaning area of ​​the workpieces and thus improve the cleaning effect of the workpieces, but the water stains on the surface of the workpieces after cleaning and on the conveyor belt 4 can also be cleaned, which can reduce the residual water stains on the conveyor belt 4 flowing out of the cleaning tank 1 and the residual water stains on the surface of the workpiece after cleaning. The cleaning of the water stains on the surface of the workpiece can shorten the drying time of the workpiece and improve the processing efficiency of the device on the workpiece.

[0024] The water spray assembly 51 includes a first connecting plate 511 arranged on the inner side of the cleaning pool 1. There are multiple first connecting plates 511. The lower end face of the first connecting plate 511 is provided with a first connecting seat 512. A half gear 513 is rotatably provided inside the first connecting seat 512. A water sprayer 514 is provided on the half gear 513. Two adjacent water sprayers 514 on the first connecting plate 511 are connected by a water pipe 515.

[0025] The water spray angle adjustment assembly 52 includes a tooth plate 521 arranged below the first connecting plate 511, and the tooth plate 521 is located on the inner side of the first connecting seat 512 on the lower end face of the first connecting plate 511. The tooth plate 521 is engaged with the half gear 513 on the first connecting seat 512, and a first fixed plate 516 is connected between two adjacent tooth plates 521. A drive motor 522 is arranged above one of the tooth plates 521, and the drive motor 522 is connected to the first connecting plate 511. A fourth connecting plate 523 is arranged on the tooth plate 521 below the first connecting plate 511 where the drive motor 522 is located, and a guide groove 524 is provided on the upper end face of the fourth connecting plate 523. A turntable 525 is rotatably provided on the lower end surface of the first connecting plate 511 where the driving motor 522 is located. The output end of the driving motor 522 is connected to the turntable 525. A protrusion 526 is provided on the lower end surface of the turntable 525. The protrusion 526 is inserted into the guide groove 524 on the fourth connecting plate 523.

[0026] The arrangement of the driving motor 522, the turntable 525, the protrusion 526, the fourth connecting plate 523, the guide groove 524, the tooth plate 521 and the half gear 513 is used to enable the water sprayer 514 to flip back and forth, so that the water spraying angle of the water sprayer 514 can change regularly and cyclically, thereby cleaning multiple surfaces of the workpiece.

[0027] The dewatering assembly 53 includes multiple groups of sliding rods 531 arranged on the inner side of the cleaning pool 1, each group of sliding rods 531 has two sliding rods 531, and each group of sliding rods 531 is slidably provided with a movable plate 532, and the lower end surface of the movable plate 532 is provided with a dewatering brush 533, and the end of the dewatering brush 533 away from the movable plate 532 is attached to the upper end surface of the conveyor belt 4, and a movable plate 532 close to the tooth plate 521 is connected to the tooth plate 521 through a second fixed plate 535, and two adjacent movable plates 532 are connected through a third fixed plate 534.

[0028] By setting the second fixed plate 535 and the third fixed plate 534, the dewatering brush 533 can move synchronously with the tooth plate 521. The dewatering brush 533 moving back and forth improves the cleaning effect of water stains on the surface of the conveyor belt 4 and the surface of the workpiece on the conveyor belt 4, and reduces the residual water stains on the surface of the conveyor belt 4 and the surface of the workpiece on the conveyor belt 4.

[0029] The implementation principle of the embodiment of this application is: First, the capacitors to be cleaned and dried are placed on the conveyor belt 4, and then the cleaning water is delivered to the sprinkler 514 through the water pipe 515, and the drive motor 522 is started. The start of the drive motor 522 drives the turntable 525 to rotate, and the turntable 525 drives the gear plate 521 below the turntable 525 to move back and forth through the protrusion 526. Since the gear plate 521 is engaged with the half gear 513 on the first connecting plate 511, the movement of the gear plate 521 drives the sprinkler 514 on the half gear 513 to swing back and forth. Since the first fixed plate 516 is connected between the two adjacent gear plates 521, the movement of the gear plate 521 drives the gear plate 521 connected thereto to move synchronously. When the gear plate 521 on the conveyor belt 4 is When the workpiece passes through the cleaning component 5, the water sprayer 514 swings back and forth to wash the upper end surface and side surfaces of the workpiece; during the movement of the tooth plate 521, the dewatering brush 533 on the movable plate 532 connected to it is driven to move through the second fixed plate 535, and the movable plate 532 drives the dewatering brush 533 on the adjacent connected movable plate 532 to move through the third fixed plate 534. When the workpiece after being washed with water passes through the dewatering brush 533, the dewatering brush 533 sweeps the water stains on the surface of the workpiece onto the conveyor belt 4, and the water stains on the conveyor belt 4 are swept into the cleaning pool 1 by the dewatering brush 533. Finally, the conveyor belt 4 transports the washed workpiece to the inside of the drying box 2 for drying.

[0030] Example 2: An electrolytic capacitor cleaning and drying device, wherein the upper end face of the conveyor belt 4 is provided with a workpiece clamping assembly 6, and a plurality of the workpiece clamping assemblies 6 are arranged at equal intervals, and the workpiece clamping assembly 6 includes a support plate 61 arranged on the conveyor belt 4, and the upper end face of the support plate 61 is provided with a base plate 62, and a workpiece placement plate 63 is provided above the base plate 62, and a second connecting seat 611 is provided on the workpiece placement plate 63, and four second connecting seats 611 are provided, and a push rod 69 is rotatably provided on the second connecting seat 611, and guide rods 64 are provided at the four corners of the lower end face of the workpiece placement plate 63, and the ends of the guide rods 64 away from the workpiece placement plate 63 all pass through the base plate 62.

[0031] The guide rod 64 guides the workpiece placement plate 63 to move up and down.

[0032] Four fixed transverse plates 65 are provided on the upper end surface of the base plate 62, and the four fixed transverse plates 65 are arranged in a rectangular shape. A guide opening 66 is opened on the fixed transverse plate 65, and the guide opening 66 is an inclined opening. A first fixed rod 67 is provided at the four corners of the lower end surface of the workpiece placement plate 63, and the end of the first fixed rod 67 away from the workpiece placement plate 63 is slidably connected to the guide opening 66 on the fixed transverse plate 65 through a slider.

[0033] A second fixing rod 68 is provided on the first fixing rod 67 , a limiting slot 610 is provided on the push rod 69 , and one end of the second fixing rod 68 away from the first fixing rod 67 is slidably connected to the limiting slot 610 on the push rod 69 via a slider.

[0034] A clamping plate 613 is provided on one side of the connecting push rod 69, and a push plate 612 is rotatably connected between the clamping plate 613 and the connecting push rod 69. A movable guide block 614 is provided on the lower end face of the clamping plate 613, and a slot 615 is provided on the upper end face of the workpiece placing plate 63 which is adapted to the movable guide block 614 on the clamping plate 613. A coil spring 616 is connected between the workpiece placing plate 63 and the base plate 62.

[0035] The coil spring 616 is used to restore the workpiece placement plate 63 that has been forced to move downward to its original position without being subjected to external force.

[0036] By setting the workpiece clamping assembly 6, the workpiece placed on the conveyor belt 4 can be automatically clamped and fixed. This method replaces the manual adjustment of the clamping of the workpiece, thereby effectively improving the fixing and clamping efficiency of the workpiece position.

[0037] A third connecting plate 7 is provided inside the cleaning tank 1, located on one side of the cleaning assembly 5. An ultrasonic generator 8 is provided on the lower end surface of the third connecting plate 7. Curtains 9 are provided at the entrance and exit of the drying box 2. The provision of the curtains 9 reduces heat leakage from the drying box 2, thereby improving the utilization rate of the heat energy inside the drying box 2 and thus achieving energy conservation. The ultrasonic generator 8 is provided for ultrasonically cleaning workpieces placed on the conveyor belt 4, followed by water washing, thereby improving the cleaning effect of the workpieces.

[0038] The implementation principle of the embodiment of this application is: The workpiece is placed on the upper end surface of the workpiece placement plate 63, and the workpiece placement plate 63 is forced to move downward, and the first fixed rod 67 is tilted downward along the guide port 66. The first fixed rod 67 drives the second fixed rod 68 to move toward the side of the first fixed rod 67. The movement of the second fixed rod 68 drives the push rod 69 to rotate through the second connecting seat 611. During the rotation of the push rod 69, the end of the push rod 69 away from the second fixed rod 68 pushes the clamping plate 613 through the push plate 612 to move toward the workpiece placed on the upper end surface of the workpiece placement plate 63. When the clamping plate 613 is clamped on the workpiece on the upper end surface of the workpiece placement plate 63, the clamping plate 613 stops moving.

[0039] Working principle of the present invention: First, place the capacitor to be cleaned and dried on the upper end surface of the workpiece placement plate 63 on the conveyor belt 4. The workpiece placement plate 63 is forced to move downward, and the first fixed rod 67 moves downward along the guide port 66. The first fixed rod 67 drives the second fixed rod 68 to move to one side of the first fixed rod 67. The movement of the second fixed rod 68 drives the push rod 69 to rotate through the second connecting seat 611. During the rotation of the push rod 69, the end of the push rod 69 away from the second fixed rod 68 pushes the clamping plate through the push plate 612 613 moves toward the workpiece placed on the upper end surface of the workpiece placement plate 63. When the clamping plate 613 is clamped on the workpiece on the upper end surface of the workpiece placement plate 63, the clamping plate 613 stops moving, and then supplies cleaning water to the sprinkler 514 through the water pipe 515, and starts the drive motor 522. The start of the drive motor 522 drives the turntable 525 to rotate, and the turntable 525 drives the tooth plate 521 below the turntable 525 to move back and forth through the protrusion 526. Since the tooth plate 521 is connected to the first connecting plate The half gear 513 on 511 is meshed, and the movement of the tooth plate 521 drives the water sprayer 514 on the half gear 513 to swing back and forth. Since the first fixed plate 516 is connected between the two adjacent tooth plates 521, the movement of the tooth plate 521 drives the tooth plate 521 connected thereto to move synchronously. When the workpiece on the conveyor belt 4 passes through the cleaning component 5, the water sprayer 514 swinging back and forth washes the upper end face and side face of the workpiece; the tooth plate 521 drives the second fixed plate 535 to move during the movement. As the dewatering brush 533 on the movable plate 532 connected to it moves, the movable plate 532 drives the dewatering brush 533 on the adjacent connected movable plate 532 to move through the third fixed plate 534 during the movement. When the workpiece after being rinsed with water passes through the dewatering brush 533, the dewatering brush 533 sweeps the water stains on the surface of the workpiece onto the conveyor belt 4, and the water stains on the conveyor belt 4 are swept into the cleaning pool 1 by the dewatering brush 533. Finally, the conveyor belt 4 transports the rinsed workpiece to the inside of the drying box 2 for drying.

[0040] Finally, it should be noted that the above descriptions are merely preferred embodiments of the present invention and are not intended to limit the present invention. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art will be able to modify the technical solutions described in the aforementioned embodiments or substitute equivalents for some of the technical features. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present invention shall be included within the scope of protection of the present invention.

Claims

1. An electrolytic capacitor cleaning and drying device, comprising a cleaning tank (1) and a drying box (2) arranged on one side of the cleaning tank (1), wherein a dryer (3) is provided on the upper end surface of the drying box (2), and a conveyor belt (4) is provided on one side of the cleaning tank (1), wherein the conveyor belt (4) passes through the cleaning tank (1) and the drying box (2), and is characterized in that: A cleaning assembly (5) is provided inside the cleaning pool (1), and the cleaning assembly (5) includes a water spray assembly (51), a water spray angle adjustment assembly (52), and a water removal assembly (53). The water spray assembly (51) is provided inside the cleaning pool (1), and the water spray assembly (51) is located above the conveyor belt (4). The water spray angle adjustment assembly (52) is provided on the water spray assembly (51), and the water removal assembly (53) is provided on one side of the water spray assembly (51), and the water removal assembly (53) is connected to the water spray assembly (51).

2. The electrolytic capacitor cleaning and drying equipment according to claim 1, characterized in that: The water spray assembly (51) comprises a first connecting plate (511) arranged inside the cleaning pool (1), wherein a plurality of the first connecting plates (511) are provided, a first connecting seat (512) is provided on the lower end surface of the first connecting plate (511), a half gear (513) is rotatably provided inside the first connecting seat (512), a water sprayer (514) is provided on the half gear (513), and two adjacent water sprayers (514) on the first connecting plate (511) are connected via a water pipe (515).

3. The electrolytic capacitor cleaning and drying equipment according to claim 2, characterized in that: The water spray angle adjustment assembly (52) comprises a tooth plate (521) arranged below the first connecting plate (511), the tooth plate (521) being located inside the first connecting seat (512) on the lower end surface of the first connecting plate (511), the tooth plate (521) being meshed with a half gear (513) on the first connecting seat (512), a first fixing plate (516) being connected between two adjacent tooth plates (521), a driving motor (522) being arranged above one of the tooth plates (521), the driving motor (522) being connected to the first connecting plate (511), a fourth connecting plate (523) being arranged on the tooth plate (521) below the first connecting plate (511) where the driving motor (522) is located, and a guide groove (524) being provided on the upper end surface of the fourth connecting plate (523).

4. The electrolytic capacitor cleaning and drying equipment according to claim 3, characterized in that: A turntable (525) is rotatably provided on the lower end surface of the first connecting plate (511) where the driving motor (522) is located. The output end of the driving motor (522) is connected to the turntable (525). A protrusion (526) is provided on the lower end surface of the turntable (525). The protrusion (526) is inserted into the guide groove (524) on the fourth connecting plate (523).

5. The electrolytic capacitor cleaning and drying equipment according to claim 3, characterized in that: The dewatering assembly (53) includes a plurality of groups of sliding rods (531) arranged inside the cleaning tank (1), each group of the sliding rods (531) includes two sliding rods, and each group of the sliding rods (531) is provided with a movable plate (532) for sliding, and a dewatering brush (533) is provided on the lower end surface of the movable plate (532), and the end of the dewatering brush (533) away from the movable plate (532) is attached to the upper end surface of the conveyor belt (4), a movable plate (532) close to the tooth plate (521) is connected to the tooth plate (521) through a second fixed plate (535), and two adjacent movable plates (532) are connected through a third fixed plate (534).

6. The electrolytic capacitor cleaning and drying equipment according to claim 1, characterized in that: The upper end surface of the conveyor belt (4) is provided with a workpiece clamping assembly (6), and a plurality of the workpiece clamping assemblies (6) are provided at equal intervals. The workpiece clamping assembly (6) includes a support plate (61) provided on the conveyor belt (4), the upper end surface of the support plate (61) is provided with a bottom plate (62), a workpiece placement plate (63) is provided above the bottom plate (62), a second connecting seat (611) is provided on the workpiece placement plate (63), four second connecting seats (611) are provided, and a push rod (69) is rotatably provided on the second connecting seat (611), and guide rods (64) are provided at the four corners of the lower end surface of the workpiece placement plate (63), and the ends of the guide rods (64) away from the workpiece placement plate (63) all pass through the bottom plate (62).

7. The electrolytic capacitor cleaning and drying equipment according to claim 6, characterized in that: Four fixed transverse plates (65) are provided on the upper end surface of the base plate (62), and the four fixed transverse plates (65) are arranged in a rectangular shape. A guide opening (66) is provided on the fixed transverse plate (65), and the guide opening (66) is an inclined opening. First fixed rods (67) are provided at the four corners of the lower end surface of the workpiece placement plate (63), and one end of the first fixed rod (67) away from the workpiece placement plate (63) is slidably connected to the guide opening (66) on the fixed transverse plate (65) through a slider.

8. The electrolytic capacitor cleaning and drying equipment according to claim 7, characterized in that: A second fixing rod (68) is provided on the first fixing rod (67), a limiting groove (610) is provided on the push rod (69), and one end of the second fixing rod (68) away from the first fixing rod (67) is slidably connected to the limiting groove (610) on the push rod (69) via a slider.

9. The electrolytic capacitor cleaning and drying equipment according to claim 8, characterized in that: A clamping plate (613) is provided on one side of the connecting push rod (69), a push plate (612) is rotatably connected between the clamping plate (613) and the connecting push rod (69), a movable guide block (614) is provided on the lower end surface of the clamping plate (613), a notch (615) adapted to the movable guide block (614) on the clamping plate (613) is provided on the upper end surface of the workpiece placement plate (63), and a coil spring (616) is connected between the workpiece placement plate (63) and the base plate (62).

10. The electrolytic capacitor cleaning and drying equipment according to claim 1, characterized in that: A third connecting plate (7) is provided inside the cleaning tank (1), and the third connecting plate (7) is located on one side of the cleaning assembly (5). An ultrasonic generator (8) is provided on the lower end surface of the third connecting plate (7), and curtains (9) are provided at the inlet and outlet of the drying box (2).

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