Lithium battery processing and transferring structure
By designing the lithium battery processing and transportation structure, using a motor drive screw to adjust the height of the guide plate and limit block, the automatic transportation of lithium batteries is achieved, and the problem of time-consuming and labor-intensive manual handling during the lithium battery processing is solved, improving efficiency and saving manpower.
Patent Information
- Application Number
- CN202422513196.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-17
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2034-10-17
AI Technical Summary
During the process of lithium battery processing, the transport structure requires manual handling by workers, which is time-consuming and labor-intensive, and lacks efficient automation solutions.
A lithium battery processing and transportation structure is designed, using a transfer box, support, guide plate, screw rod and motor driven structure. The motor drives the screw rod to rotate and adjust the height of the guide plate, and combines the handrail and limit block to realize the automatic transportation of the box and reduce manpower operation.
It realizes the automatic transportation of lithium batteries, saves manpower, improves loading and unloading efficiency, and reduces the labor intensity of workers.
Smart Images

Figure CN223072531U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of lithium battery processing, and particularly relates to a lithium battery processing and transferring structure. Background Art
[0002] A lithium battery is a battery with a lithium metal or lithium alloy as the anode material and a non-aqueous electrolyte solution. The lithium battery includes a cover structure, and the cover structure includes a positive electrode post, a conductive sheet, a top cover sheet, and a plastic cover plate. The conductive sheet is connected to the positive electrode post, the positive electrode post is insulated and assembled with the top cover sheet, and the plastic cover plate is connected to the top cover sheet. During the lithium battery processing, a transferring structure is needed to transfer the lithium battery. In the processes of loading and unloading, workers need to manually carry it, which is time-consuming and laborious. Therefore, a lithium battery processing and transferring structure is proposed to facilitate loading and unloading and save labor. Content of the Utility Model
[0003] Aiming at the problems in the prior art, the utility model provides a lithium battery processing and transferring structure.
[0004] The technical solution adopted by the utility model to solve its technical problems is a lithium battery processing and transferring structure, which includes a transfer box. Two supports, a plurality of grooves, a plurality of limit blocks, and a plurality of T-shaped insertion blocks are arranged on one side of the transfer box. Boxes are arranged in a plurality of the grooves. First casters are installed at the four corners of the bottom end of the transfer box. Second casters are installed at the four corners of the bottom end of a plurality of the boxes. Handles and stoppers are fixed on the outer walls of a plurality of the boxes. Through grooves for the bottom ends of the insertion blocks to pass through are formed in a plurality of the stoppers and the limit blocks. The two supports and the plurality of limit blocks are welded to the transfer box. A guide plate is arranged between the two supports. Vertical sliding grooves adapted to the guide plate are arranged on the opposite side walls of the two supports. Lead screws are rotatably connected in the two supports. Two screw holes adapted to the lead screws are formed in the guide plate. Pulley wheels are fixed on the two lead screws. The two pulley wheels are connected by a belt. A motor is fixed at the top end of one of the supports. The output shaft of the motor is connected to the lead screw close to the motor through a coupling.
[0005] By adopting the above technical solution, the output shaft of the motor drives the lead screw to rotate. Under the cooperation of the belt and the pulley wheels, the two lead screws rotate simultaneously, which is convenient for adjusting the height of the guide plate as needed. Pull out the insertion block and pull out the box. The setting of the guide plate is beneficial to transfer the box from the transfer box to the ground or the lithium battery production equipment. The box can store the lithium battery to be transferred. Push the box containing the lithium battery. The setting of the guide plate is beneficial to transfer the box on the ground or the equipment to the groove on one side of the transfer box. Insert the bottom end of the insertion block through the stopper and insert it into the limit block, which can prevent the box from sliding. Push the transfer box to transfer the lithium battery, without the need for workers to carry the box, saving labor.
[0006] Specifically, protective pads are fixed inside each of the multiple boxes.
[0007] By adopting the above technical solution, the setting of the protective pad can protect the lithium battery.
[0008] Specifically, a handrail is provided on one side of the transfer box away from the support. Connecting blocks are fixed on both sides of the handrail. Limit bolts are provided on both sides of the handrail. Threaded holes adapted to the limit bolts are provided on both of the two connecting blocks. Multiple slots adapted to the limit bolts are provided on both sides of the transfer box.
[0009] By adopting the above technical solution, slide the handrail vertically and screw the ends of the two limit bolts into the slots on both sides of the transfer box, and the height of the handrail can be adjusted as needed, which is convenient for workers to hold.
[0010] Specifically, an anti-slip sleeve is fixed on the handrail.
[0011] By adopting the above technical solution, the setting of the anti-slip sleeve is beneficial to holding the handrail.
[0012] Specifically, a plurality of partitions made of rubber are provided inside each of the multiple boxes.
[0013] By adopting the above technical solution, the setting of the partitions facilitates the separation of the lithium batteries inside the boxes.
[0014] The beneficial effects of the present utility model:
[0015] (1) For a lithium battery processing and transfer structure of the present utility model, the output shaft of the motor drives the lead screw to rotate. With the cooperation of the belt and the pulley, the two lead screws rotate simultaneously, which is convenient for adjusting the height of the guide plate as needed. Pull out the plug block and pull out the box body. The setting of the guide plate facilitates the transfer of the box body from the transfer box to the ground or the lithium battery production equipment. The box body can store the lithium batteries to be transferred. Push the box body containing the lithium batteries. The setting of the guide plate facilitates the transfer of the box body on the ground or the equipment to the groove on one side of the transfer box. Pass the bottom end of the plug block through the stopper and insert it into the limit block, which can prevent the box body from sliding. Push the transfer box to transfer the lithium batteries, eliminating the need for workers to carry the box body and saving manpower.
[0016] (2) For a lithium battery processing and transfer structure of the present utility model, slide the handrail vertically and screw the ends of the two limit bolts into the slots on both sides of the transfer box, and the height of the handrail can be adjusted as needed, which is convenient for workers to hold. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] The following further illustrates the present utility model in conjunction with the drawings and embodiments.
[0018] Figure 1 is a schematic structural diagram of the present utility model;
[0019] Figure 2 Structural schematic diagram of the box body of the present utility model;
[0020] Figure 3 Of the present utility model Figure 1 Enlarged view of the structure at position A in;
[0021] Figure 4 Of the present utility model Figure 1 Enlarged view of the structure at position B in;
[0022] Figure 5 Of the present utility model Figure 1 Enlarged view of the structure at position C in.
[0023] In the figure: 1, transfer box; 2, support; 3, guide plate; 4, box body; 40, partition; 5, handrail; 50, connecting block; 51, limit bolt; 6, anti-slip sleeve; 7, protective pad; 8, handle; 9, stop block; 10, limit block; 11, insertion block; 12, motor; 13, lead screw; 14, pulley; 15, belt. Specific embodiments
[0024] In order to make the technical means, creative features, achieved purposes and effects realized by the present utility model easy to understand, the present utility model will be further described below in conjunction with specific embodiments.
[0025] In order to facilitate the loading and unloading of the box body 4 and save manpower, as an embodiment of the present utility model, as Figures 1 to 4 shown, a lithium battery processing and transfer structure of the present utility model includes a transfer box 1. Two supports 2, multiple grooves, multiple limit blocks 10 and multiple T-shaped insertion blocks 11 are provided on one side of the transfer box 1. Box bodies 4 are provided in multiple grooves. First casters are installed at the four corners of the bottom end of the transfer box 1, and second casters are installed at the four corners of the bottom ends of the multiple box bodies 4. Handles 8 and stop blocks 9 are welded and fixed on the outer walls of the multiple box bodies 4. Through grooves for the bottom ends of the insertion blocks 11 to pass through are provided on the multiple stop blocks 9 and limit blocks 10. The two supports 2 and the multiple limit blocks 10 are welded to the transfer box 1. A guide plate 3 is provided between the two supports 2. Vertical sliding grooves adapted to the guide plate 3 are provided on the opposite side walls of the two supports 2. Lead screws 13 are rotatably connected in the two supports 2. Two screw holes adapted to the lead screws 13 are provided on the guide plate 3. Pulleys 14 are welded and fixed on the two lead screws 13. The two pulleys 14 are connected by a belt 15. A motor 12 is fixed to the top end of one of the supports 2 by bolts. The output shaft of the motor 12 is connected to the lead screw 13 close to the motor 12 through a coupling.
[0026] During use, the output shaft of the motor 12 drives the lead screw 13 to rotate. With the cooperation of the belt 15 and the belt pulley 14, the two lead screws 13 rotate simultaneously, facilitating the adjustment of the height of the guide plate 3 as needed. Pull out the insertion block 11 and pull the box body 4. The setting of the guide plate 3 facilitates the transfer of the box body 4 from the transfer box 1 to the ground or the lithium battery production equipment. The box body 4 can store the lithium batteries to be transferred. Push the box body 4 containing the lithium batteries. The setting of the guide plate 3 facilitates the transfer of the box body 4 on the ground or the equipment to the groove on one side of the transfer box 1. Insert the bottom end of the insertion block 11 through the stop block 9 and into the limit block 10, which can prevent the box body 4 from sliding. Push the transfer box 1 to transfer the lithium batteries, eliminating the need for workers to carry the box body 4 and saving manpower.
[0027] For the protection of lithium batteries, exemplarily, as Figure 2 shown, a protective pad 7 is fixedly attached inside each of the multiple box bodies 4 by an adhesive.
[0028] For the convenience of pushing the transfer box 1, exemplarily, as Figure 1 、 Figure 5 shown, a handrail 5 is provided on the side of the transfer box 1 away from the support 2. Connecting blocks 50 are welded and fixed on both sides of the handrail 5. Limit bolts 51 are provided on both sides of the handrail 5. Threaded holes adapted to the limit bolts 51 are formed in both of the two connecting blocks 50. Multiple slots adapted to the limit bolts 51 are formed on both sides of the transfer box 1.
[0029] During use, slide the handrail 5 vertically and screw the ends of the two limit bolts 51 into the slots on both sides of the transfer box 1, enabling the adjustment of the height of the handrail 5 as needed, facilitating the worker to hold and push the transfer box 1.
[0030] For the convenience of holding the handrail 5, exemplarily, as Figure 1 shown, an anti-slip sleeve 6 is fixedly attached to the handrail 5 by an adhesive.
[0031] For the separation of lithium batteries, exemplarily, as Figure 2 shown, multiple rubber partitions 40 are provided inside each of the multiple box bodies 4. The partitions 40 are neither connected to the protective pad 7 nor to the box body 4. The partitions 40 are directly placed in the box body 4, and the position of the partitions 40 inside the box body 4 can be adjusted as needed.
[0032] When the present utility model is in use, the output shaft of the motor 12 drives the lead screw 13 to rotate. With the cooperation of the belt 15 and the belt pulley 14, the two lead screws 13 rotate simultaneously, facilitating the adjustment of the height of the guide plate 3 as needed. Pull out the insertion block 11 and pull the box body 4. The setting of the guide plate 3 facilitates the transfer of the box body 4 from the transfer box 1 to the ground or the lithium battery production equipment. The box body 4 can store the lithium batteries to be transferred;
[0033] Push the box body 4 containing the lithium battery. The setting of the guide plate 3 facilitates the transfer of the box body 4 on the ground or the device to the groove on one side of the transfer box 1. The bottom end of the insertion block 11 passes through the stop block 9 and is inserted into the limit block 10, which can prevent the box body 4 from sliding;
[0034] Vertically slide the handrail 5 and screw the ends of the two limit bolts 51 into the slots on both sides of the transfer box 1. The height of the handrail 5 can be adjusted as needed, which is convenient for workers to hold and push the transfer box 1, thereby transporting the lithium battery. There is no need for workers to carry the box body 4, saving manpower.
[0035] The above shows and describes the basic principles, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited by the above embodiments. The above embodiments and the descriptions in the specification only illustrate the principles of the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and these changes and improvements all fall within the scope of the present invention claimed. The scope of the present invention claimed is defined by the appended claims and their equivalents. The content not described in detail in the present invention belongs to the prior art well known to those skilled in the art.
Claims
1. A lithium battery processing and transfer structure, characterized in that, It includes a transfer box (1). On one side of the transfer box (1), there are two supports (2), multiple grooves, multiple limit blocks (10), and multiple T-shaped insertion blocks (11). Boxes (4) are arranged in multiple grooves. At the four corners of the bottom end of the transfer box (1), first casters are installed. At the four corners of the bottom end of each of the multiple boxes (4), second casters are installed. Handles (8) and stoppers (9) are fixed on the outer walls of the multiple boxes (4). Through grooves for the bottom ends of the insertion blocks (11) to pass through are formed in the multiple stoppers (9) and limit blocks (10). The two supports (2) and the multiple limit blocks (10) are welded to the transfer box (1). A guide plate (3) is arranged between the two supports (2). Vertical sliding grooves adapted to the guide plate (3) are arranged on the opposite side walls of the two supports (2). Lead screws (13) are rotatably connected in the two supports (2). Two screw holes adapted to the lead screws (13) are formed in the guide plate (3). Pulley wheels (14) are fixed on the two lead screws (13). The two pulley wheels (14) are connected by a belt (15). A motor (12) is fixed to the top end of one of the supports (2). The output shaft of the motor (12) is connected to the lead screw (13) close to the motor (12) through a coupling.
2. The lithium battery processing and transfer structure according to claim 1, characterized in that, A protective pad (7) is fixed in each of the multiple boxes (4).
3. A lithium battery processing and transfer structure according to claim 1, characterized in that, An armrest (5) is arranged on the side of the transfer box (1) away from the support (2). Connecting blocks (50) are fixed on both sides of the armrest (5). Limit bolts (51) are arranged on both sides of the armrest (5). Screw holes adapted to the limit bolts (51) are formed in the two connecting blocks (50). Multiple slots adapted to the limit bolts (51) are formed on both sides of the transfer box (1).
4. A lithium battery processing and transfer structure according to claim 3, characterized in that, An anti-slip sleeve (6) is fixed on the armrest (5).
5. A lithium battery processing and transfer structure according to claim 1, characterized in that, Multiple partitions (40) made of rubber are arranged in each of the multiple boxes (4).