Lithium battery top cover cleaning mechanism

By designing a lithium battery ceiling cleaning mechanism integrating a driving mechanism, sliding assembly and vacuum cleaner body, the problem of the existing technology being unable to effectively clean up the dust on the lithium battery surface is solved, and the effect of efficient automatic cleaning and dust absorption is achieved, improving the cleaning environment and product quality.

CN222872903UActive Publication Date: 2025-05-16DONGGUAN CLIMAX SEAL TECH
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Patent Information

Application Number
CN202421618625.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-09
Publication Date
2025-05-16
Estimated Expiration
2034-07-09

AI Technical Summary

Technical Problem

The existing lithium battery cleaning device cannot effectively clean up the dust on the surface of the lithium battery, resulting in dust pollution problems.

Method used

A lithium battery ceiling cleaning mechanism is designed, including a support component, a cleaning component, a driving mechanism, a sliding component and a vacuum cleaner body. The sliding component and a cleaning component are driven to move through the driving mechanism, and combined with the use of the vacuum cleaner body, the efficient and automated cleaning of the lithium battery ceiling is achieved.

Benefits of technology

It realizes efficient and automated cleaning of the lithium battery ceiling, which can promptly and effectively absorb dust and impurities generated during the cleaning process, prevent secondary pollution of dust, and improves the cleanliness of the cleaning environment and the cleaning quality of the product.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a lithium battery top cover cleaning mechanism which comprises a supporting assembly, a cleaning assembly, a driving mechanism, a sliding assembly and a dust collection body, the cleaning assembly is vertically installed on the supporting assembly, and the cleaning assembly is connected with the supporting assembly and used for cleaning a battery top cover. The driving assembly is vertically installed on the supporting assembly, the driving mechanism is connected with the supporting assembly and used for supporting the driving assembly, the sliding assembly is vertically installed on the driving mechanism, and the sliding assembly is connected with the supporting assembly and used for driving the supporting assembly and the cleaning assembly to move. The dust collection body is vertically installed on the supporting assembly, the dust collection body is connected with the supporting assembly and used for sucking dust on the surface of the battery top cover, and efficient and automatic cleaning of the lithium battery top cover is achieved by integrating the driving mechanism, the sliding assembly and the cleaning assembly.
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Description

Technical Field

[0001] The utility model relates to the field of battery technology development, in particular to a lithium battery top cover cleaning mechanism. Background Art

[0002] With the rapid development of electric vehicles, electric bicycles and energy storage systems, the performance and safety of lithium-ion batteries as their core power source have become the focus of the industry. As an important component of the battery, the lithium-ion battery cover not only carries the key functions of sealing and insulation, but also directly affects the overall performance and safety of the battery;

[0003] The existing Chinese patent with reference publication number CN215745145U discloses a cleaning device for lithium batteries, including a barrel body, wherein the bottom plate of the barrel body is fixedly connected to the lower side of a support plate, one side of the support plate is fixedly connected to one side of a fixed plate, and the other side of the fixed plate is fixedly connected to one side of a fixed rod, and both ends of the fixed rod are respectively movably connected to one end of a swing rod, and the other end of each of the swing rods is respectively movably connected to one end of a square rod, and the lower side of the square rod is fixedly connected to one end of a symmetrical connecting rod, and the other end of each of the connecting rods is respectively fixedly connected to a trough body, and the trough body is provided with a cleaning mechanism. Although the above-mentioned utility model can clean lithium batteries, when there is dust on the surface of the lithium battery, it does not have the function of cleaning the dust on the surface of the lithium battery. Therefore, in order to solve this problem, the inventors have proposed a lithium battery top cover cleaning mechanism. Utility Model Content

[0004] In view of the deficiencies existing in the above-mentioned technology, the utility model provides a lithium battery top cover cleaning mechanism.

[0005] In order to achieve the above-mentioned purpose, the utility model adopts the following technical scheme: a lithium battery top cover cleaning mechanism, comprising a support assembly, a cleaning assembly, a driving mechanism, a sliding assembly and a dust suction body, the cleaning assembly is vertically installed on the support assembly, the cleaning assembly is connected to the support assembly, and is used to clean the battery top cover, the driving mechanism is vertically installed on the support assembly, the driving mechanism is connected to the support assembly, and is used to support the driving assembly, the sliding assembly is vertically installed on the driving mechanism, the sliding assembly is connected to the support assembly, and is used to drive the support assembly and the cleaning assembly to move, the dust suction body is vertically installed on the support assembly, and the dust suction body is connected to the support assembly, and is used to absorb dust on the surface of the battery top cover.

[0006] As a further explanation, the cleaning assembly includes a water tank and a cleaning pipe. The water tank is vertically installed on the supporting assembly, and the cleaning pipe is vertically installed on the water tank. The cleaning pipe is connected to the water tank and is used to clean the battery top cover.

[0007] As a further explanation, the sliding assembly includes a first sliding guide rail, a first slider and a first coordinate axis, the first sliding guide rail is vertically mounted on the supporting assembly, the first slider is vertically mounted on the first sliding guide rail, the first slider is slidably connected to the first sliding guide rail, the first coordinate axis is vertically mounted on the first slider, and the first coordinate axis is connected to the first slider.

[0008] As a further explanation, the sliding assembly is provided with a second sliding guide rail extending outward, the second sliding guide rail is vertically installed on the supporting assembly, the second sliding guide rail is provided with a second slider extending outward, the second slider is vertically installed on the second sliding guide rail, the second slider is slidably connected to the second sliding guide rail, the second slider is provided with a second coordinate axis extending outward, the second coordinate axis is vertically installed on the second slider, and the second coordinate axis is connected to the second slider.

[0009] As a further explanation, the sliding assembly is provided with a third sliding guide rail extending outward, and the third sliding guide rail is provided with a third slider extending outward. The third slider is vertically installed on the third sliding guide rail, and the third slider is connected to the third sliding guide rail for moving the battery top cover to the bottom of the cleaning assembly.

[0010] As a further explanation, the driving mechanism includes a first driving motor and a second driving motor, the first driving motor is vertically installed on the first coordinate axis, the first driving motor is connected to the first coordinate axis, the second driving motor is vertically installed on the first sliding guide rail, and the second driving motor is connected to the first slider for driving the first slider to move laterally.

[0011] As a further explanation, the driving mechanism is provided with a third driving motor extending outward, and the third driving motor is vertically installed on the second sliding guide rail. The third driving motor is connected to the second slider and is used to drive the second slider to move laterally inside the second sliding guide rail. The driving mechanism is provided with a clamping cylinder extending outward, and the clamping cylinder is vertically installed on the support assembly. The driving mechanism is provided with a limiting cylinder extending outward, and the limiting cylinder is vertically installed on the support assembly.

[0012] As a further explanation, the support assembly includes a first bracket, a second bracket and a fixed bracket, the first bracket is installed at one end of the second bracket, the second bracket is installed inside the first bracket, the fixed bracket is installed at one end of the third sliding guide rail, the first sliding guide rail is located inside the first bracket, the second sliding guide rail is located inside the second bracket, and the limit cylinder is located at the top of the fixed bracket.

[0013] As a further explanation, the support assembly is provided with a first placement rack extending outward, the first placement rack is vertically installed on the first coordinate axis, and the first placement rack is connected to the first coordinate axis, so that the first drive motor can drive the first placement rack to move longitudinally along the first coordinate axis. The support assembly is provided with a second placement rack extending outward, the second placement rack is vertically installed on the second coordinate axis, and the second placement rack is connected to the second coordinate axis, so that the second drive motor can drive the second placement rack to move longitudinally along the second coordinate axis. The water tank is located inside the first placement rack, and the dust collector body is located inside the second placement rack.

[0014] As a further explanation, the third slider is extended outwardly to be provided with a third placement rack, and the third placement rack is vertically installed on the third slider, and the third placement rack is connected to the third slider for driving the third placement rack to move, and the third placement rack is extended outwardly to be provided with a clamp, and the clamp is vertically installed on the third placement rack, and the clamp is connected to the third placement rack for clamping the lithium battery, and the clamping cylinder is located on the third placement rack, and the clamping cylinder is connected to the clamp for clamping and adjusting the clamp.

[0015] To sum up, the utility model has the following beneficial effects: the utility model provides a lithium battery top cover cleaning mechanism, which realizes efficient and automatic cleaning of the lithium battery top cover by integrating a driving mechanism, a sliding assembly and a cleaning assembly. The setting of the dust suction body can timely and effectively absorb the dust and impurities generated during the cleaning process, preventing secondary pollution of dust and further improving the cleanliness of the cleaning environment and the cleaning quality of the product. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 This is a three-dimensional structural diagram of a lithium battery top cover cleaning mechanism of the utility model;

[0017] Figure 2 This is a rear view of a lithium battery top cover cleaning mechanism of the utility model;

[0018] Figure 3 It is a left view of a lithium battery top cover cleaning mechanism of the utility model.

[0019] Numbers in the figure: 1-dust collection body, 10-support assembly, 101-first bracket, 102-second bracket, 103-fixed frame, 104-first placement rack, 105-second placement rack, 106-third placement rack, 107-clamp, 20-cleaning assembly, 201-water tank, 202-cleaning pipe, 30-driving mechanism, 301-first driving motor, 302-second driving motor, 303-third driving motor, 304-clamping cylinder, 305-limiting cylinder, 40-sliding assembly, 401-first sliding guide rail, 402-first slider, 403-first coordinate axis, 404-second sliding guide rail, 405-second slider, 406-second coordinate axis, 407-third sliding guide rail, 408-third slider. DETAILED DESCRIPTION

[0020] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.

[0021] like Figure 1-3 As shown, a lithium battery top cover cleaning mechanism includes a supporting assembly, a cleaning assembly, a driving mechanism, a sliding assembly and a dust collection body 1. The cleaning assembly is vertically installed on the supporting assembly, and the cleaning assembly is connected to the supporting assembly for cleaning the battery top cover. The driving mechanism is vertically installed on the supporting assembly, and the driving mechanism is connected to the supporting assembly for supporting the driving assembly. The sliding assembly is vertically installed on the driving mechanism, and the sliding assembly is connected to the supporting assembly for driving the supporting assembly and the cleaning assembly to move. The dust collection body 1 is vertically installed on the supporting assembly, and the dust collection body 1 is connected to the supporting assembly for sucking dust on the surface of the battery top cover.

[0022] Specifically, the configuration of the dust collecting body 1 can timely and effectively remove the dust and impurities generated during the cleaning process, thereby preventing secondary pollution of the dust and further improving the cleanliness of the cleaning environment and the cleaning quality of the product.

[0023] The cleaning assembly includes a water tank 201 and a cleaning pipe 202. The water tank 201 is vertically installed on the supporting assembly, and the cleaning pipe 202 is vertically installed on the water tank 201. The cleaning pipe 202 is connected to the water tank 201 and is used to clean the battery top cover.

[0024] Specifically,

[0025] The sliding assembly includes a first sliding rail 401, a first slider 402 and a first coordinate axis 403. The first sliding rail 401 is vertically installed on the supporting assembly, the first slider 402 is vertically installed on the first sliding rail 401, the first slider 402 is slidingly connected to the first sliding rail 401, the first coordinate axis 403 is vertically installed on the first slider 402, and the first coordinate axis 403 is connected to the first slider 402.

[0026] A second sliding guide rail 404 is extended outward from the sliding assembly, and the second sliding guide rail 404 is vertically installed on the supporting assembly. A second slider 405 is extended outward from the second sliding guide rail 404, and the second slider 405 is vertically installed on the second sliding guide rail 404. The second slider 405 is slidably connected to the second sliding guide rail 404. A second coordinate axis 406 is extended outward from the second slider 405, and the second coordinate axis 406 is vertically installed on the second slider 405. The second coordinate axis 406 is connected to the second slider 405.

[0027] Specifically, the direction of the first coordinate axis 403 may be the X-axis direction, the Y-axis direction or the Z-axis direction. When the direction of the first coordinate axis 403 is the Z-axis direction, the direction of the second coordinate axis 406 is the X-axis direction or the Y-axis direction. Figure 1 In the illustrated embodiment, the direction of the first coordinate axis 403 is the Z-axis direction, and the second coordinate axis 406 is the Y-axis direction.

[0028] The sliding assembly is provided with a third sliding rail 407 extending outward, and a third slider 408 is provided outwardly from the third sliding rail 407. The third slider 408 is vertically mounted on the third sliding rail 407 and connected to the third sliding rail 407 for moving the battery top cover to the bottom of the cleaning assembly.

[0029] The driving mechanism includes a first driving motor 301 and a second driving motor 302. The first driving motor 301 is vertically installed on the first coordinate axis 403, and the first driving motor 301 is connected to the first coordinate axis 403. The second driving motor 302 is vertically installed on the first sliding guide rail 401, and the second driving motor 302 is connected to the first slider 402, and is used to drive the first slider 402 to move horizontally.

[0030] The driving mechanism is extended outwardly to be provided with a third driving motor 303, and the third driving motor 303 is vertically installed on the second sliding guide rail 404. The third driving motor 303 is connected to the second slider 405, and is used to drive the second slider 405 to move laterally inside the second sliding guide rail 404. The driving mechanism is extended outwardly to be provided with a clamping cylinder 304, and the clamping cylinder 304 is vertically installed on the supporting assembly. The driving mechanism is extended outwardly to be provided with a limiting cylinder 305, and the limiting cylinder 305 is vertically installed on the supporting assembly.

[0031] Specifically, when the lithium battery top cover inside the clamp 107 needs to be further limited, the limiting cylinder 305 will limit the position of the battery top cover inside the clamp. After the position of the lithium battery top cover inside the clamp 107 is limited, the clamping cylinder 304 will fix the lithium battery top cover to prevent the lithium battery top cover from being displaced.

[0032] The supporting assembly includes a first bracket 101, a second bracket 102 and a fixed bracket 103. The first bracket 101 is installed at one end of the second bracket 102, the second bracket 102 is installed inside the first bracket 101, and the fixed bracket 103 is installed at one end of the third sliding guide rail 407. The first sliding guide rail 401 is located inside the first bracket 101, the second sliding guide rail 404 is located inside the second bracket 102, and the limiting cylinder 305 is located at the top of the fixed bracket 103.

[0033] A first placement rack 104 is extended outward from the support assembly, and the first placement rack 104 is vertically installed on the first coordinate axis 403. The first placement rack 104 is connected to the first coordinate axis 403, so that the first drive motor 301 can drive the first placement rack 104 to move longitudinally along the first coordinate axis 403. A second placement rack 105 is extended outward from the support assembly, and the second placement rack 105 is vertically installed on the second coordinate axis 406. The second placement rack 105 is connected to the second coordinate axis 406, so that the second drive motor 302 can drive the second placement rack 105 to move longitudinally along the second coordinate axis 406. The water tank 201 is located inside the first placement rack 104, and the vacuum body 1 is located inside the second placement rack 105.

[0034] A third placement rack 106 is provided extending outward from the third slider 408, and the third placement rack 106 is vertically installed on the third slider 408. The third placement rack 106 is connected to the third slider 408 and is used to drive the third placement rack 106 to move. A clamp 107 is provided extending outward from the third placement rack 106, and the clamp 107 is vertically installed on the third placement rack 106. The clamp 107 is connected to the third placement rack 106 and is used to clamp the lithium battery. The clamping cylinder 304 is located on the third placement rack 106, and the clamping cylinder 304 is connected to the clamp 107 and is used to clamp and adjust the clamp 107.

[0035] First, the lithium battery to be cleaned is placed in the clamp 107 on the third placement rack 106, and the clamp 107 is clamped and adjusted by the clamping cylinder 304 to ensure that the lithium battery is stable and immovable. At this time, the cleaning component (including the water tank 201 and the cleaning pipe 202) and the vacuum body 1 are in the initial position, waiting for the start command.

[0036] The drive mechanism starts to work. The second drive motor 302 drives the first slider 402 to move horizontally on the first sliding rail 401, and at the same time, the third drive motor 303 drives the second slider 405 to move horizontally on the second sliding rail 404. This two-way movement mechanism enables the support assembly (including the cleaning assembly and the vacuum body 1) to be accurately positioned just above the top cover of the lithium battery. In addition, the movement of the third slider 408 on the third sliding rail 407 accurately moves the lithium battery to the bottom of the cleaning assembly, ready for the cleaning operation.

[0037] The first drive motor 301 is started, driving the first placement rack 104 (with a water tank 201 installed) to move longitudinally on the first coordinate axis 403, so that the cleaning tube 202 is close to the surface of the lithium battery top cover. At this time, the cleaning liquid in the water tank 201 is sprayed out through the cleaning tube 202 to spray and clean the top cover surface. At the same time, the dust suction body 1 is driven by the second placement rack 105 and moves longitudinally along the second coordinate axis 406 to absorb dust and impurities generated during the cleaning process in real time to keep the cleaning environment clean. At the same time, in order to ensure the comprehensiveness and thoroughness of the cleaning, the cleaning component and the dust suction body 1 can be moved and cleaned in multiple directions according to the preset program or external signal input. By adjusting the movement trajectory and speed of the first and second placement racks 105, accurate cleaning and dust suction of different areas and angles of the lithium battery top cover can be achieved.

[0038] When the cleaning operation is completed, each driving motor stops working, and the cleaning assembly and the dust collection body 1 automatically reset to the initial position. At this time, the cleaned lithium battery can be removed from the third placement rack 106 by the release operation of the clamp 107, and the next process or storage is carried out.

[0039] It is obvious to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above, and that the present invention can be implemented in other specific forms without departing from the spirit or essential features of the present invention. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-restrictive, and the scope of the present invention is defined by the appended claims rather than the above description, and it is intended that all changes falling within the meaning and scope of the equivalent elements of the claims are included in the present invention. Any reference numeral in a claim should not be regarded as limiting the claim to which it relates.

[0040] In addition, it should be understood that although the present specification is described according to implementation modes, not every implementation mode contains only one independent technical solution. This description of the specification is only for the sake of clarity. Those skilled in the art should regard the specification as a whole. The technical solutions in each embodiment may also be appropriately combined to form other implementation modes that can be understood by those skilled in the art.

Claims

1. A lithium battery top cover cleaning mechanism, characterized in that: including a support assembly; A cleaning assembly, the cleaning assembly is vertically mounted on the supporting assembly, the cleaning assembly is connected to the supporting assembly, and is used to clean the battery top cover; A driving mechanism, the driving mechanism is vertically mounted on the supporting assembly, the driving mechanism is connected to the supporting assembly, and is used to support the driving assembly; A sliding assembly, wherein the sliding assembly is vertically mounted on the driving mechanism, and the sliding assembly is connected to the supporting assembly, and is used to drive the supporting assembly and the cleaning assembly to move; A dust suction body is vertically mounted on the support assembly, and the dust suction body is connected to the support assembly and is used to suck dust on the surface of the battery top cover.

2. A lithium battery top cover cleaning mechanism according to claim 1, characterized in that: The cleaning assembly includes a water tank and a cleaning pipe. The water tank is vertically installed on the supporting assembly. The cleaning pipe is vertically installed on the water tank. The cleaning pipe is connected to the water tank and is used to clean the battery top cover.

3. A lithium battery top cover cleaning mechanism according to claim 2, characterized in that: The sliding assembly includes a first sliding guide rail, a first slider and a first coordinate axis. The first sliding guide rail is vertically installed on the supporting assembly, the first slider is vertically installed on the first sliding guide rail, the first slider is slidably connected to the first sliding guide rail, the first coordinate axis is vertically installed on the first slider, and the first coordinate axis is connected to the first slider.

4. A lithium battery top cover cleaning mechanism according to claim 3, characterized in that: The sliding assembly is provided with a second sliding guide rail extending outward, the second sliding guide rail is vertically installed on the supporting assembly, the second sliding guide rail is provided with a second slider extending outward, the second slider is vertically installed on the second sliding guide rail, the second slider is slidably connected to the second sliding guide rail, the second slider is provided with a second coordinate axis extending outward, the second coordinate axis is vertically installed on the second slider, and the second coordinate axis is connected to the second slider.

5. A lithium battery top cover cleaning mechanism according to claim 4, characterized in that: The sliding assembly is provided with a third sliding rail extending outward, and a third slider is provided outwardly from the third sliding rail. The third slider is vertically mounted on the third sliding rail and is connected to the third sliding rail for moving the battery top cover to the bottom of the cleaning assembly.

6. A lithium battery top cover cleaning mechanism according to claim 5, characterized in that: The driving mechanism includes a first driving motor and a second driving motor. The first driving motor is vertically installed on the first coordinate axis and connected to the first coordinate axis. The second driving motor is vertically installed on the first sliding guide rail and connected to the first slider for driving the first slider to move laterally.

7. A lithium battery top cover cleaning mechanism according to claim 6, characterized in that: The driving mechanism is provided with a third driving motor extending outward, and the third driving motor is vertically installed on the second sliding guide rail. The third driving motor is connected to the second slider and is used to drive the second slider to move laterally inside the second sliding guide rail. The driving mechanism is provided with a clamping cylinder extending outward, and the clamping cylinder is vertically installed on the supporting assembly. The driving mechanism is provided with a limiting cylinder extending outward, and the limiting cylinder is vertically installed on the supporting assembly.

8. A lithium battery top cover cleaning mechanism according to claim 7, characterized in that: The support assembly includes a first bracket, a second bracket and a fixed bracket, the first bracket is installed at one end of the second bracket, the second bracket is installed inside the first bracket, the fixed bracket is installed at one end of the third sliding guide rail, the first sliding guide rail is located inside the first bracket, the second sliding guide rail is located inside the second bracket, and the limit cylinder is located on the top of the fixed bracket.

9. A lithium battery top cover cleaning mechanism according to claim 8, characterized in that: The support assembly is provided with a first placement rack extending outward, the first placement rack is vertically installed on the first coordinate axis, the first placement rack is connected to the first coordinate axis, so that the first drive motor can drive the first placement rack to move longitudinally along the first coordinate axis; the support assembly is provided with a second placement rack extending outward, the second placement rack is vertically installed on the second coordinate axis, the second placement rack is connected to the second coordinate axis, so that the second drive motor can drive the second placement rack to move longitudinally along the second coordinate axis; the water tank is located inside the first placement rack, and the dust collector body is located inside the second placement rack.

10. A lithium battery top cover cleaning mechanism according to claim 9, characterized in that: The third slider is provided with a third placement rack extending outward, and the third placement rack is vertically installed on the third slider. The third placement rack is connected to the third slider and is used to drive the third placement rack to move. The third placement rack is provided with a clamp extending outward, and the clamp is vertically installed on the third placement rack. The clamp is connected to the third placement rack and is used to clamp the lithium battery. The clamping cylinder is located on the third placement rack, and the clamping cylinder is connected to the clamp and is used to clamp and adjust the clamp.

Citation Information

Patent Citations

  • Cleaning device for lithium battery

    CN215745145U