Scouring type cleaning equipment for aluminum shell
By using a rotating frame to drive the tooling frame to rotate and combining it with the design of the cleaning components, the problem of low cleaning efficiency in existing aluminum shell cleaning equipment is solved, and continuous and efficient cleaning of aluminum shells is achieved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-29
- Publication Date
- 2026-04-03
AI Technical Summary
Existing aluminum shell cleaning equipment uses a single cleaning method, can only clean a limited number of aluminum shells at a time, and has low continuous cleaning efficiency.
The rotating frame drives the tooling frame to rotate, and the cleaning components perform flushing cleaning. The drive mechanism enables non-stop cyclic cleaning of the aluminum shell. The design of the polygonal frame structure and the opening and closing of the mesh plate cover enables continuous cleaning of the aluminum shell.
It improves the cleaning efficiency of aluminum shells, enables a continuous and uninterrupted cleaning process, saves cleaning time, and enhances the speed and efficiency of cleaning.
Smart Images

Figure CN224072833U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of cleaning equipment, and more particularly to a flushing cleaning device for aluminum shells. Background Technology
[0002] As the external protective material of the battery, the battery casing is usually made of aluminum. After the aluminum casing is manufactured, dust and other stains often adhere to its surface, so it needs to be cleaned. With the improvement of industrialization, the traditional cleaning method of aluminum casing has gradually changed from manual cleaning to mechanical cleaning. As shown in the lithium battery aluminum casing cleaning equipment disclosed on the China Patent Network (publication announcement number CN221734246U), when a batch of painted components need to be cleaned, the components to be cleaned are first placed horizontally in the component bracket. Then, the component transfer mechanism is started, and the component transfer mechanism moves to the top of the component bracket. Then, it automatically descends to the appropriate position, lifts the full component bracket, and moves it horizontally to the middle of the chemical solution tank. Then, the component bracket is lowered into the chemical solution tank and completely immersed in the paint stripping solution for the cleaning process.
[0003] However, the aluminum shell cleaning equipment disclosed in the aforementioned patents and currently available in the market still has some shortcomings: existing hanging-type cleaning equipment has a relatively simple cleaning method, and can only clean a limited number of aluminum shells at a time. After cleaning, all the aluminum shells must be removed before the next group can be cleaned, resulting in low continuous cleaning efficiency. Therefore, those skilled in the art have provided a flushing cleaning device for aluminum shells to solve the problems mentioned in the background section. Utility Model Content
[0004] To address the shortcomings of existing technologies, this utility model provides a flushing cleaning device for aluminum shells, solving the problems mentioned in the background section.
[0005] To achieve the above objectives, this utility model provides the following technical solution: a flushing cleaning device for aluminum shells, comprising: a chassis; a cleaning tank located inside the chassis, wherein a rotating frame is rotatably connected within the cleaning tank, and the rotating frame is provided with at least one set of tooling frames along its circumference, the ends of which are connected to opening and closing pressure caps; a cleaning assembly located at the bottom of the chassis and extending into the cleaning tank, wherein at least one cleaning assembly is provided; and a driving mechanism located inside the chassis for driving the rotating frame to rotate, causing the aluminum shells within the tooling frames to flip and approach the cleaning assembly for flushing and cleaning.
[0006] As a further technical solution of this utility model: the rotating frame is a polygonal prism frame structure.
[0007] As a further technical solution of this utility model: the opening and closing cover is a mesh plate structure, and the opening and closing cover is locked and fixed to the tooling frame by a latch.
[0008] As a further technical solution of this utility model: the driving mechanism includes a brake frame disposed inside the chassis, the bottom end of the brake frame is provided with a drive motor, and the middle part of the brake frame is provided with a transmission shaft for driving the rotating frame, the output end of the drive motor is provided with a drive gear, and the transmission shaft is provided with a transmission gear meshing with the drive gear along its axial direction.
[0009] As a further technical solution of this utility model: one end of the transmission shaft is provided with a locking gear, the top of the brake frame bracket is provided with no less than one set of electric push rods, and the telescopic end of the electric push rod is provided with a locking tooth seat that meshes with the locking gear.
[0010] As a further technical solution of this utility model: the cleaning component is arranged along the circumferential direction of the rotating frame, the cleaning component includes a diversion pipe, the diversion pipe is provided with not less than one set of flushing pipes along its pipeline direction, and the flushing pipe is provided with multiple sets of flushing nozzles along its pipeline direction.
[0011] As a further technical solution of this utility model: the length of the arrangement of the flushing nozzles is the same as the length of the support of the rotating frame.
[0012] As a further technical solution of this utility model: the bottom of the cleaning tank is provided with a drain pipe that runs through the machine box.
[0013] This utility model provides a flushing cleaning device for aluminum shells, which has the following advantages compared with the prior art:
[0014] Beneficial effects:
[0015] The aluminum shell cleaning equipment designed in this paper uses a drive mechanism as the driving source to drive the rotating frame to rotate circumferentially, which in turn drives the tooling frame to rotate and swing. The aluminum shells in the tooling frame are rotated one by one to a position close to the cleaning component for a flushing cleaning process. While cleaning, the cleaning time can be used to remove the cleaned aluminum shells and put the uncleaned aluminum shells back in, forming a non-stop rotating cleaning state. Its continuous cleaning efficiency is better, and the cleaning is faster and more efficient. Attached Figure Description
[0016] Figure 1 This is a schematic diagram of a flushing cleaning device used for aluminum shells.
[0017] Figure 2 A first cross-sectional view of a flushing cleaning device for aluminum shells;
[0018] Figure 3This is a second sectional view of a flushing cleaning device for aluminum shells.
[0019] Figure 4 This is an assembly diagram of the rotating frame and tooling frame in a flushing cleaning device for aluminum shells.
[0020] Figure 5 This is a schematic diagram of the cleaning components in a flushing cleaning device for aluminum shells.
[0021] Figure 6 This is a schematic diagram of the drive mechanism in a flushing cleaning device for aluminum shells.
[0022] In the diagram: 1. Chassis; 2. Cleaning tank; 3. Rotating frame; 4. Tooling frame; 5. Opening and closing pressure cap; 6. Cleaning assembly; 61. Diverter pipe; 62. Rinsing pipe; 63. Rinsing nozzle; 7. Drain pipe; 8. Drive mechanism; 81. Brake frame; 82. Drive motor; 83. Drive gear; 84. Transmission gear; 85. Transmission shaft; 86. Locking gear; 87. Locking gear seat; 88. Electric push rod; 9. Locking buckle. Detailed Implementation
[0023] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present utility model without creative effort are within the protection scope of the present utility model.
[0024] Please see Figure 1-6 This utility model provides a technical solution for a flushing cleaning device for aluminum shells: The flushing cleaning device for aluminum shells includes a housing 1, a cleaning tank 2 located inside the housing 1, a rotating frame 3 rotatably connected inside the cleaning tank 2, and at least one set of tooling frames 4 arranged circumferentially on the rotating frame 3. A cleaning assembly 6 is located at the bottom of the housing 1 and extends into the cleaning tank 2. A drive mechanism 8 is located inside the housing 1, used to drive the rotating frame 3 to rotate, causing the aluminum shells inside the tooling frames 4 to flip and approach the cleaning assembly 6 for flushing cleaning. By controlling the braking of the drive mechanism 8, the rotating frame 3 is driven to rotate, sequentially rotating the tooling frames 4 upwards to serve as loading molds for the aluminum shells. The tooling frames 4 with loaded molds are then rotated downwards, sequentially approaching the cleaning assembly 6 for flushing cleaning. After cleaning, the device rotates upwards to reset, removing the cleaned aluminum shells and reinserting uncleaned aluminum shells for a continuous, non-stop cleaning process. This improves the cleaning efficiency of aluminum shells while saving cleaning time. Specifically:
[0025] The rotating frame 3 has a polygonal prism frame structure. The port of the tooling frame 4 is connected to the opening and closing cover 5, which is a mesh plate structure. The opening and closing cover 5 and the tooling frame 4 are locked and fixed by the lock 9. Based on the rotation braking of the rotating frame 3, the tooling frame 4 on the rotating frame 3 is rotated to a fixed point in sequence, so that the tooling frame 4 rotates upward in sequence. Then, by opening the opening and closing cover 5, the aluminum shells are placed one by one into the tooling frame 4, and the opening and closing cover 5 is closed again. Under the fixation of the lock 9, the aluminum shells in the tooling frame 4 are limited by the mesh frame. Then, by using the rotation braking of the rotating frame 3, the aluminum shells in the tooling frame 4 are rotated in sequence to approach the cleaning component 6 for flushing cleaning.
[0026] As a further embodiment, the drive mechanism 8 includes a brake frame 81 located inside the housing 1. The bottom end of the brake frame 81 is provided with a drive motor 82, and the middle part of the brake frame 81 is provided with a transmission shaft 85 for driving the rotating frame 3. The output end of the drive motor 82 is provided with a drive gear 83, and the transmission shaft 85 is provided with a transmission gear 84 that meshes with the drive gear 83 along its axial direction. By controlling the operation of the drive motor 82, the drive gear 83 is driven to rotate, and the meshing transmission between the drive gear 83 and the transmission gear 84 drives the transmission shaft 85 to rotate, thereby pushing the rotating frame 3 to rotate circumferentially along the transmission shaft 85, and performing a continuous cleaning process on the aluminum shell inside the tooling frame 4.
[0027] Furthermore, one end of the drive shaft 85 is provided with a locking gear 86, and the top of the brake frame 81 is provided with at least one set of electric push rods 88. The telescopic end of the electric push rod 88 is provided with a locking tooth seat 87 that meshes with the locking gear 86. When the drive shaft 85 drives the rotating frame 3 to rotate, while bringing the aluminum shells in the tooling frame 4 one by one close to the cleaning component 6, the electric push rod 88 is controlled to extend and retract, causing the locking tooth seat 87 at its telescopic end to press down and mesh with the locking gear 86, thus locking the drive shaft 85 and fixing the rotating frame 3. This provides a stable rinsing and cleaning environment for the aluminum shells in the tooling frame 4 and facilitates the removal of the already cleaned aluminum shells from the tooling frame 4 and the simultaneous insertion of new aluminum shells.
[0028] In addition, the cleaning assembly 6 is set to at least one set. The cleaning assembly 6 is arranged along the rotation circumference of the rotating frame 3. The cleaning assembly 6 includes a diversion pipe 61. The diversion pipe 61 is provided with at least one set of flushing pipes 62 along its pipeline direction. The flushing pipes 62 are provided with multiple sets of flushing nozzles 63 along their pipeline direction. The length of the flushing nozzles 63 is the same as the support length of the rotating frame 3. When the aluminum shell inside the tooling frame 4 rotates and approaches the cleaning assembly 6, the water pump equipment is connected to the diversion pipe 61 in advance to pump the clean water source to the diversion pipe 61. The water source is diverted and transported along the flushing pipes 62. Under the flushing of the flushing nozzles 63, the aluminum shell inside the tooling frame 4 is cleaned by rinsing. By setting the cleaning assembly 6 to multiple sets and placing it close to the bottom of the cleaning tank 2, it can perform multiple and different angle flushing and cleaning of the aluminum shell. On the other hand, it can make the residual clean water flow out automatically during the rotation and swinging process of the cleaned aluminum shell.
[0029] It should be noted that the bottom of the cleaning tank 2 is equipped with a drain pipe 7 that runs through the casing 1. By setting the drain pipe 7 at the bottom of the cleaning tank 2, the wastewater after cleaning is discharged in real time, so as to facilitate continuous and uninterrupted flushing and cleaning of the aluminum shell.
[0030] The above description is merely a preferred embodiment of this utility model. It should be noted that those skilled in the art can make various improvements and modifications without departing from the principles of this utility model, and these improvements and modifications should also be considered within the scope of protection of this utility model. Structures, devices, and operating methods not specifically described or explained in this utility model are implemented according to conventional methods in the art, unless otherwise specified or limited.
Claims
1. A rinse cleaning apparatus for an aluminum can, characterized by, Include: Machine box (1); Cleaning tank (2) is arranged in the machine box (1), the rotating frame (3) is rotatably connected in the cleaning tank (2), the rotating frame (3) is provided with not less than a group of tool holder (4) along its circumference, and the port of the tool holder (4) is connected with the opening and closing gland (5); Cleaning assembly (6) is arranged at the bottom of the machine box (1) and extends into the cleaning tank (2), and the cleaning assembly (6) is provided with not less than a group; Drive mechanism (8) is arranged in the machine box (1), which is used for driving the rotating frame (3) to rotate, so that the aluminum shell in the tool holder (4) is turned to close to the cleaning assembly (6) for flushing cleaning.
2. The rinse apparatus for aluminum cans according to claim 1, wherein The rotating frame (3) is a polygonal prism structure.
3. The rinse apparatus for aluminum cans according to claim 1, wherein The opening and closing gland (5) is a mesh plate structure, and the opening and closing gland (5) and the tool holder (4) are locked and fixed through the lock buckle (9).
4. The rinse apparatus for aluminum cans according to claim 1, wherein The drive mechanism (8) includes a brake frame (81) arranged in the machine box (1), the bottom of the support of the brake frame (81) is provided with a drive motor (82), and the middle of the support of the brake frame (81) is provided with a transmission shaft (85) for driving the rotating frame (3), the output end of the drive motor (82) is provided with a drive gear (83), and the transmission shaft (85) is provided with a transmission gear (84) engaged with the drive gear (83) along its axial direction.
5. The rinse apparatus for aluminum cans according to claim 4, wherein One end of the transmission shaft (85) is provided with a locking gear (86), and the top of the support of the brake frame (81) is provided with not less than a group of electric push rods (88), and the telescopic end of the electric push rod (88) is provided with a locking gear (86) engaged with the locking gear (86).
6. The rinse apparatus for aluminum cans according to claim 1, wherein The cleaning assembly (6) is arranged along the rotating direction of the rotating frame (3), and the cleaning assembly (6) includes a shunt pipe (61), the shunt pipe (61) is provided with not less than a group of flushing pipes (62) along its pipe direction, and the flushing pipe (62) is provided with a plurality of flushing nozzles (63) along its pipe direction.
7. The rinse apparatus for aluminum cans according to claim 6, wherein The arrangement length of the flushing nozzle (63) is the same as the length of the support of the rotating frame (3).
8. The rinse apparatus for aluminum cans according to claim 1, wherein The bottom of the cleaning tank (2) is provided with a blow-off pipe (7) penetrating the machine box (1).
Citation Information
Patent Citations
Lithium battery aluminum shell pendant cleaning equipment
CN221734246U