Low-resistance AGM partition finished product packaging machine
By designing a low-resistance AGM partition finished packaging machine using conveyor belt, L-shaped plate, drive mechanism, lifting cylinder, horizontal plate, vertical rod, suction cup and flip assembly, the problem of offset of packaging boxes during filling in the prior art is solved, and the automatic packing and automatic discharge of low-resistance AGM partition is realized, and the practicality of packaging is improved.
Patent Information
- Application Number
- CN202421739088.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-22
- Publication Date
- 2025-06-27
- Estimated Expiration
- 2034-07-22
AI Technical Summary
In the prior art, the packaging device of low resistance AGM partition is not flexible enough when loading, resulting in moving and offsetting of the packaging box, and all partitions cannot be filled in place.
A low-resistance AGM partition finished packaging machine is designed, which adopts components such as conveyor belt, L-shaped plate, drive mechanism, lifting cylinder, horizontal plate, vertical rod, suction cup and flip assembly. Through the cooperation of lifting cylinder and suction cup, the automatic packaging of low-resistance AGM partition is realized to ensure that the packaging box is stable and not offset during filling.
It realizes automatic packing and packaging of low-resistance AGM partitions, ensuring that the packaging box is stable and undeviated during filling, and can load all partitions into place, and realizes automatic discharge, which improves the practicality of packaging.
Smart Images

Figure CN223031402U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of packaging machines, in particular to a finished product packaging machine for low-resistance AGM separators. Background Art
[0002] The low-resistance AGM separator, namely the battery separator, is an important component in a storage battery. In a valve-regulated lead-acid battery, the battery separator can prevent the shedding of the active material of the electrode plate and the deformation of the electrode plate, and play a role in prolonging the service life of the storage battery. The Chinese utility model patent with the publication number CN217624375U in the prior art proposes a nested packaging device for battery separators. When the push block pushes the battery separator to move to the right, the battery separator enters the packaging box. The second servo motor drives the screw rod to rotate, thereby driving the movable plate to move up or down, and then driving the support plate to move up or down, and then adjusting the height of the packaging box, which can facilitate the nesting of the electronic separator without manual nesting, saving time and effort. The first servo motor drives the left-right threaded rod to rotate, thereby driving the two sliders to slide back and forth and approach each other, and then driving the two limit plates to slide back and forth to limit the battery separator, preventing its position from shifting and ensuring the nesting accuracy.
[0003] However, the above packaging device fills the separators into the packaging box one by one through the push plate. The pushing effect of the push block on the separator is fixed and not flexible enough. During filling, the friction between the separator and the packaging box causes the packaging box to move and shift, resulting in not all the separators being filled in place. Summary of the Utility Model
[0004] To solve the above technical problems, the utility model provides a finished product packaging machine for low-resistance AGM separators, which can keep the packaging box stable and not shift during the filling of low-resistance AGM separators, fill in place, and can automatically discharge materials, with good practicability.
[0005] A finished product packaging machine for a low-resistance AGM separator of the utility model includes a frame and a conveyor belt, and the conveyor belt is installed on the frame; it further includes an L-shaped plate, a driving mechanism, a lifting cylinder, a transverse plate, a vertical rod, a suction cup and a flipping assembly. The L-shaped plate is provided with a first supporting plate and a second supporting plate arranged vertically. The first supporting plate is rotatably connected to the frame. When the end of the first supporting plate is aligned with the upper end face of the output end of the conveyor belt, the second supporting plate is vertically upward. The flipping assembly drives the L-shaped plate to flip. The driving mechanism is installed on the frame, the fixed end of the lifting cylinder is installed on the driving mechanism, and the driving mechanism drives the lifting cylinder to move. The lower end of the piston rod of the lifting cylinder is installed with a transverse plate. The upper ends of a plurality of vertical rods are evenly and movably inserted on the transverse plate, and the lower ends of the plurality of vertical rods are all installed with suction cups. A locking and releasing assembly for the plurality of vertical rods is installed on the transverse plate; during operation, the conveyor belt conveys the low-resistance AGM separator to the L-shaped plate. The driving mechanism drives the lifting cylinder to move away from the L-shaped plate. When the transverse plate moves above the low-resistance AGM separator, the piston rod of the lifting cylinder extends to drive the transverse plate to descend, so that the suction cup at the rearmost position adsorbs to the front end of the upper end face of the low-resistance AGM separator. The transverse plate continues to descend so that the plurality of suction cups that have not adsorbed the low-resistance AGM separator fall onto the upper end face of the conveyor belt. The locking and releasing assembly clamps the plurality of vertical rods. The piston rod of the lifting cylinder contracts to lift the low-resistance AGM separator. Repeat the above operations until all the suction cups respectively adsorb the low-resistance AGM separators, and make the plurality of low-resistance AGM separators be stacked horizontally and staggered neatly. A packing box is placed on the first supporting plate of the L-shaped plate, and the box opening of the packing box faces the conveyor belt. The bottom of the packing box abuts tightly against the second supporting plate. The driving mechanism drives the lifting cylinder to move towards the packing box, and the plurality of low-resistance AGM separators are integrally loaded into the packing box, and the plurality of suction cups release the plurality of low-resistance AGM separators. The piston rod of the lifting cylinder contracts to lift the plurality of vertical rods and the plurality of suction cups. The flipping assembly acts to rotate the L-shaped plate towards the outside of the conveyor belt, driving the packing box to stand up so that the second supporting plate holds the packing box, so that the plurality of low-resistance AGM separators are integrally loaded into the packing box under the action of gravity. The flipping assembly drives the L-shaped plate to rotate towards the outside of the conveyor belt again by a certain angle, so that the second supporting plate tilts downward, so that the packing box slides outwards along the second supporting plate to the subsequent station. The flipping assembly drives the L-shaped plate to reset, completing the automatic packing of the low-resistance AGM separator. During filling, the packing box is stable and will not shift, all the separators can be filled in place, and it can automatically discharge materials, with good practicability.
[0006] Preferably, it further includes a separator. The separator is located above the middle of the conveyor belt. The separator divides the frame into left and right parts along the conveying direction of the conveyor belt. The two parts respectively convey the low-resistance AGM separator and the packing box; the frame is effectively divided into two parts by the separator to realize the conveying of the low-resistance AGM separator and the packing box, so that the packing box can be automatically conveyed onto the first supporting plate of the L-shaped plate, realizing the automatic feeding of the packing box.
[0007] Preferably, the locking assembly includes a plurality of card slots, a plurality of plug boards, a plurality of springs, a push cylinder, a push rod and a plurality of push blocks. A plurality of card slots are provided on the side walls of the plurality of vertical rods. The plurality of plug boards are slidably mounted on the cross plate. One ends of the plurality of springs are respectively connected to the plurality of plug boards, and the other ends of the plurality of springs are connected to the cross plate. The elastic forces of the plurality of springs push the plurality of plug boards towards the plurality of card slots of the plurality of vertical rods. The plurality of springs are matched with the plurality of card slots. The push cylinder is mounted on the cross plate. The piston rod of the push cylinder is connected to the push rod. The push rod is slidably mounted on the cross plate. A plurality of push blocks are provided on the push rod. The plurality of push blocks are respectively aligned with the plurality of plug boards. The plurality of push blocks push the plurality of plug boards to disengage from the plurality of card slots. When the suction cups adsorb the low-resistance AGM separator, the vertical rod connected to the suction cup is pushed upward, so that the corresponding plug board is clamped in the corresponding card slot under the elastic force of the corresponding spring, thereby clamping the vertical rod. When the plurality of suction cups release the plurality of low-resistance AGM separators, the piston rod of the push cylinder extends to push the push rod to move, so that the push rod drives the plurality of push blocks to push the plurality of plug boards to disengage from the plurality of card slots, thereby releasing the plurality of vertical rods, and the practicability is good.
[0008] Preferably, it further includes a plurality of limit blocks, and the plurality of limit blocks are respectively mounted on the upper side walls of the plurality of vertical rods. The plurality of limit blocks limit the descending stroke of the plurality of vertical rods; by providing the plurality of limit blocks to limit the maximum descending stroke of the plurality of vertical rods, it is avoided that the plurality of vertical rods are separated from the cross plate, and the reliability is improved.
[0009] Preferably, the flipping assembly includes a top rod, a pull rod and a suction block. A notch is provided on the first supporting plate of the L-shaped plate. The top rod is mounted on the lower end surface of the first supporting plate of the L-shaped plate. The lower end of the pull rod is rotatably connected to the lower end of the top rod. The upper end of the pull rod is rotatably connected to the lower end surface of the suction block. The suction block is placed on the upper end surface of the first supporting plate of the L-shaped plate through the notch, and the suction block is adsorbed by the suction cup. After the plurality of suction cups release the plurality of low-resistance AGM separators, one suction cup adsorbs the suction block and then pushes it up. The suction block pulls the top rod through the pull rod, so that the L-shaped plate starts to flip. When the packing box is output along the second supporting plate of the L-shaped plate, the suction cup adsorbs the suction block and descends, so that the suction block and the L-shaped plate are reset, realizing the linkage between the L-shaped plate and the suction cup, simplifying the structure and having good practicability.
[0010] Preferably, the driving mechanism includes an upper frame, two slide rails, two sliders, a slide table and two slide rods. The upper frame is mounted on the frame. The two slide rails are mounted on the upper frame. The two slide rails are located on the left and right sides of the conveyor belt. The two sliders are respectively slidably mounted on the two slide rails. The two sliders are connected by two slide rods. The slide table is slidably mounted on the two slide rods. The fixed end of the lifting cylinder is mounted on the slide table; the two sliders move synchronously along the two slide rails to drive the slide table and the lifting cylinder to move longitudinally, and the slide table drives the lifting cylinder to move transversely along the two slide rods, realizing the flexible movement of the plurality of suction cups on the conveyor belt, facilitating the sequential adsorption and grasping of the plurality of low-resistance AGM separators, and facilitating the loading of the plurality of low-resistance AGM separators into the packing box.
[0011] Preferably, it further includes a plurality of synchronous pulleys, two synchronous belts, a first motor, a lead screw, and a second motor. The plurality of synchronous pulleys are respectively rotatably installed on both sides of the upper frame. The two synchronous belts are respectively sleeved on the plurality of synchronous pulleys. The two synchronous belts are respectively located on the left and right sides of the upper frame. The two synchronous belts are respectively connected to the two sliders. The first motor is installed on the upper frame, and the synchronous pulley driven by the output shaft of the first motor rotates. The lead screw is rotatably installed on the two sliders. The lead screw is in transmission connection with the sliding table through a lead screw nut. The second motor is installed on the slider, and the output shaft of the second motor is in transmission connection with the lead screw. The first motor drives the plurality of synchronous pulleys to rotate, and the plurality of synchronous pulleys drive the two synchronous belts to rotate synchronously, so that the two synchronous belts drive the two sliders to move synchronously along the two slide rails. The second motor drives the lead screw to rotate, and the lead screw drives the sliding table to move along the two slide rods through the lead screw nut, and the driving effect is stable and smooth.
[0012] Compared with the prior art, the beneficial effects of the present utility model are as follows: It can complete the automatic packing of low-resistance AGM separators. During filling, the packing box is stable and will not shift. All separators can be filled in place, and it can automatically discharge materials, with good practicability. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Figure 1 is a schematic structural diagram of the present utility model;
[0014] Figure 2 is a front view structural schematic diagram of the present utility model;
[0015] Figure 3 is a schematic structural diagram of structures such as the driving mechanism and the lifting cylinder;
[0016] Figure 4 is a schematic structural diagram of structures such as the cross plate, vertical rod, suction cup, and locking component;
[0017] Figure 5 is a schematic structural diagram of the decomposed state of structures such as the cross plate, vertical rod, suction cup, and locking component;
[0018] Figure 6 is a schematic structural diagram of structures such as the L-shaped plate and the flipping component.
[0019] Reference signs in the drawings: 1, frame; 2, conveyor belt; 3, L-shaped plate; 4, driving mechanism; 5, lifting cylinder; 6, cross plate; 7, vertical rod; 8, suction cup; 9, separator; 10, card slot; 11, insertion plate; 12, spring; 13, pushing cylinder; 14, pushing rod; 15, pushing block; 16, limiting block; 17, ejector rod; 18, pull rod; 19, sucked block; 20, upper frame; 21, slide rail; 22, slider; 23, sliding table; 24, synchronous pulley; 25, synchronous belt; 26, first motor; 27, slide rod; 28, lead screw; 29, second motor. Detailed implementation mode
[0020] To facilitate the understanding of the present utility model, the present utility model will be described more comprehensively below with reference to the relevant drawings. The present utility model can be implemented in many different forms and is not limited to the embodiments described herein. On the contrary, these embodiments are provided to make the disclosure of the present utility model more thorough and comprehensive.
[0021] Embodiment 1
[0022] As Figure 1 、 Figure 2 and Figure 6 shown, a finished product packaging machine for low-resistance AGM separators includes a frame 1 and a conveyor belt 2, and the conveyor belt 2 is installed on the frame 1; it also includes an L-shaped plate 3, a driving mechanism 4, a lifting cylinder 5, a horizontal plate 6, a vertical rod 7, a suction cup 8 and a flipping assembly. The L-shaped plate 3 is provided with a first support plate and a second support plate arranged vertically. The first support plate is rotatably connected to the frame 1. When the end of the first support plate is aligned with the upper end face of the output end of the conveyor belt 2, the second support plate is vertically upward. The flipping assembly drives the L-shaped plate 3 to flip. The driving mechanism 4 is installed on the frame 1. The fixed end of the lifting cylinder 5 is installed on the driving mechanism 4, and the driving mechanism 4 drives the lifting cylinder 5 to move. The lower end of the piston rod of the lifting cylinder 5 is installed with the horizontal plate 6. The upper ends of a plurality of vertical rods 7 are evenly and movably inserted into the horizontal plate 6, and suction cups 8 are installed at the lower ends of the plurality of vertical rods 7. A locking and releasing assembly for clamping and releasing the plurality of vertical rods 7 is installed on the horizontal plate 6; it also includes a separator 9. The separator 9 is located above the middle of the conveyor belt 2. The separator 9 divides the frame 1 into left and right parts along the conveying direction of the conveyor belt 2. The two parts respectively convey low-resistance AGM separators and packaging boxes; the flipping assembly includes a top rod 17, a pull rod 18 and a suction block 19. A notch is provided on the first support plate of the L-shaped plate 3. The top rod 17 is installed on the lower end face of the first support plate of the L-shaped plate 3. The lower end of the pull rod 18 is rotatably connected to the lower end of the top rod 17. The upper end of the pull rod 18 is rotatably connected to the lower end face of the suction block 19. The suction block 19 is placed on the upper end face of the first support plate of the L-shaped plate 3 through the notch, and the suction block 19 is adsorbed by the suction cup 8.
[0023] During operation, the rack 1 is effectively divided into two parts by the partition plate 9, enabling the conveyor belt 2 to convey the low-resistance AGM separator and the packing box, so that the packing box can be automatically conveyed onto the first pallet of the L-shaped plate 3, achieving automatic loading of the packing box. The conveyor belt 2 conveys the low-resistance AGM separator towards the L-shaped plate 3, and the driving mechanism 4 drives the lifting cylinder 5 to move away from the L-shaped plate 3. When the cross plate 6 moves above the low-resistance AGM separator, the piston rod of the lifting cylinder 5 extends to drive the cross plate 6 to descend, so that the suction cup 8 at the rearmost position adsorbs the front end of the upper end face of the low-resistance AGM separator. The cross plate 6 continues to descend, causing the other suction cups 8 that have not adsorbed the low-resistance AGM separator to fall onto the upper end face of the conveyor belt 2. The locking assembly holds the multiple vertical rods 7, and the piston rod of the lifting cylinder 5 contracts to lift the low-resistance AGM separator. The above operations are repeated until all the suction cups 8 respectively adsorb the low-resistance AGM separators, and the multiple low-resistance AGM separators are stacked horizontally and staggeredly and neatly. A packing box is placed on the first pallet of the L-shaped plate 3, with the box opening of the packing box facing the conveyor belt 2, and the bottom of the packing box is pressed tightly against the second pallet. The driving mechanism 4 drives the lifting cylinder 5 to move towards the packing box, and the multiple low-resistance AGM separators are integrally loaded into the packing box, and the multiple suction cups 8 release the multiple low-resistance AGM separators. The piston rod of the lifting cylinder 5 contracts to lift the multiple vertical rods 7 and the multiple suction cups 8. After the multiple suction cups 8 release the multiple low-resistance AGM separators, one suction cup 8 adsorbs the suction block 19 and pushes it up. The suction block 19 pulls the ejector rod 17 through the pull rod 18, causing the L-shaped plate 3 to start rotating towards the outside of the conveyor belt 2, driving the packing box to stand upright so that the second pallet holds the packing box, enabling the multiple low-resistance AGM separators to be integrally loaded into the packing box under the action of gravity. The flipping assembly drives the L-shaped plate 3 to rotate towards the outside of the conveyor belt 2 by a certain angle again, causing the second pallet to tilt downward, so that the packing box slides outwards along the second pallet to the subsequent station. The flipping assembly drives the L-shaped plate 3 to reset, completing the automatic packing of the low-resistance AGM separator. During filling, the packing box is stable and does not shift, all the separators can be filled in place, and automatic discharging can be achieved. When the packing box is output along the second pallet of the L-shaped plate 3, the suction cup 8 adsorbs the suction block 19 and descends, causing the suction block 19 and the L-shaped plate 3 to reset.
[0024] Embodiment 2
[0025] Such as Figure 4 And Figure 5As shown, on the basis of Embodiment 1, the latch assembly includes a plurality of card slots 10, a plurality of plug boards 11, a plurality of springs 12, a push cylinder 13, a push rod 14, and a plurality of push blocks 15. A plurality of card slots 10 are provided on the side walls of a plurality of vertical rods 7. A plurality of plug boards 11 are slidably mounted on the cross plate 6. One ends of a plurality of springs 12 are respectively connected to a plurality of plug boards 11, and the other ends of a plurality of springs 12 are connected to the cross plate 6. The elastic forces of a plurality of springs 12 push a plurality of plug boards 11 towards a plurality of card slots 10 of a plurality of vertical rods 7. A plurality of springs 12 are matched with a plurality of card slots 10. The push cylinder 13 is mounted on the cross plate 6. The piston rod of the push cylinder 13 is connected to the push rod 14. The push rod 14 is slidably mounted on the cross plate 6. A plurality of push blocks 15 are provided on the push rod 14. A plurality of push blocks 15 are respectively aligned with a plurality of plug boards 11. A plurality of push blocks 15 push a plurality of plug boards 11 to disengage from a plurality of card slots 10. It further includes a plurality of limit blocks 16. A plurality of limit blocks 16 are respectively mounted on the upper side walls of a plurality of vertical rods 7. A plurality of limit blocks 16 limit the downward stroke of a plurality of vertical rods 7.
[0026] When the suction cup 8 adsorbs the low-resistance AGM separator, the vertical rod 7 connected to the suction cup 8 is pushed upward, so that the corresponding plug board 11 is clamped in the corresponding card slot 10 under the elastic force of the corresponding spring 12, thereby clamping the vertical rod 7. When a plurality of suction cups 8 release a plurality of low-resistance AGM separators, the piston rod of the push cylinder 13 extends to push the push rod 14 to move, so that the push rod 14 drives a plurality of push blocks 15 to push a plurality of plug boards 11 to disengage from a plurality of card slots 10, thereby releasing a plurality of vertical rods 7. By providing a plurality of limit blocks 16 to limit the maximum downward stroke of a plurality of vertical rods 7, it is avoided that a plurality of vertical rods 7 are disengaged from the cross plate 6, improving reliability.
[0027] Embodiment 3
[0028] As Figures 1 to 3As shown in the figure, on the basis of Embodiment 1, the driving mechanism 4 includes an upper frame 20, two slide rails 21, two sliders 22, a slide table 23 and two slide bars 27. The upper frame 20 is installed on the frame 1, the two slide rails 21 are installed on the upper frame 20, the two slide rails 21 are located on the left and right sides of the conveyor belt 2, the two sliders 22 are respectively slidably installed on the two slide rails 21, the two sliders 22 are connected by two slide bars 27, the slide table 23 is slidably installed on the two slide bars 27, and the fixed end of the lifting cylinder 5 is installed on the slide table 23; it also includes a plurality of synchronous pulleys 24, two synchronous belts 25, a first motor 26, a lead screw 28 and a second motor 29. The plurality of synchronous pulleys 24 are respectively rotatably installed on both sides of the upper frame 20, the two synchronous belts 25 are respectively sleeved on the plurality of synchronous pulleys 24, the two synchronous belts 25 are respectively located on the left and right sides of the upper frame 20, the two synchronous belts 25 are respectively connected to the two sliders 22, the first motor 26 is installed on the upper frame 20, and the synchronous pulley 24 driven by the output shaft of the first motor 26 rotates. The lead screw 28 is rotatably installed on the two sliders 22, and the lead screw 28 is in transmission connection with the slide table 23 through a lead screw nut. The second motor 29 is installed on the slider 22, and the output shaft of the second motor 29 is in transmission connection with the lead screw 28.
[0029] The first motor 26 drives the plurality of synchronous pulleys 24 to rotate, the plurality of synchronous pulleys 24 drive the two synchronous belts 25 to rotate synchronously, so that the two synchronous belts 25 drive the two sliders 22 to move synchronously along the two slide rails 21. The two sliders 22 moving synchronously along the two slide rails 21 drive the slide table 23 and the lifting cylinder 5 to move longitudinally. The second motor 29 drives the lead screw 28 to rotate, and the lead screw 28 drives the slide table 23 to move along the two slide bars 27 through a lead screw nut. The slide table 23 drives the lifting cylinder 5 to move transversely along the two slide bars 27, realizing the flexible movement of the plurality of suction cups 8 on the conveyor belt 2, facilitating the sequential adsorption and grasping of the plurality of low-resistance AGM separators, and facilitating the loading of the plurality of low-resistance AGM separators into the packing box.
[0030] As Figures 1 to 5As shown in the figure, for a finished product packaging machine of a low-resistance AGM separator of the present utility model, during operation, first, the conveyor belt 2 conveys the low-resistance AGM separator and the packaging box towards the L-shaped plate 3. The first motor 26 and the second motor 29 operate to drive the lifting cylinder 5 to move. Then, when the cross plate 6 moves above the low-resistance AGM separator, the piston rod of the lifting cylinder 5 extends to drive the cross plate 6 to descend, so that the suction cup 8 at the rearmost position adsorbs to the front end of the upper end face of the low-resistance AGM separator. The cross plate 6 continues to descend, causing the other suction cups 8 that have not adsorbed the low-resistance AGM separator to fall onto the upper end face of the conveyor belt 2. The corresponding plug plate 11 is inserted into the corresponding slot 10 to hold the vertical rod 7. The piston rod of the lifting cylinder 5 contracts to lift the low-resistance AGM separator. Repeat the above operations until all the suction cups 8 respectively adsorb the low-resistance AGM separators, and make multiple low-resistance AGM separators stacked horizontally and staggered neatly. Then, the conveyor belt 2 conveys the packaging box to the first support plate of the L-shaped plate 3, and makes the box opening of the packaging box face the conveyor belt 2. The bottom of the packaging box abuts against the second support plate. The driving mechanism 4 drives the lifting cylinder 5 to move towards the packaging box, and loads multiple low-resistance AGM separators into the packaging box as a whole. And multiple suction cups 8 release multiple low-resistance AGM separators. Finally, after one suction cup 8 adsorbs the sucked block 19, the piston rod of the lifting cylinder 5 contracts to lift multiple vertical rods 7 and multiple suction cups 8, so that the sucked block 19 pulls the ejector rod 17 through the pull rod 18, causing the L-shaped plate 3 to start rotating towards the outside of the conveyor belt 2, driving the packaging box to stand upright so that the second support plate holds the packaging box, and making multiple low-resistance AGM separators loaded into the packaging box as a whole under the action of gravity. The sucked block 19 rises again to drive the L-shaped plate 3 to rotate a certain angle towards the outside of the conveyor belt 2 again, causing the second support plate to tilt downwards, so that the packaging box slides outwards along the second support plate to the subsequent station. The suction cup 8 adsorbs the sucked block 19 and descends, causing the sucked block 19 and the L-shaped plate 3 to reset, and completing the automatic packing of the low-resistance AGM separator.
[0031] The main functions achieved by the present utility model are:
[0032] 1. When loading the low-resistance AGM separator, the packaging box is stable and does not shift, and the loading is in place;
[0033] 2. It can automatically discharge materials, with good practicability;
[0034] 3. Synchronously convey the low-resistance AGM separator and the packaging box, with a more compact structure and a reasonable packaging rhythm.
[0035] A finished product packaging machine for low-resistance AGM separators of the present utility model has an installation method, connection method, or setting method that are all common mechanical methods, and any implementation that can achieve its beneficial effects can be carried out; the frame 1, conveyor belt 2, lifting cylinder 5, suction cup 8, spring 12, pushing cylinder 13, slide rail 21, slider 22, sliding table 23, synchronous pulley 24, synchronous belt 25, motor 1 26, slide bar 27, lead screw 28, and motor 2 29 of the finished product packaging machine for low-resistance AGM separators of the present utility model are purchased on the market. Those skilled in the art only need to install and operate according to the attached user manual, without the need for creative labor from those skilled in the art.
[0036] All technical and scientific terms used in this article have the same meaning as commonly understood by those skilled in the technical field to which the present utility model belongs. The terms used in the specification of the present utility model are only for the purpose of describing specific embodiments and are not intended to limit the present utility model. The term "and / or" used in this article includes any and all combinations of one or more of the related listed items.
[0037] The above are only the preferred embodiments of the present utility model. It should be noted that for those of ordinary skill in the art in the technical field, without departing from the technical principle of the present utility model, several improvements and modifications can be made, and these improvements and modifications should also be regarded as the protection scope of the present utility model.
Claims
1. A low-resistance AGM separator finished product packaging machine, comprising a frame (1) and a conveyor belt (2), wherein the conveyor belt (2) is mounted on the frame (1); characterized in that: The utility model also comprises an L-shaped plate (3), a driving mechanism (4), a lifting cylinder (5), a horizontal plate (6), a vertical rod (7), a suction cup (8) and a flipping assembly. The L-shaped plate (3) is provided with a vertically arranged support plate 1 and a second support plate. The support plate 1 is rotatably connected to the frame (1). When the end of the support plate 1 is aligned with the upper end surface of the output end of the conveyor belt (2), the support plate 2 is vertically upward. The flipping assembly drives the L-shaped plate (3) to flip. The driving mechanism (4) is mounted on the frame (1). The fixed end of the lifting cylinder (5) is mounted on the driving mechanism (4). The driving mechanism (4) drives the lifting cylinder (5) to move. The lower end of the piston rod of the lifting cylinder (5) is mounted on the horizontal plate (6). The upper ends of the plurality of vertical rods (7) are evenly and movably inserted on the horizontal plate (6). The lower ends of the plurality of vertical rods (7) are all mounted with suction cups (8). The horizontal plate (6) is mounted with a locking assembly for clamping and releasing the plurality of vertical rods (7).
2. A low-resistance AGM separator finished product packaging machine as claimed in claim 1, characterized in that: It also comprises a partition (9), which is located above the middle of the conveyor belt (2), and the partition (9) divides the frame (1) into two left and right parts along the conveying direction of the conveyor belt (2), and the two parts respectively convey the low-resistance AGM partition and the packaging box.
3. A low-resistance AGM separator finished product packaging machine as claimed in claim 1, characterized in that: The locking assembly comprises a plurality of slots (10), a plurality of plug plates (11), a plurality of springs (12), a push cylinder (13), a push rod (14) and a plurality of push blocks (15); a plurality of slots (10) are arranged on the side walls of the plurality of vertical rods (7); a plurality of plug plates (11) are slidably mounted on the horizontal plate (6); one end of the plurality of springs (12) is respectively connected to the plurality of plug plates (11); the other end of the plurality of springs (12) is connected to the horizontal plate (6); the elastic force of the plurality of springs (12) pushes the plurality of plug plates (11) to lock the plurality of vertical rods (7); ) are pushed toward the multiple slots (10) of the multiple vertical rods (7), the multiple springs (12) are matched with the multiple slots (10), the push cylinder (13) is installed on the cross plate (6), the piston rod of the push cylinder (13) is connected with the push rod (14), the push rod (14) is slidably installed on the cross plate (6), and the push rod (14) is provided with multiple push blocks (15), the multiple push blocks (15) are respectively aligned with the multiple plug plates (11), and the multiple push blocks (15) push the multiple plug plates (11) to disengage from the multiple slots (10).
4. A low-resistance AGM separator finished product packaging machine as claimed in claim 1, characterized in that: It also comprises a plurality of limit blocks (16), which are respectively mounted on the upper end side walls of the plurality of vertical rods (7), and the plurality of limit blocks (16) limit the descending travel of the plurality of vertical rods (7).
5. A low-resistance AGM separator finished product packaging machine as claimed in claim 1, characterized in that: The flip assembly comprises a push rod (17), a pull rod (18) and a sucked block (19); a notch is provided on the support plate 1 of the L-shaped plate (3); the push rod (17) is mounted on the lower end surface of the support plate 1 of the L-shaped plate (3); the lower end of the pull rod (18) is rotatably connected to the lower end of the push rod (17); the upper end of the pull rod (18) is rotatably connected to the lower end surface of the sucked block (19); the sucked block (19) is placed on the upper end surface of the support plate 1 of the L-shaped plate (3) through the notch; and the sucked block (19) is sucked by the suction cup (8).
6. A low-resistance AGM separator finished product packaging machine as claimed in claim 1, characterized in that: The driving mechanism (4) comprises an upper frame (20), two slide rails (21), two sliders (22), a slide table (23) and two slide bars (27); the upper frame (20) is mounted on the frame (1); the two slide rails (21) are mounted on the upper frame (20); the two slide rails (21) are located on the left and right sides of the conveyor belt (2); the two sliders (22) are respectively slidably mounted on the two slide rails (21); the two sliders (22) are connected via two slide bars (27); the slide table (23) is slidably mounted on the two slide bars (27); and the fixed end of the lifting cylinder (5) is mounted on the slide table (23).
7. A low-resistance AGM separator finished product packaging machine as claimed in claim 6, characterized in that: The invention also comprises a plurality of synchronous wheels (24), two synchronous belts (25), a motor 1 (26), a screw rod (28) and a motor 2 (29). The plurality of synchronous wheels (24) are respectively rotatably mounted on both sides of an upper frame (20). The two synchronous belts (25) are respectively mounted on the plurality of synchronous wheels (24). The two synchronous belts (25) are respectively located on the left and right sides of the upper frame (20). The two synchronous belts (25) are respectively connected to two sliders (22). The motor 1 (26) is mounted on the upper frame (20). The output shaft of the motor 1 (26) drives the synchronous wheels (24) to rotate. The screw rod (28) is rotatably mounted on the two sliders (22). The screw rod (28) is connected to the slide table (23) by a screw rod nut. The motor 2 (29) is mounted on the slider (22). The output shaft of the motor 2 (29) is connected to the screw rod (28) by a screw rod nut.
Citation Information
Patent Citations
Nested packaging equipment for battery separator
CN217624375U