Lifting, receiving and adjusting device for collecting automobile battery polar plate
By designing a lifting and adjusting device for receiving automotive battery plates, and utilizing a combination of a support component and a receiving and adjusting device, the problem of uneven plate stacking was solved, achieving precise stacking and neat output of the plates, and improving the operating efficiency and sensitivity of the equipment.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-11
- Publication Date
- 2026-04-07
AI Technical Summary
Battery plates are prone to becoming uneven during stacking, which affects the efficiency and quality of subsequent equipment operations.
A lifting and adjusting device for receiving automotive battery plates is adopted, comprising a support component and a receiving and adjusting device. Through the cooperation of a lifting driver, a photoelectric sensor and a cylinder, the precise stacking and neat output of the plates are achieved.
This improved the neatness of the battery plates stacking, enhanced the operating efficiency and sensitivity of the equipment, and ensured the smooth progress of subsequent operations.
Smart Images

Figure CN224091187U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of lifting and adjusting devices for receiving battery plates, and in particular to a lifting and adjusting device for receiving automotive battery plates. Background Technology
[0002] The two electrodes of a chemical power source consist of an active material and a "current collector" for support and conduction. They are generally sheet-like porous bodies and are called electrodes.
[0003] During battery production, electrode plates require a collection process. In early battery manufacturing, electrode plate collection relied primarily on manual labor, which was inefficient and prone to errors. Manual operation could not guarantee the consistency of the electrode plates, affecting battery performance. With the development of industrial automation technology, automated electrode plate collection machines have gradually replaced manual operation, improving production efficiency and product quality. The application of automation technology makes electrode plate collection more precise and reduces interference from human factors.
[0004] During the operation of the receiving machine, the front conveyor line connects to the drying chamber, and after conveying the electrode plates through dual conveyor lines, the end connection point is guided by rollers to throw the electrode plates onto the receiving platform at the receiving end of the receiving conveyor line. The electrode plates are then stacked on the receiving platform, placed onto the receiving conveyor line, and output to the next stage, thus completing the cycle. During this electrode plate stacking process, the electrode plates thrown from the end of the front conveyor line often exhibit uneven stacking on the receiving platform, affecting subsequent operation of the equipment. Utility Model Content
[0005] The present invention aims to overcome the shortcomings of the existing technology in that the battery plates are not stacked neatly enough, and provides a lifting and adjusting device for receiving automotive battery plates that is conducive to improving the neatness of battery plate stacking.
[0006] To achieve the above objectives, the present invention adopts the following technical solution:
[0007] A lifting and adjusting device for receiving automotive battery plates, comprising:
[0008] Base;
[0009] The conveyor body has its bottom detachably connected to the base, its top is a conveying area that conveys materials from front to back, its front end is a receiving end, and its rear end is a discharging end.
[0010] A lifting and receiving device is located inside the receiving end and includes a lifting drive. The lifting drive is located below the conveying area and is detachably connected to the inner side wall of the conveying body. A material support component is provided on the output end of the lifting drive. One end of the material support component is detachably connected to the lifting drive, and the other end of the material support component passes through the top of the conveying body and is located above the conveying area. The end of the material support component located above the conveying area is the material support end. The material support component is vertically connected to the conveying body under the drive of the lifting drive.
[0011] A receiving adjustment device is suspended above the receiving end of the conveyor body and is distributed in a front-to-back manner with the lifting receiving device. The receiving adjustment device includes a mounting platform, which is suspended above the conveying area. The mounting platform is slidably connected to the conveyor body on its left and right sides. The top of the mounting platform is provided with a central pusher corresponding to one side of the material support. The central pusher is slidably connected to the mounting platform in the left-right direction. The bottom of the mounting platform is provided with side pushers corresponding to the front side of the material support and the other side of the material support, respectively. In the initial state, the lifting and receiving device corresponds to the end of the front-end conveyor line. The front-end conveyor line guides the electrode plates to the receiving end of the material support through roller transition, and they are stacked on the receiving end. When the required number of electrode plates are stacked, the lifting driver drives the material support to descend, preparing to place the stacked electrode plates in the conveying area of the conveyor body for conveying. Before being conveyed out, the stacked electrode plates are tidied on one side of the receiving end by the sliding left and right direction of the central pusher. At the same time, the side pushers tidy up the front side and the corresponding other side of the electrode plates on the receiving end, so that the electrode plates are stacked neatly before being output. This achieves the purpose of improving the neatness of battery electrode plate stacking and facilitating subsequent operation of the equipment.
[0012] Preferably, the bottom of the conveyor body is detachably connected to the base. Two parallel transmission assemblies distributed in the left-right direction are arranged within the conveying area. Each transmission assembly includes two parallel conveyor chains. A servo motor is mounted outside the conveyor body and is detachably connected to the outer wall of the conveyor body. Driven by the servo motor, the conveyor chains are conveyed from the receiving end to the discharging end. There are two lifting receiving devices, located between the two conveyor chains of the two transmission assemblies and distributed left-right. The dual transmission assemblies achieve synchronous transmission under the drive of the servo motor, improving work efficiency. The two lifting receiving devices, located between the two conveyor chains of the two transmission assemblies, facilitate the placement of the electrode plate on the corresponding conveyor chains after the lifting receiving devices descend, enabling seamless docking between the lifting receiving devices and the conveyor chains.
[0013] Preferably, the output end of the lifting driver is provided with a mounting base, which is located below the conveyor chain. The material support component includes two parallel pallets. One end of each pallet is vertically fixed to the mounting base, and the material support end is located at the other end of the pallet. The other end of the pallet passes through the gap between the two conveyor chains on the corresponding transmission assembly and is located above the conveyor chain. The pallets are connected to the conveyor body vertically under the drive of the lifting driver. Two sets of photoelectric sensors are provided on the left and right inner walls of the conveyor body. The two sets of photoelectric sensors are installed vertically on the conveyor body, and the photoelectric sensors correspond to the mounting base on the same side. During material reception, the material-bearing end of the pallet is positioned above the conveyor chain and corresponds to the end of the front-end conveyor line. The electrode plates ejected from the end of the front-end conveyor line are continuously stacked on the material-bearing end. When the required number of electrode plates are stacked on the material-bearing end, the control system controls the lifting driver to operate. The lifting driver drives the pallet to descend until the pallet places the stacked electrode plates on its material-bearing end onto the two conveyor chains on the corresponding transmission components. The stacked electrode plates are output through the conveyor chains, and the control system again controls the lifting driver to drive the pallet to rise to the initial position. Two sets of photoelectric sensors distributed vertically on the left and right inner walls of the conveyor body sense the vertical position of the mounting base and provide signals to the control system, which helps to improve the timeliness and sensitivity of the response.
[0014] Preferably, a gantry frame is mounted on the top of the conveyor body, and the mounting platform and the gantry frame are arranged in a front-to-back manner. The left and right sides of the opening at the bottom of the gantry frame are slidably connected to the left and right outer walls of the top of the conveyor body along the conveying direction of the conveyor chain. A symmetrically distributed cylinder is detachably mounted on both sides of the gantry frame. A guide plate is provided on the telescopic end of the cylinder. The guide plate moves left and right under the drive of the cylinder. The guide plate is parallel to the pallet and is located above the conveyor chain and corresponds to the material-receiving end of the pallet. The pallet is located between the guide plates on the two cylinders. Two photoelectric sensors are provided on the top of the gantry frame, and the two photoelectric sensors are respectively vertically aligned with the pallets on the two lifting and receiving devices. The gantry frame and the conveyor body are slidably connected front and rear, allowing the operator to adjust the position of the gantry frame according to actual needs, thus improving practicality. The control system controls the operation of cylinder one to adjust the position of the guide plate, thereby limiting the side of the electrode plates thrown onto the pallet, facilitating the upward stacking of the electrode plates on the pallet. According to the required number of electrode plates to be stacked, photoelectric sensor two is used to sense the stacking height of the electrode plates on the pallets of the two lifting receiving devices. When a certain number are stacked, photoelectric sensor two transmits a signal to the control system, which then controls the lifting driver to drive the pallet down, thereby causing the stacked electrode plates to descend. The control system has high sensitivity.
[0015] Preferably, the top of the gantry frame is equipped with two cooling fans, which are detachably connected to the gantry frame. The air outlets of the two cooling fans are respectively aligned vertically with the material-supporting ends on the two lifting and receiving device trays. The cooling fans facilitate heat dissipation for the electrode plates on the two lifting and receiving device trays.
[0016] Preferably, the top of the gantry frame is provided with two sets of limiting members, each corresponding to one of the two lifting and receiving devices and one of the mounting plates on the two cylinders. The lifting and receiving devices are located in front of the limiting members, and the mounting plates are located behind the limiting members. Each limiting member includes two limiting rods, each corresponding to one of the two pallets on the corresponding lifting and receiving device. Each limiting rod is inserted between two adjacent receiving strips. One end of the limiting rod is fixedly connected to the top of the gantry frame, and the other end is suspended inside the gantry frame and above the conveyor chain. The design of the two limiting rods limits the rear side of the electrode plates on the pallets. Under the combined limiting action of the corresponding limiting rods and guide plates, the electrode plates on the pallets of the two lifting and receiving devices can be stacked upwards in an orderly manner.
[0017] Preferably, there are two pushers, each corresponding to one of the two lifting and receiving devices. The guide plate is located on one side of the material support and is vertically away from the conveyor chain. The pushers are located on the opposite side of the material support and are vertically close to the conveyor chain. Each pusher includes a second cylinder, which is detachably connected to the top of the mounting platform. The second cylinder has a connecting rod, one end of which is detachably connected to the telescopic end of the second cylinder. The mounting platform has a guide rail, and the connecting rod is perpendicular to the guide rail and has a slider that matches the guide rail. Driven by the second cylinder, the connecting rod slides left and right on the mounting platform through the slider that matches the guide rail. The other end of the connecting rod is located outside the mounting platform and is detachably connected to a pusher plate corresponding to the material support on the corresponding lifting and receiving device. When the lifting driver lowers the stacked electrode plates to a certain height, the photoelectric sensor at the bottom of the conveyor receives the signal and transmits it to the control system. The control system then controls cylinder two to work. Driven by cylinder two, the electrode plates on the corresponding lifting and receiving device are quickly arranged by the push plate.
[0018] Preferably, the side-pushing component includes a cylinder three, which is detachably connected to the bottom of the mounting platform. A side-pushing plate one, parallel to the left-right direction, is detachably connected to the telescopic end of the cylinder three. The side-pushing plate one corresponds to the front side of the material-supporting components on the two lifting and receiving devices. Side-pushing plates two are provided at both ends of the side-pushing plate one, perpendicular to it. A guide plate corresponds vertically to the side-pushing plate two on the same side, and the side-pushing plate two corresponds to the middle push plate in the left-right direction. When the lifting driver lowers the stacked electrode plates to a certain height, a photoelectric sensor one located at the bottom of the conveyor receives a signal and transmits it to the control system. The control system controls cylinder two to work simultaneously with cylinder three. Driven by cylinder three, the side-pushing plate one quickly pushes backward, rapidly tidying the front side of the electrode plates. At the same time, the middle push plate and side-pushing plate two work together to rapidly tidy the left and right sides of the electrode plates, thus ensuring that the electrode plates on the conveyor chain are neatly stacked before output, facilitating subsequent operations.
[0019] The beneficial effects of this utility model are: it facilitates the neat stacking of electrode plates before output, thereby improving the neatness of battery electrode plate stacking and facilitating subsequent operation of the equipment; the dual-path transmission assembly achieves synchronous transmission under the drive of the servo motor, which helps to improve work efficiency; it helps to improve response time and sensitivity; the gantry frame and the conveyor body are slidably connected front and rear, which allows the operator to adjust the position of the gantry frame according to actual needs, thus improving practicality; the cooling fan facilitates heat dissipation for the electrode plates on the two lifting receiving device trays. Attached Figure Description
[0020] Figure 1 This is a schematic diagram of the structure of this utility model;
[0021] Figure 2 This is a structural schematic diagram of the lifting and receiving device and the gantry frame;
[0022] Figure 3 This is a schematic diagram of the material receiving and adjustment device.
[0023] In the diagram: 1. Base, 2. Conveyor body, 3. Conveying area, 4. Receiving end, 5. Discharging end, 6. Lifting receiving device, 7. Lifting driver, 8. Material support component, 9. Material support end, 10. Receiving adjustment device, 11. Mounting platform, 12. Central pusher, 13. Side pusher, 14. Transmission assembly, 15. Conveyor chain, 16. Servo motor, 17. Mounting base, 18. Support plate, 19. Photoelectric sensor one, 20. Gantry frame, 21. Cylinder one, 22. Guide plate, 23. Photoelectric sensor two, 24. Cooling fan, 25. Limiting component, 26. Limiting rod, 27. Cylinder two, 28. Connecting rod, 29. Guide rail, 30. Slider, 31. Central pusher plate, 32. Cylinder three, 33. Side pusher plate one, 34. Side push plate two. Detailed Implementation
[0024] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. The following description of at least one exemplary embodiment is merely illustrative and is in no way intended to limit this application or its application or use. All other embodiments obtained by those skilled in the art based on the embodiments of this application without creative effort are within the scope of protection of this application.
[0025] It should be noted that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to limit the exemplary embodiments according to this application. As used herein, the singular form is intended to include the plural form as well, unless the context clearly indicates otherwise. Furthermore, it should be understood that when the terms "comprising" and / or "including" are used in this specification, they indicate the presence of features, steps, operations, devices, components, and / or combinations thereof.
[0026] Unless otherwise specifically stated, the relative arrangement, numerical expressions, and values of components illustrated in these embodiments do not limit the scope of this application. For ease of illustration, spatial relative terms such as “upper,” “lower,” “left,” and “right” are used in the embodiments to describe the relationship of one element or feature shown in the figures relative to another element or feature. It should be understood that, in addition to the orientations shown in the figures, spatial terms are intended to include different orientations of the device in use or operation. For example, if the device in the figures is inverted, an element described as being “below” other elements or features would be fixed “upper” to other elements or features. Thus, the exemplary term “lower” can include both upper and lower orientations. The device may be fixed in other ways (rotated 90 degrees or located in other orientations), and the spatial relative descriptions used herein can be interpreted accordingly. It should also be understood that, for ease of description, the dimensions of the various parts shown in the figures are not drawn to actual scale. Techniques, processes, and equipment known to those skilled in the art may not be discussed in detail, but where appropriate, such techniques, processes, and equipment should be considered part of the specification. In all examples shown and discussed herein, any specific values should be interpreted as merely exemplary and not as limiting. Therefore, other examples of exemplary embodiments may have different values. It should be noted that similar reference numerals and letters in the following figures denote similar items; therefore, once an item is defined in one figure, it need not be discussed further in subsequent figures.
[0027] Furthermore, it should be noted that the use of terms such as "first" and "second" to define components is merely for the purpose of distinguishing the corresponding components. Unless otherwise stated, the above terms have no special meaning and therefore cannot be construed as limiting the scope of protection of this application.
[0028] like Figure 1In the embodiments described, a lifting and receiving adjustment device for receiving automotive battery plates includes a base 1; a conveyor body 2, the bottom of which is detachably connected to the base 1, the top of which is a conveying zone 3 for front-to-back transport, the front end of which is a receiving end 4, and the rear end of which is a discharging end 5; and a lifting and receiving device 6 located within the receiving end 4, which includes a lifting drive 7 located below the conveying zone 3 and detachably connected to the inner wall of the conveyor body 2. A material support 8 is provided on the output end of the lifting drive 7, one end of which is detachably connected to the lifting drive 7, and the other end of which passes through the top of the conveyor body 2 and is located above the conveying zone 3. The upper end of 3 is the material support end 9. The material support component 8 is connected to the conveyor body 2 vertically under the drive of the lifting drive 7. The receiving adjustment device 10 is suspended on the receiving end 4 of the conveyor body 2 and is distributed in front and behind the lifting receiving device 6. The receiving adjustment device 10 includes a mounting platform 11, which is suspended above the conveying area 3. The mounting platform 11 is slidably connected to the conveyor body 2 on its left and right sides. The top of the mounting platform 11 is provided with a middle pusher 12 corresponding to one side of the material support component 8. The middle pusher 12 is slidably connected to the mounting platform 11 in the left and right direction. The bottom of the mounting platform 11 is provided with side pushers 13 corresponding to the front side of the material support component 8 and the other side of the material support component 8, respectively.
[0029] The bottom of the conveyor body 2 is detachably connected to the base 1. Two transmission components 14 are arranged in parallel along the left and right directions in the conveying area 3. The transmission components 14 include two parallel conveyor chains 15. A servo motor 16 is provided outside the conveyor body 2. The servo motor 16 is detachably connected to the outer side wall of the conveyor body 2. The conveyor chains 15 are conveyed from the receiving end 4 to the discharging end 5 under the drive of the servo motor 16. There are two lifting receiving devices 6. The two lifting receiving devices 6 are located between the two conveyor chains 15 of the two transmission components 14 and are distributed in a left and right direction.
[0030] like Figure 1 and Figure 2 As shown, the output end of the lifting drive 7 is provided with a mounting base 17, which is located below the conveyor chain 15. The material support component 8 includes two parallel support plates 18. One end of the support plate 18 is vertically fixed to the mounting base 17, and the material support end 9 is located at the other end of the support plate 18. The other end of the support plate 18 passes through the gap between the two conveyor chains 15 on the corresponding transmission assembly 14 and is located above the conveyor chain 15. The support plate 18 is connected to the conveyor body 2 in a vertically movable manner under the drive of the lifting drive 7. Two sets of photoelectric sensors 19 are provided on the left and right inner walls of the conveyor body 2. The two sets of photoelectric sensors 19 are installed vertically on the conveyor body 2, and the photoelectric sensors 19 correspond to the mounting base 17 on the same side.
[0031] A gantry frame 20 is mounted on the top of the conveyor body 2. The mounting platform 11 and the gantry frame 20 are arranged in a front-to-back manner. The left and right sides of the bottom opening of the gantry frame 20 are slidably connected to the left and right outer walls of the top of the conveyor body 2 along the conveying direction of the conveyor chain 15. The left and right side walls of the gantry frame 20 are detachably mounted with symmetrically distributed cylinders 21. The telescopic end of the cylinder 21 is provided with a guide plate 22. The guide plate 22 moves left and right under the drive of the cylinder 21. The guide plate 22 is parallel to the pallet 18. The guide plate 22 is located above the conveyor chain 15 and corresponds to the material-carrying end 9 of the pallet 18. The pallet 18 is located between the guide plates 22 on the two cylinders 21. The top of the gantry frame 20 is provided with two photoelectric sensors 23. The two photoelectric sensors 23 are respectively vertically aligned with the pallets 18 on the two lifting and receiving devices 6. The top of the gantry frame 20 is equipped with two cooling fans 24. The cooling fans 24 are detachably connected to the gantry frame 20. The air outlets of the two cooling fans 24 are respectively aligned with the material receiving ends 9 on the pallets 18 of the two lifting and receiving devices 6.
[0032] The top of the gantry frame 20 is provided with two sets of limiting members 25, which correspond one-to-one with the two lifting and receiving devices 6. The pallet 18 is located in front of the limiting member 25 and behind the mounting platform 11. The limiting member 25 includes two limiting rods 26 that correspond one-to-one with the two pallets 18 on the corresponding lifting and receiving devices 6. One end of the limiting rod 26 is fixedly connected to the top of the gantry frame 20, and the other end of the limiting rod 26 is suspended inside the gantry frame 20 and above the conveyor chain 15.
[0033] like Figure 1 and Figure 3 As shown, there are two pushers 12, each corresponding to one of the two lifting and receiving devices 6. The guide plate 22 is located on one side of the material support 8 and is vertically away from the conveyor chain 15. The pushers 12 are located on the opposite side of the material support 8 and are vertically close to the conveyor chain 15. Each pusher 12 includes a cylinder 27, which is detachably connected to the top of the mounting platform 11. A connecting rod 28 is provided on the cylinder 27, and one end of the connecting rod 28 is connected to the cylinder 27. The telescopic end of 27 is detachably connected. The mounting platform 11 is provided with a guide rail 29. The connecting rod 28 is perpendicular to the guide rail 29 and is provided with a slider 30 that matches the guide rail 29. Under the drive of the cylinder 27, the connecting rod 28 is slidably connected to the mounting platform 11 by the slider 30 and the guide rail 29. The other end of the connecting rod 28 is located outside the mounting platform 11. The other end of the connecting rod 28 is detachably connected to a middle push plate 31 that corresponds to the material support 8 on the corresponding lifting and receiving device 6.
[0034] The side pusher 13 includes a cylinder 32, which is detachably connected to the bottom of the mounting platform 11. A side pusher plate 33 parallel to the left and right direction is detachably connected to the telescopic end of the cylinder 32. The side pusher plate 33 corresponds to the front side of the material support 8 on the two lifting and receiving devices 6. The left and right ends of the side pusher plate 33 are provided with side pusher plates 34, which are perpendicular to the side pusher plate 33. The guide plate 22 is vertically aligned with the side pusher plate 34 on the same side. The side pusher plate 34 is aligned with the middle pusher plate 31 in the left and right direction.
[0035] According to actual needs, the operator controls the cylinder 21 through the control system to adjust the position of the guide plate 22 in the left and right directions, which helps to limit the outer side of the electrode plate thrown to the two material support ends 9. At the same time, the design of the limit rod inside the gantry frame 20 limits the rear side of the electrode plate on the two material support ends 9, which facilitates the orderly upward stacking of the electrode plate on the material support ends 9.
[0036] During material receiving, the material receiving end 9 on the pallet 18 is positioned above the conveyor chain 15 and corresponds to the end of the front conveyor line. The electrode plates ejected from the end of the front conveyor line are continuously stacked on the material receiving end 9. Since the photoelectric sensor 23 senses the stacking height of the electrode plates on the pallets 18 of the two lifting receiving devices in real time, when the electrode plates on the material receiving end 9 are stacked to a certain quantity, the photoelectric sensor 23 transmits a signal to the control system. The control system then controls the lifting driver 7 to drive the pallet 18 to descend, thereby causing the stacked electrode plates to descend and prepare to place the stacked electrode plates on the corresponding... The plates are conveyed on two conveyor chains 15 on the transmission assembly 14. Before being conveyed out, the photoelectric sensor 19 located at the bottom of the conveyor body 2 receives a signal and transmits it to the control system. The control system controls cylinder 27 to work while simultaneously controlling cylinder 32 to work. The side push plate 33 is pushed backward rapidly under the drive of cylinder 32 to quickly tidy up the front side of the plates. At the same time, the middle push plate 31 and the side push plate 34 work together to quickly tidy up the left and right sides of the plates. Finally, the plates on the conveyor chains 15 are neatly stacked and output for subsequent operations. The control system then controls the lifting driver 7 to drive the pallet 18 to rise to the initial position.
[0037] The above embodiments are only used to illustrate the technical solutions of this utility model, and are not intended to limit it. Although this utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of this utility model.
Claims
1. A lifting and adjusting device for receiving automotive battery electrode plates, characterized in that, include: Base (1); The bottom of the conveyor (2) is detachably connected to the base (1), the top of the conveyor (2) is a conveying area (3) that conveys from front to back, the front end of the conveyor (2) is a receiving end (4), and the rear end of the conveyor (2) is a discharging end (5). The lifting receiving device (6) is located inside the receiving end (4) and includes a lifting drive (7). The lifting drive (7) is located below the conveying area (3) and is detachably connected to the inner side wall of the conveying body (2). The output end of the lifting drive (7) is provided with a material support (8). One end of the material support (8) is detachably connected to the lifting drive (7). The other end of the material support (8) passes through the top of the conveying body (2) and is located above the conveying area (3). The end of the material support (8) located above the conveying area (3) is the material support end (9). The material support (8) is connected to the conveying body (2) vertically under the drive of the lifting drive (7). The receiving adjustment device (10) is suspended on the receiving end (4) of the conveyor body (2) and is distributed in front and behind the lifting receiving device (6). The receiving adjustment device (10) includes an installation platform (11). The installation platform (11) is suspended above the conveying area (3). The installation platform (11) is slidably connected to the conveyor body (2) on its left and right sides. The top of the installation platform (11) is provided with a middle pusher (12) corresponding to one side of the material support (8). The middle pusher (12) is slidably connected to the installation platform (11) in the left and right direction. The bottom of the installation platform (11) is provided with side pushers (13) corresponding to the front side of the material support (8) and the other side of the material support (8).
2. The lifting and adjusting device for receiving automotive battery plates according to claim 1, characterized in that, The bottom of the conveyor body (2) is detachably connected to the base (1). Two transmission components (14) are arranged in parallel along the left and right directions in the conveying area (3). The transmission components (14) include two parallel conveyor chains (15). A servo motor (16) is provided outside the conveyor body (2). The servo motor (16) is detachably connected to the outer wall of the conveyor body (2). The conveyor chains (15) are conveyed from the receiving end (4) to the discharging end (5) under the drive of the servo motor (16). There are two lifting receiving devices (6). The two lifting receiving devices (6) are located between the two conveyor chains (15) of the two transmission components (14) and are distributed in a left and right direction.
3. The lifting and adjusting device for receiving automotive battery plates according to claim 2, characterized in that, The output end of the lifting driver (7) is provided with a mounting base (17), which is located below the conveyor chain (15). The material support component (8) includes two parallel pallets (18). One end of the pallet (18) is vertically fixed on the mounting base (17), and the material support end (9) is located at the other end of the pallet (18). The other end of the pallet (18) passes through the gap between the two conveyor chains (15) on the corresponding transmission assembly (14) and is located above the conveyor chain (15). The pallet (18) is connected to the conveyor body (2) in a vertical movement under the drive of the lifting driver (7). Two sets of photoelectric sensors (19) are provided on the left and right inner walls of the conveyor body (2). The two sets of photoelectric sensors (19) are installed on the conveyor body (2) in a vertical distribution. The photoelectric sensors (19) correspond to the mounting base (17) on the same side.
4. The lifting and adjusting device for receiving automotive battery plates according to claim 3, characterized in that, A gantry frame (20) is mounted on the top of the conveyor body (2). The mounting platform (11) and the gantry frame (20) are arranged in a front-to-back manner. The left and right sides of the bottom opening of the gantry frame (20) are respectively slidably connected to the left and right outer side walls of the top of the conveyor body (2) along the conveying direction of the conveyor chain (15). A symmetrically distributed cylinder (21) can be detachably installed on the left and right side walls of the gantry frame (20). A guide plate (22) is provided on the telescopic end of the cylinder (21). The guide plate (22) is positioned in the direction of the air... Driven by cylinder one (21), the guide plate (22) moves left and right. The guide plate (22) is parallel to the pallet (18). The guide plate (22) is located above the conveyor chain (15) and corresponds to the material-carrying end (9) of the pallet (18). The pallet (18) is located between the guide plates (22) on the two cylinders one (21). The top of the gantry frame (20) is provided with two photoelectric sensors two (23). The two photoelectric sensors two (23) correspond vertically to the pallets (18) on the two lifting and receiving devices (6).
5. The lifting and adjusting device for receiving automotive battery plates according to claim 4, characterized in that, The top of the gantry frame (20) is provided with two cooling fans (24). The cooling fans (24) are detachably connected to the gantry frame (20). The air outlets of the two cooling fans (24) are respectively aligned with the material receiving ends (9) on the pallets (18) of the two lifting material receiving devices (6).
6. The lifting and adjusting device for receiving automotive battery plates according to claim 4, characterized in that, The top of the gantry frame (20) is provided with two sets of limiting members (25), which correspond one-to-one with the two lifting and receiving devices (6). The pallet (18) is located in front of the limiting member (25) and behind the installation platform (11). The limiting member (25) includes two limiting rods (26) that correspond one-to-one with the two pallets (18) on the corresponding lifting and receiving devices (6). One end of the limiting rod (26) is fixedly connected to the top of the gantry frame (20), and the other end of the limiting rod (26) is suspended in the air inside the gantry frame (20) and above the conveyor chain (15).
7. The lifting and adjusting device for receiving automotive battery plates according to claim 4, characterized in that, There are two pushers (12), each corresponding to one of the two lifting and receiving devices (6). The guide plate (22) is located on one side of the material support (8) and is vertically away from the conveyor chain (15). The pusher (12) is located on the other side of the material support (8) and is vertically close to the conveyor chain (15). The pusher (12) includes a cylinder (27), which is detachably connected to the top of the mounting platform (11). A connecting rod (28) is provided on the cylinder (27), and one end of the connecting rod (28) is connected to the cylinder (27). 7) The telescopic end is detachably connected. The mounting platform (11) is provided with a guide rail (29). The connecting rod (28) is perpendicular to the guide rail (29) and is provided with a slider (30) that matches the guide rail (29). The connecting rod (28) is driven by the cylinder (27) and slides left and right on the mounting platform (11) through the slider (30) that matches the guide rail (29). The other end of the connecting rod (28) is located outside the mounting platform (11). The other end of the connecting rod (28) is detachably connected to a middle push plate (31) that corresponds to the material support (8) on the corresponding lifting and receiving device (6).
8. The lifting and adjusting device for receiving automotive battery plates according to claim 4, characterized in that, The side pusher (13) includes a cylinder three (32), which is detachably connected to the bottom of the mounting platform (11). A side pusher plate one (33) parallel to the left and right direction is detachably connected to the telescopic end of the cylinder three (32). The side pusher plate one (33) corresponds to the front side of the material support (8) on the two lifting and receiving devices (6). The left and right ends of the side pusher plate one (33) are provided with side pusher plate two (34). The side pusher plate two (34) is perpendicular to the side pusher plate one (33). The guide plate (22) is vertically aligned with the side pusher plate two (34) on the same side. The side pusher plate two (34) is aligned with the middle pusher plate (31) in the left and right direction.