Jacking and lifting integrated battery piece material box feeding device
By integrating a lifting drive motor, a movable conveyor line, and a lifting module into a single-unit battery cell feeding device, the problems of bumping and stopping in existing feeding devices have been solved, achieving efficient multi-cell feeding and improving feeding efficiency and smoothness of conveying.
Patent Information
- Application Number
- CN202423229450.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-26
- Publication Date
- 2026-01-13
- Estimated Expiration
- 2034-12-26
AI Technical Summary
The existing battery cell feeding device suffers from bumps and stops, affecting the smoothness of the conveying process, and has low feeding efficiency, making it unable to process multiple cells simultaneously.
Design a lifting and jacking integrated battery cell feeding device, which integrates a lifting drive motor, a movable conveyor line and a lifting module to achieve simultaneous feeding of multiple cells. By connecting the movable conveyor line with the cell feeding conveyor line and the recycling conveyor line, and by using a positioning module and a lifting module, stable conveying and efficient feeding are ensured.
The integrated design of the material box feeding system reduces manufacturing costs and significantly improves feeding efficiency. It can handle multiple material boxes simultaneously, avoiding bumps and stops and improving the smoothness of conveying.
Smart Images

Figure CN223798657U_ABST
Abstract
Description
[Technical Field]
[0001] This utility model belongs to the field of battery cell manufacturing technology, and in particular relates to a lifting and hoisting integrated battery cell feeding device. [Background Technology]
[0002] During the production process of solar cells, the material box containing solar cells needs to be transported to the cell picking station by the material box feeding device. Then, the cell picking robot picks up the solar cells from the material box and loads them into the processing device.
[0003] Existing patent CN117361052A discloses a solar cell processing device, further disclosing a solar cell feeder, which includes a feeding conveyor, a transition conveyor, and a cell-retrieving conveyor. The feeding conveyor includes an upper conveyor line and a lower conveyor line; the transition conveyor includes a transition conveyor line and is equipped with a lifting function to connect with the upper and lower conveyor lines; and the cell-retrieving conveyor is equipped with a conveying function and a lifting function. In this device, the feeder section is divided into three segments: a feeding conveyor, a lifting conveyor, and a feeding conveyor. Between each adjacent conveyor segment, the carrier experiences a certain degree of bumping and stopping, which poses a risk of microcracks in the solar cells and affects the smoothness of the feeder's transport. Furthermore, this device can only feed one feeder at a time at the feeding position, resulting in slow feeding efficiency.
[0004] Therefore, it is necessary to provide a new integrated lifting and jacking battery cell feeding device to solve the above-mentioned technical problems. [Utility Model Content]
[0005] The main objective of this invention is to provide a lifting and jacking integrated battery cell feeding device to solve the above-mentioned technical problems.
[0006] This utility model achieves the above-mentioned objective through the following technical solution: a lifting and jacking integrated battery cell feeding device, which includes a feeding conveyor line, a feeding recycling conveyor line arranged parallel to the feeding conveyor line below the feeding conveyor line, and a feeding mechanism arranged at the end of the feeding conveyor line; the feeding mechanism includes a first motor, a second support plate driven by the first motor to move up and down, a movable conveyor line arranged on the second support plate, and a lifting module fixed on the second support plate and located below the movable conveyor line.
[0007] Furthermore, when the movable conveyor line moves to a high position, it connects with the material box feeding conveyor line, and when it moves to a low position, it connects with the material box recycling conveyor line.
[0008] Furthermore, the lifting module includes a second motor fixed on the second support plate and a lifting plate driven by the second motor to move up and down and extend into the material box to lift the stacked battery cells upward as a whole.
[0009] Furthermore, the active conveyor line can carry N material boxes at a time, and the lifting module is provided with N sets, corresponding to N material boxes, where N is an integer and greater than or equal to 2.
[0010] Furthermore, the second support plate is also provided with a positioning module for positioning the material boxes on the movable conveyor line.
[0011] Furthermore, the positioning module includes a positioning stop at the end of the movable conveyor line and a clamping assembly at the beginning of the movable conveyor line.
[0012] Furthermore, the clamping assembly includes a third cylinder and a clamping block that is driven by the third cylinder to move parallel to the conveying direction of the active conveyor line.
[0013] Furthermore, the first motor is fixed on the second support plate, and its rotating end is provided with a drive gear. The feeding mechanism also includes a rack that extends vertically and meshes with the drive gear.
[0014] Furthermore, the second support plate includes a horizontal support plate and a vertically arranged support plate. The movable conveyor line and the lifting module are both arranged on the horizontal support plate, and the first motor is arranged on the support plate. The feeding mechanism also includes a pair of slide rails arranged parallel to the rack, and at least a pair of sliders that cooperate with the slide rails are arranged on the support plate.
[0015] Furthermore, the material box is provided with two independent material bins, and each material box is provided with two sets of lifting modules below it, with each lifting module corresponding to one independent material bin.
[0016] Compared with the prior art, the advantages of this utility model of a lifting and jacking integrated battery cell feeding device are as follows: The feeding mechanism includes a lifting drive motor, a movable conveyor line, and a jacking module. The lifting drive motor drives the movable conveyor line to connect with the battery cell feeding conveyor line at a high position and with the battery cell recycling conveyor line at a low position. The movable conveyor line is used for inputting and outputting battery cells. The jacking module is used to lift the battery cells in the battery cell to a set height. Integrating the lifting, conveying, and jacking functions into one mechanism achieves integrated design and reduces manufacturing costs. The movable conveyor line of the feeding mechanism can simultaneously carry multiple battery cells, and with multiple jacking modules, multiple battery cells can be fed simultaneously, greatly improving feeding efficiency. [Attached Image Description]
[0017] Figure 1 This is a three-dimensional structural diagram of an embodiment of the present utility model;
[0018] Figure 2 This is a side view of the feeding mechanism in an embodiment of the present utility model;
[0019] Figure 3 This is a partial three-dimensional structural diagram of the feeding mechanism in an embodiment of this utility model;
[0020] Figure 4 This is a partial exploded structural diagram of the feeding mechanism in an embodiment of this utility model;
[0021] The numbers in the image represent:
[0022] 100-Integrated lifting and lowering battery cell feeding device;
[0023] 200-material box;
[0024] 1-Material box feeding conveyor line; 2-Material box recycling conveyor line;
[0025] 3-Feeding mechanism, 31-First motor, 32-Second support plate, 321-Horizontal support plate, 322-Supporting vertical plate, 33-Movable conveyor line, 34-Lifting module, 341-Second motor, 342-Lifting support plate, 35-Positioning module, 351-Positioning stop, 352-Pressure assembly, 3521-Third cylinder, 3522-Pressure block, 36-Drive gear, 37-Rack, 38-Slide rail, 39-Slider.
Detailed Implementation Methods
[0026] Example 1:
[0027] Please refer to Figures 1-4 This embodiment is a lifting and jacking integrated battery cell feeding device 100, which includes a feeding conveyor line 1, a feeding recycling conveyor line 2 arranged parallel to the feeding conveyor line 1 below the feeding conveyor line 1, and a feeding mechanism 3 arranged at the end of the feeding conveyor line 1.
[0028] Material box feeding conveyor line 1 is used to input fully loaded material boxes 200, and material box recycling conveyor line 2 is used to output empty material boxes for recycling.
[0029] The feeding mechanism 3 includes a first motor 31, a second support plate 32 driven by the first motor 31 to move up and down, a movable conveyor line 33 disposed on the second support plate 32, and a lifting module 34 fixed on the second support plate 32 and located below the movable conveyor line 33. When the movable conveyor line 33 moves to a high position, it connects with the material box feeding conveyor line 1, and when it moves to a low position, it connects with the material box recycling conveyor line 2.
[0030] The lifting module 34 includes a second motor 341 fixed on the second support plate 32 and a lifting plate 342 driven by the second motor 341 to move up and down and extend into the material box 200 to lift the stacked battery cells upward as a whole.
[0031] To improve material feeding efficiency, the movable conveyor line 33 can carry N material boxes 200 at a time, and the lifting module 34 is correspondingly set with N groups, each corresponding to N material boxes 200, where N is an integer greater than or equal to 2. In this embodiment, N equals 3.
[0032] To ensure the stable position of multiple material boxes 200 on the movable conveyor line 33, a positioning module 35 is also provided on the second support plate 32 to position the multiple sets of material boxes 200 on the movable conveyor line 33. The positioning module 35 includes a positioning stop 351 located at the end of the movable conveyor line 33 and a clamping assembly 352 located at the beginning of the movable conveyor line 33. The clamping assembly 352 includes a third cylinder 3521 and a clamping block 3522 driven by the third cylinder 3521 to move parallel to the conveying direction of the movable conveyor line 33. The multiple material boxes 200 are arranged one after another on the movable conveyor line 33, and the adjacent two battery cell material boxes are limited by the bottom plate of the material box.
[0033] In this embodiment, the first motor 31 is fixed on the second support plate 32, and its rotating end is provided with a drive gear 36. The feeding mechanism 3 also includes a vertically extending rack 37 that meshes with the drive gear 36. The second support plate 32 includes a horizontal support plate 321 and a vertically arranged support plate 322. The movable conveyor line 33 and the lifting module 34 are both arranged on the horizontal support plate 321, and the first motor 31 is arranged on the support plate 32. The feeding mechanism 3 also includes a pair of slide rails 38 arranged parallel to the rack 37, and at least a pair of sliders 39 that cooperate with the slide rails 38 are provided on the support plate 322.
[0034] In this embodiment, the material box 200 is provided with two independent material bins, and each material box 200 is provided with two sets of lifting modules 34, with each lifting module 34 corresponding to one material bin. Each material box 200 is provided with two sets of lifting modules 34, which independently lift the stacks of solar cells in the two independent material bins. Compared with one lifting module 34 lifting two stacks of solar cells, this can eliminate the inconsistent lifting height caused by thickness errors between the two stacks of solar cells, and avoid the problems of incomplete or over-pressure adsorption when adsorbing solar cells.
[0035] The working process of the integrated lifting and lowering battery cell feeding device 100 in this embodiment is as follows: several fully loaded battery cells 200 are input into the feeding conveyor line 1, and three battery cells 200 are received at a high position by the movable conveyor line 33. Then, the positioning module 35 positions and fixes them. The lifting module 34 lifts the battery cells in the three battery cells upward to a set height, so as to achieve simultaneous feeding of the three battery cells. After all the battery cells are removed, the movable conveyor line 33 is lowered to a low position, and the empty battery cells are transported to the battery cell recycling conveyor line 2 through the movable conveyor line 33. The battery cells are then output through the battery cell recycling conveyor line 2 for recycling.
[0036] The above descriptions are merely some embodiments of this utility model. For those skilled in the art, various modifications and improvements can be made without departing from the inventive concept of this utility model, and all such modifications and improvements fall within the protection scope of this utility model.
Claims
1. A lifting and jacking integrated battery cell feeding device, characterized in that: It includes a hopper feeding conveyor line, a hopper recycling conveyor line arranged parallel to the hopper feeding conveyor line below it, and a feeding mechanism located at the end of the hopper feeding conveyor line; the feeding mechanism includes a first motor, a second support plate driven by the first motor to move up and down, a movable conveyor line arranged on the second support plate, and a lifting module fixed on the second support plate and located below the movable conveyor line.
2. The integrated lifting and lowering battery cell feeding device as described in claim 1, characterized in that: When the movable conveyor line moves to a high position, it connects with the material box feeding conveyor line; when it moves to a low position, it connects with the material box recycling conveyor line.
3. The integrated lifting and lowering battery cell feeding device as described in claim 1, characterized in that: The lifting module includes a second motor fixed on the second support plate and a lifting plate driven by the second motor to move up and down and extend into the material box to lift the stacked battery cells as a whole upward.
4. The integrated lifting and lowering battery cell feeding device as described in claim 1, characterized in that: The active conveyor line can carry N material boxes at a time, and the lifting module is set with N sets, corresponding to N material boxes, where N is an integer and greater than or equal to 2.
5. The integrated lifting and lowering battery cell feeding device as described in claim 1, characterized in that: The second support plate is also provided with a positioning module for positioning the material boxes on the moving conveyor line.
6. The integrated lifting and lowering battery cell feeding device as described in claim 5, characterized in that: The positioning module includes a positioning stop at the end of the movable conveyor line and a clamping assembly at the beginning of the movable conveyor line.
7. The integrated lifting and lowering battery cell feeding device as described in claim 6, characterized in that: The clamping assembly includes a third cylinder and a clamping block that is driven by the third cylinder to move parallel to the conveying direction of the movable conveyor line.
8. The integrated lifting and lowering battery cell feeding device as described in claim 1, characterized in that: The first motor is fixed on the second support plate, and its rotating end is provided with a drive gear. The feeding mechanism also includes a rack that extends vertically and meshes with the drive gear.
9. The integrated lifting and lowering battery cell feeding device as described in claim 8, characterized in that: The second support plate includes a horizontal support plate and a vertically arranged support plate. The movable conveyor line and the lifting module are both arranged on the horizontal support plate, and the first motor is arranged on the support plate. The feeding mechanism also includes a pair of slide rails arranged parallel to the rack, and at least a pair of sliders that cooperate with the slide rails are arranged on the support plate.
10. The integrated lifting and lowering battery cell feeding device as described in claim 1, characterized in that: The material box is provided with two independent material bins, and each material box is provided with two sets of lifting modules below it. Each lifting module corresponds to one independent material bin.