Automatic rubberizing machine for new energy battery and use method of automatic rubberizing machine

By designing a new energy battery automatic glue sticker, using the combined structure of the main body and the main box, combined with the traction and cutting mechanism, the problems of poor adhesion effect and insufficient automation in the existing technology are solved, and an efficient and automated glue sticking process is achieved.

CN120096918AActive Publication Date: 2025-06-06SHANGHAI HONGZHE AUTOMATION TECH CO LTD
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Patent Information

Application Number
CN202510586775.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-08
Publication Date
2025-06-06
Estimated Expiration
2045-05-08

AI Technical Summary

Technical Problem

The existing new energy battery automatic glue stickers are not firm enough in adhesion effect and are insufficient in automation, so they require manual secondary glue stickers, resulting in cumbersome and inconvenience.

Method used

A new energy battery automatic glue sticker is designed, which adopts a structure that combines the main body of the conveying equipment and the main box. By driving the motor, the screw is driven to rotate, the slider moves and pushes the pressure roller to press down, improving the adhesion stability between the adhesive tape and the new energy battery. At the same time, a traction mechanism and a cutting mechanism are provided to realize automatic stretching, clamping and cutting of the tape.

Benefits of technology

It improves the adhesion stability between the adhesive tape and new energy batteries, realizes automatic glue patching, reduces manual intervention, and improves glue patching efficiency and accuracy.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses an automatic rubberizing machine for a new energy battery and a use method of the automatic rubberizing machine. The automatic rubberizing machine comprises a conveying equipment main body, a main body box, a rubber pulling mechanism and a connecting arm, through the main body box arranged at the top end of the conveying equipment main body, the main body box is internally provided with a movable cavity I, a driving motor I, a screw I, a pressing mechanism, a pressing roller and other assemblies, under the mutual cooperation, an adhesive tape can be adhered to the surface of the new energy battery through the pressing mechanism and the pressing roller, pressing is performed, the connection stability of the adhesive tape and the new energy battery is improved, and the production efficiency is improved. The bottom end of the main body box is connected with the adhesive pulling mechanism, and the adhesive pulling mechanism comprises a bottom plate, a moving mechanism, a traction mechanism, a cutting mechanism and other components which are matched with one another to realize traction and pulling of the adhesive tape, so that the adhesive tape is positioned at the top end of the new energy battery, the adhesive pasting efficiency can be improved, manual intervention is reduced, the working efficiency is effectively improved, and the working requirements of people are met.
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Description

Technical Field

[0001] The present invention relates to the technical field of new energy batteries, and in particular to an automatic glue sticking machine for new energy batteries and a method for using the same. Background Art

[0002] New energy batteries refer to efficient and environmentally friendly battery technologies used in the storage and utilization of clean energy. They mainly serve the fields of electric vehicles, renewable energy storage, smart grids, etc., and are one of the key technologies to promote energy transformation.

[0003] In order to ensure safety, improve performance and optimize structure, new energy batteries will be glued to fix the battery cells and prevent vibration displacement and expansion deformation. At the same time, the gluing process can also simplify the battery pack design, improve energy density and reduce costs, and assist in battery health monitoring and recycling and disassembly. It is a core technology that balances safety and energy efficiency.

[0004] When some existing automatic gluing machines for new energy batteries are gluing new energy batteries, the adhesion between the tape and the new energy battery is poor and the adhesion is not strong enough, which may cause the tape to fall off the new energy battery, affecting the gluing effect. In addition, the degree of automation is relatively insufficient, and manual secondary gluing is required, which is relatively cumbersome and inconvenient. Summary of the invention

[0005] The purpose of the present invention is to provide a new energy battery automatic glue sticking machine and a method of using the same to solve the problems raised in the above background technology.

[0006] In order to achieve the above-mentioned purpose, the present invention adopts the following technical scheme: an automatic glue sticking machine for new energy batteries, comprising a conveying device body, comprising a main body box arranged at the top of the conveying device body, the bottom end of the main body box is connected to a glue pulling mechanism, and the top end is connected to a connecting arm; A movable cavity is provided at the middle end of the main body box, a driving motor is provided at the top of the movable cavity, a screw is connected to the bottom end of the driving shaft of the driving motor, a pressing mechanism is connected to the bottom end of the screw, and a slider is connected to the outside, the left and right ends of the slider are connected to a group of pressure rollers through a connecting frame, and sliding grooves corresponding to the two groups of pressure rollers are provided on the front and back sides of the movable cavity.

[0007] By adopting the above technical solution, a driving motor can drive a screw rod to rotate and drive a slider rod to move along the screw rod. During the movement of the slider rod, the two sets of pressure rollers can be pushed to move through the connecting frame and the slide groove to press the tape downward, thereby improving the adhesion stability between the tape and the new energy battery.

[0008] Preferably, the pressing mechanism includes a fixed seat, a lower pressure frame and a spring. A group of fixed seats are provided at the middle end of the inner bottom of the movable cavity. The top end of the fixed seat is connected to a screw rod, and the bottom end is connected to the lower pressure frame. The top end of the fixed seat and the bottom end of the lower pressure frame are connected by a spring.

[0009] By adopting the above technical solution, the lower pressing frame can move up and down along the outer side of the fixing seat and be reset and recovered by the spring.

[0010] Preferably, the left and right ends of the sliding block are both provided with a group of connecting side plates, and the left and right ends of the bottom surface are both provided with a group of lower pressure plates.

[0011] By adopting the above technical solution, when the slider moves to the bottom end of the screw rod, the lower pressing frame can be squeezed by the lower pressing plate, so that the lower pressing frame moves downward to compact the tape.

[0012] Preferably, the glue pulling mechanism includes a bottom plate, a movable mechanism, a traction mechanism and a cutting mechanism. The bottom ends of the front and rear surfaces of the main box are connected to a group of bottom plates. Both groups of bottom plates are provided with movable cavities 2. Both movable cavities 2 are connected to a group of movable mechanisms. The left ends of the opposite surfaces of the front and rear groups of bottom plates are provided with traction mechanisms, and the right ends of the opposite surfaces are provided with cutting mechanisms. The rear end of the traction mechanism is connected to the movable mechanism at the rear end, and the front end of the cutting mechanism is connected to the movable mechanism at the front end.

[0013] By adopting the above technical solution, the moving mechanism can respectively drive the traction mechanism and the cutting mechanism to move left and right between the two sets of bottom plates to achieve the stretching and cutting of the tape to meet different size requirements.

[0014] Preferably, the components of the moving mechanism are all the same, a set of screw rods 2 are provided in the movable cavity 2 at the rear end, the left end of the screw rods 2 passes through the left end of the base plate at the rear end and is connected to a set of drive motors 2, and the outer end of the screw rods 2 is connected to a set of sliders 2.

[0015] By adopting the above technical solution, the second driving motor can drive the second screw to rotate, and the second slider can move along the second screw, which can drive the traction mechanism and the cutting mechanism to move.

[0016] Preferably, the traction mechanism includes a traction frame, a rotating groove, a roller, a clamping piece, a movable cavity three, a gear and a driving motor three, the front end of the slider two at the rear end extends to the front end of the base plate at the rear end and is connected to a group of traction frames, the middle end of the traction frame is provided with a rotating groove, the upper and lower ends of the rotating groove are connected to a group of rollers, the right ends of the two groups of rollers are connected to a group of clamping pieces, and the rear end of the traction frame is provided with an movable cavity three near the rotating groove, the upper and lower ends of the movable cavity three are provided with a group of gears corresponding to the positions of the two groups of rollers, the rear ends of the two groups of rollers extend through the movable cavity three and are connected to the front end of the gear, and the rear end of the gear at the bottom is connected to a group of driving motors three.

[0017] By adopting the above technical solution, driving motor three can drive the bottom gear to rotate, and make the two sets of gears mesh and rotate with each other, driving the two sets of rollers and the clamping parts to rotate, and clamping and fixing one end of the tape through the clamping part, so as to facilitate the grabbing and stretching of the tape.

[0018] Preferably, the cutting mechanism includes a movable seat, a movable through groove 1, a rotating frame, an intermediate rod and a driving mechanism. The rear end of the slider 2 at the front end extends to the rear end of the bottom plate at the front end and is connected to a group of movable seats. A group of movable through grooves 1 is provided at the middle end of the movable seat. A group of rotating frames are connected to the upper and lower ends of the left end of the movable through groove 1. Two groups of intermediate rods are provided between the two groups of rotating frames. A driving mechanism is provided at the front end of the top of the movable seat.

[0019] Preferably, the right end of the rotating frame is connected to the left end of the movable through slot 1, and a movable through slot 2 is provided on the outer side near the right end, and a group of cutting tools are connected to the left end of the rotating frame.

[0020] By adopting the above technical solution, the adhesive tape can be cut by rotating the two sets of rotating frames.

[0021] Preferably, the driving mechanism includes a motor cabin, four driving motors, a turntable, one fixed shaft, a movable plate, three moving slots, two fixed shafts and a connecting slot; the front end of the movable seat top is connected to a motor cabin, a group of driving motors four are provided in the rear end of the motor cabin, the front end of the driving shaft of the driving motor four is connected to a group of turntables, the front outer end of the turntable is connected to a group of fixed shaft one, a group of movable plates are provided in the front end of the motor cabin, the top of the movable plate is provided with moving slots three corresponding to the fixed shaft one, the rear end is provided with a group of fixed shaft two corresponding to the two groups of moving slots two, and the bottom end in the motor cabin is connected to the left end of the moving slot one through a connecting slot.

[0022] By adopting the above technical solution, the rotation of the turntable can drive the fixed shaft 1 to perform circular motion, and then drive the movable plate to move left and right. The movable plate can drive the two sets of rotating frames to rotate through the cooperation of the fixed shaft 2 and the movable through slot 2, thereby realizing automatic cutting of the tape.

[0023] The present application provides a method for using a new energy battery automatic glue sticking machine, comprising the following steps: S1: The new energy battery is moved to the bottom of the main box through the main body of the conveying equipment; S2: The left end of the tape passes through the movable slot 1 and is clamped up and down by two sets of clamping parts; S3: The rear moving mechanism drives the slider 2 and the traction frame to move to the left, pulling the rubber pull to the upper end of the new energy battery; S4: driving motor 1 drives screw 1 to rotate, slider 1 moves downward along screw 1, and moves two sets of pressing rollers through two sets of connecting frames; S5: Two sets of pressing rollers move along the slide groove, and press the tape downward when moving downward, so that the tape is adhered to the top surface of the new energy battery; S6: When the slider continues to move downward, the two sets of rollers are moved to the left and right ends of the top surface of the new energy battery by connecting the frame and the slide groove to compact the tape; S7: When the two sets of pressing rollers move to the left and right ends close to the top surface of the new energy battery, the two sets of clamping members release the clamping of the left end of the tape, and the cutting mechanism cuts the right end of the tape; S8: The two sets of pressing rollers continue to move to compact the two ends of the tape; S9: When the slider moves to the bottom, the lower pressing frame is squeezed by the lower pressing plate, and the lower pressing frame compacts the tape at the top middle end of the new energy battery; S10: Recover slider 1, drive two sets of pressure rollers to reset, complete the gluing of a set of new energy batteries, and the main body of the conveying equipment drives the new energy battery to move, and replace the next new energy battery glue.

[0024] Compared with the prior art, the present invention has the following beneficial effects: 1. The present invention is provided with a conveying device body, on which new energy batteries are placed at equal intervals. The new energy batteries can be automatically transported to the bottom of the main box through the conveying device body, making it easier for the main box to glue the new energy batteries; 2. The present invention uses a main body box arranged at the top of the conveying device body, and the main body box includes components such as a movable chamber, a screw, a pressing mechanism, a slider, a connecting frame and a pressing roller. Under the cooperation of each other, the pressing mechanism and the pressing roller can press the adhesive tape to improve the adhesion stability between the adhesive tape and the new energy battery; 3. The present invention has a traction mechanism disposed at the left end of the two sets of bottom plates facing each other. The traction mechanism includes a traction frame, a roller, a clamping member, a gear and a driving motor. One end of the tape can be clamped and grabbed by the gear, the roller and the clamping member, so as to facilitate the stretching and movement of the tape. 4. The present invention has a cutting mechanism disposed at the right end of the opposite surfaces of the two groups of bottom plates. The cutting mechanism includes components such as a movable seat, a movable through slot, a rotating frame, an intermediate rod and a driving mechanism. The automatic cutting of the tape can be achieved by cooperating with each other, avoiding manual cutting and improving the accuracy and stability of cutting. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] Figure 1 It is a structural schematic diagram of the present invention; Figure 2 It is a schematic diagram of the internal structure of the main box of the present invention; Figure 3 It is a schematic diagram of the local structure of the bottom end of the screw rod of the present invention; Figure 4 It is a schematic diagram of a slider-connection structure of the present invention; Figure 5 It is a schematic diagram of the local structure of the left end of the rear end active chamber 2 of the present invention; Figure 6 It is a schematic diagram of the internal structure of the traction frame of the present invention; Figure 7 It is a schematic diagram of the internal structure of the mobile seat of the present invention; Figure 8 for Figure 7 The enlarged structural diagram at A in the middle; Fig. 9 It is a schematic diagram of the connection structure between the rotating frame and the moving plate of the present invention.

[0026] In the figure: conveying equipment body-1, main box-2, glue pulling mechanism-3, connecting arm-4, movable chamber-21, driving motor-22, screw-23, pressing mechanism-24, slider-25, connecting frame-26, pressure roller-27, slide-28, fixed seat-241, lower pressure frame-242, spring-243, connecting side plate-251, lower pressure plate-252, bottom plate-31, moving mechanism-32, traction mechanism-33, cutting mechanism-34, movable chamber-311, screw-321, driving motor-322, slider-323, traction Frame 331, rotating slot 332, roller 333, clamping piece 334, movable cavity 335, gear 336, driving motor 337, moving seat 341, moving slot 1 342, rotating frame 343, intermediate rod 344, driving mechanism 345, moving slot 2 3431, cutting tool 3432, motor cabin 3551, driving motor 4 3552, turntable 3553, fixed shaft 1 3554, moving plate 3555, moving slot 3 3556, fixed shaft 2 3557, connecting slot 3558. DETAILED DESCRIPTION

[0027] In order to further explain the technical solution of the present invention, it is described in detail below through specific embodiments.

[0028] See also Figure 1 The present invention provides an automatic glue sticking machine for new energy batteries, including a conveying device body 1, including a main body box 2 arranged at the top of the conveying device body 1, the bottom end of the main body box 2 is connected to a glue pulling mechanism 3, and the top end is fixedly connected to a connecting arm 4 for easy installation and connection with external equipment.

[0029] Specifically, the conveying equipment body 1 can automatically transport the new energy battery to the bottom of the main box 2, and the glue pulling mechanism 3 can stretch and cut the tape to facilitate the gluing of the new energy battery.

[0030] See also Figure 2 A movable chamber 21 is provided at the middle end of the main body box 2, and a group of driving motors 22 are installed at the top of the movable chamber 21. A group of screws 23 are fixedly connected to the bottom end of the driving shaft of the driving motor 22. The rotation of the driving shaft of the driving motor 22 can drive the screws 23 to rotate. The bottom end of the screw 23 is rotatably connected to a pressing mechanism 24, and a slider 25 is connected to the outside through a thread. The rotation of the screw 23 can drive the slider 25 to move up and down. The left and right ends of the slider 25 are connected to a group of pressure rollers 27 through a connecting frame 26. The front and rear ends of the movable chamber 21 are provided with slide grooves 28 corresponding to the two groups of pressure rollers 27. The front and rear ends of the pressure rollers 27 extend into the slide grooves 28 and can move along the slide grooves 28.

[0031] Specifically, the driving motor 22 can drive the screw 23 to rotate, and drive the slider 25 to move along the screw 23. During the movement of the slider 25, the two sets of pressure rollers 27 can be pushed to move through the connecting frame 26 and the slide groove 28 to press the tape downward, thereby improving the adhesion stability between the tape and the new energy battery.

[0032] See also Figure 2-Figure 3 The pressing mechanism 24 includes a fixed seat 241, a lower pressing frame 242 and a spring 243. A group of inverted "U"-shaped fixed seats 241 are provided at the middle end of the inner bottom of the movable chamber 21. The top of the fixed seat 241 is rotatably connected to the screw rod 23, and the front and rear ends are fixedly connected to the front and rear ends in the movable chamber 21. The bottom end of the fixed seat 241 is slidably connected with a lower pressing frame 242. The lower pressing frame 242 is "U"-shaped, wrapped around the outer side of the fixed seat 241, and can move up and down along the outer side thereof. The top end of the fixed seat 241 and the bottom end of the lower pressing frame 242 are fixedly connected by a spring 243, which is convenient for recovering the lower pressing frame 242.

[0033] Specifically, the lower pressing frame 242 can move up and down along the outer side of the fixed seat 241 to press the tape at the top middle end of the new energy battery, fill the gap between the two sets of pressing rollers 27, ensure the pressing area, improve the connection stability between the tape and the new energy battery, and automatically reset and recover through the elastic force of the spring 243.

[0034] See also Figure 2-Figure 4 A set of connecting side plates 251 are fixed on the left and right ends of the slider 25, and are rotatably connected to the connecting frame 26 through the connecting side plates 251. The connecting frame 26 is in the shape of a door, and its front and rear bottom ends are rotatably connected to the front and rear ends of the pressure roller 27 to facilitate the rotation of the pressure roller 27. A set of lower pressing plates 252 corresponding to the lower pressing frame 242 are fixedly connected to the left and right ends of the bottom surface of the slider 25.

[0035] Specifically, when the slider 25 moves to the bottom end of the screw 23, the lower pressing frame 242 can be squeezed by the lower pressing plate 252, so that the lower pressing frame 242 moves downward to compact the tape, and at the same time, the pressure roller 27 is pushed to the left and right ends through the connecting frame 26 to facilitate the pressing and reinforcement of the tape.

[0036] See also Figure 2 and Figure 5 The glue pulling mechanism 3 includes a bottom plate 31, a moving mechanism 32, a traction mechanism 33 and a cutting mechanism 34. A group of bottom plates 31 are fixedly connected to the bottom ends of the front and rear surfaces of the main body box 2. A second movable cavity 311 is opened in the two groups of bottom plates 31. A group of moving mechanisms 32 are installed in the second movable cavity 311. Among them, the components of the two groups of moving mechanisms 32 are the same, and the installation directions are opposite. The traction mechanism 33 is installed at the left end of the opposite surface of the front and rear groups of bottom plates 31, and the cutting mechanism 34 is connected to the right end of the opposite surface. The rear end of the traction mechanism 33 is connected to the rear end moving mechanism 32, and the front end of the cutting mechanism 34 is connected to the front end moving mechanism 32.

[0037] Specifically, the front and rear moving mechanisms 32 can respectively drive the traction mechanism 33 and the cutting mechanism 34 to move left and right between the two bottom plates 31 to achieve the stretching and cutting of the tape to meet different size requirements.

[0038] See also Figure 2 and Figure 5 The components of the moving mechanism 32 are all the same. A set of screw rods 321 are rotatably connected in the rear movable chamber 311. The left end of the screw rods 321 passes through the left end of the rear bottom plate 31 and is connected to a set of driving motors 322. The driving shaft of the driving motor 322 rotates to drive the screw rods 321 to rotate. The outer end of the screw rods 321 is connected to a set of sliders 323 through threads. The rotation of the screw rods 321 can drive the sliders 323 to move along the screw rods 321.

[0039] Specifically, the second driving motor 322 can drive the second screw rod 321 to rotate, and make the second slider 323 move along the second screw rod 321, and can drive the traction mechanism 33 and the cutting mechanism 34 to move.

[0040] See also Figure 5-Figure 6 The traction mechanism 33 includes a traction frame 331, a rotating groove 332, a roller 333, a clamping piece 334, a movable cavity 335, a gear 336 and a driving motor 337. The front end of the rear end slider 323 extends to the front end of the rear end bottom plate 31 and is fixedly connected with a group of traction frames 331. The middle end of the traction frame 331 is provided with a rotating groove 332. The upper and lower ends of the rotating groove 332 are both rotatably connected with a group of rollers 333. The right ends of the two groups of rollers 333 are both fixedly connected with a group of clamping pieces 334. The rotation of the two groups of rollers 333 can drive the two groups of clamping pieces 334 to move relative to each other, so as to clamp and grab the tape, and the traction mechanism 33 includes a traction frame 331, a rotating groove 332, a roller 333, a clamping piece 334, and a plurality of rollers 333 are connected to the right ends of the two groups of rollers 3 ... A movable cavity three 335 is provided at a position near the rotating through slot 332 at the rear end of the lead frame 331, and a group of gears 336 are installed at the upper and lower ends of the movable cavity three 335 corresponding to the two groups of rollers 333. The two groups of gears 336 are meshed with each other, and the rear ends of the two groups of rollers 333 extend into the movable cavity three 335 and are fixedly connected to the front ends of the gears 336. The rotation of the two groups of gears 336 can drive the two groups of rollers 333 to rotate, and a group of driving motors three 337 is installed at the rear end of the bottom gear 336, and the driving shaft of the driving motor three 337 is fixedly connected to the rear end of the bottom gear 336, which can drive the bottom gear 336 to rotate.

[0041] Specifically, the driving motor 337 can drive the bottom gear 336 to rotate, and make the two sets of gears 336 mesh with each other and rotate, driving the two sets of rollers 333 and the clamping member 334 to rotate, and clamping and fixing one end of the tape through the clamping member 334 to facilitate the grabbing and stretching of the tape.

[0042] See also Figure 1 and Figure 7 The cutting mechanism 34 includes a movable seat 341, a movable through slot 1 342, a rotating frame 343, an intermediate rod 344 and a driving mechanism 345. The rear end of the front end slider 2 323 extends to the rear end of the front end bottom plate 31 and is fixedly connected to a group of movable seats 341. A group of movable through slots 1 342 is opened in the middle end of the movable seat 341, and the adhesive tape can pass through the movable through slots 1 342, wherein the movable through slots 1 342 are wide on the left and narrow on the right, and the inner left end can be used for the rotating frame 343 to rotate. The upper and lower ends of the left end of the movable through slot 1 342 are rotatably connected to a group of rotating frames 343. Two groups of intermediate rods 344 are fixed between the two groups of rotating frames 343. The adhesive tape passes between the two groups of intermediate rods 344. The front end of the cut adhesive tape is located at the left end of the two groups of intermediate rods 344. The adhesive tape can be supported by the two groups of intermediate rods 344, which is convenient for the clamping and grabbing of the adhesive tape by the clamping member 334. The driving mechanism 345 is installed on the front end of the top of the movable seat 341.

[0043] Specifically, the adhesive tape can pass between the movable through slot 1 342 and the two sets of middle rods 344 and extend to the left, and be clamped and grasped by the two sets of clamping members 334 .

[0044] See also Figure 7 and Fig. 9 The rotating frame 343 is in the shape of an inverted "7", and its right end is rotatably connected to the left end of the movable through slot 1 342, and can rotate at the left end of the movable through slot 1 342. A movable through slot 2 3431 is opened on the outer side of the rotating frame 343 near the right end, and a group of cutting tools 3432 are fixedly connected to the left end of the rotating frame 343.

[0045] Specifically, the two groups of rotating frames 343 can rotate in the movable through slot 1 342 , and when the left ends of the two groups of rotating frames 343 are close to each other, the tape can be cut by the cutting tool 3432 .

[0046] See also Figure 7-Figure 9 The driving mechanism 345 includes a motor cabin 3551, a driving motor four 3552, a turntable 3553, a fixed shaft 1 3554, a movable plate 3555, a movable through slot 3556, a fixed shaft 2 3557 and a connecting slot 3558. A motor cabin 3551 is fixedly connected to the front end of the movable seat 341. A driving motor four 3552 is installed at the rear end of the motor cabin 3551. A turntable 3553 is fixedly connected to the front end of the driving shaft of the driving motor four 3552. The rotation of the driving shaft of the driving motor four 3552 can drive the turntable 3553 to rotate. A fixed shaft 1 3554 is fixedly connected to the front outer end of the turntable 3553. A movable plate 3555 is slidably connected to the front end of the motor cabin 3551. A movable through slot 3556 corresponding to the fixed shaft 1 3554 is opened at the top of the movable plate 3555. The front end of the fixed shaft 1 3554 extends to the movable through slot 3 3556, when the turntable 3553 rotates, the fixed shaft one 3554 can move up and down in the moving through slot three 3556 to drive the moving plate 3555 to move left and right, and the rear bottom end of the moving plate 3555 corresponding to the position of the two groups of moving through slots two 3431 is fixedly connected with a group of fixed shafts two 3557, and the two groups of fixed shafts two 3557 are both inserted into the moving through slots two 3431. When the moving plate 3555 moves, the two groups of rotating frames 343 can be driven to rotate relative to each other through the two groups of fixed shafts two 3557, wherein the bottom end in the motor cabin 3551 is connected with the left end in the moving through slot one 342 through the connecting slot 3558, and the bottom end of the moving plate 3555 extends into the moving through slot one 342 through the connecting slot 3558, wherein a guide rod is provided in the moving through slot one 342, and the moving plate 3555 is driven to be slidably connected with the guide rod, which can improve the stability of the moving plate 3555 when moving.

[0047] Specifically, the rotation of the turntable 3553 can drive the fixed shaft 1 3554 to perform circular motion, thereby driving the movable plate 3555 to move left and right. The movable plate 3555 can drive the two sets of rotating frames 343 to rotate through the cooperation of the fixed shaft 2 3557 and the movable through slot 2 3431, thereby realizing automatic cutting of the tape.

[0048] A method for using a new energy battery automatic glue sticking machine comprises the following steps: S1: The new energy battery is moved to the bottom of the main box 2 through the conveying equipment main body 1; S2: The left end of the tape extends to the left through the movable slot 1 342 and between the two sets of intermediate rods 344, and the driving motor 337 drives the gear 336 and the two sets of rollers 333 to rotate, and the tape is clamped and fixed by the clamping member 334; S3: The rear end driving motor 2 322 drives the screw 2 321 to rotate, and the slider 2 323 can drive the traction frame 331 to move to the left, so as to pull the rubber puller to the upper end of the new energy battery; S4: The driving motor 22 drives the screw 23 to rotate, and the slider 25 moves downward along the screw 23 and moves the two sets of pressure rollers 27 through the two sets of connecting frames 26; S5: The two sets of pressing rollers 27 move along the slide groove 28, and press the tape downward when moving downward, so that the tape is adhered to the top surface of the new energy battery; S6: When the slider 25 continues to move downward, the two sets of rollers 27 are moved to the left and right ends of the top surface of the new energy battery through the connecting frame 26 and the slide groove 28 to compact the tape; S7: When the two groups of pressure rollers 27 move to the left and right ends close to the top surface of the new energy battery, the driving motor 337 drives the gear 336 to rotate and the two groups of rollers 333 to rotate, so that the two groups of clamping members 334 release the clamping of the left end of the tape, and the moving seat 341 moves to a suitable position through the front moving mechanism 32, and the rotating disk 3553 and the fixed shaft 1 3554 drive the moving plate 3555 to move to the left, and through the cooperation of the fixed shaft 2 3557 and the moving through slot 2 3431, the left end cutting tools 3432 of the two groups of rotating frames 343 are driven to approach each other, so as to realize automatic cutting of the tape; S8: The two sets of pressing rollers 27 continue to move to compact the two ends of the tape; S9: When the slider 25 moves to the bottom, the lower pressing frame 242 is squeezed by the lower pressing plate 252, and the lower pressing frame 242 compacts the tape at the top middle end of the new energy battery; S10: Recover the slider 25, drive the two groups of pressure rollers 27 to reset, and the spring 243 drives the lower pressure frame 242 to reset, completing the gluing of a group of new energy batteries, and the conveying equipment body 1 drives the new energy battery to move, and replace the next new energy battery for gluing.

[0049] The present invention provides an automatic glue sticking machine for new energy batteries and a method for using the same. A conveying device body 1 is provided, and new energy batteries are placed at equal intervals on the conveying device body 1. The new energy batteries can be automatically transported to the bottom of a main box 2 through the conveying device body 1, so that the main box 2 can stick glue to the new energy batteries. The main box 2 is provided at the top of the conveying device body 1. The main box 2 includes components such as an active cavity 21, a screw 23, a pressing mechanism 24, a slider 25, a connecting frame 26 and a pressing roller 27. Under the cooperation of each other, the pressing mechanism 24 and the pressing roller 27 can press the adhesive tape to improve the adhesion stability between the adhesive tape and the new energy battery. The traction mechanism 33 at the left end of the opposite surface of the plate 31 includes components such as a traction frame 331, a roller 333, a clamping piece 334, a gear 336 and a driving motor 337. One end of the tape can be clamped and grabbed through the gear 336, the roller 333 and the clamping piece 334, so as to facilitate the stretching and movement of the tape. The cutting mechanism 34 is arranged at the right end of the opposite surface of the two groups of bottom plates 31. The cutting mechanism 34 includes components such as a moving seat 341, a moving through slot 342, a rotating frame 343, an intermediate rod 344 and a driving mechanism 345. The automatic cutting of the tape can be realized by cooperating with each other, avoiding manual cutting, and improving the accuracy and stability during cutting.

[0050] The above description is only a preferred example of the present invention and is not intended to limit the present invention. Although the present invention is described in detail with reference to the aforementioned embodiments, those skilled in the art can still modify the technical solutions described in the aforementioned embodiments or replace some of the technical features therein by equivalents. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.

Claims

1. A new energy battery automatic glue sticking machine, comprising a conveying device body (1), characterized in that: It comprises a main body box (2) arranged at the top end of a conveying device main body (1), the bottom end of the main body box (2) is connected to a glue pulling mechanism (3), and the top end is connected to a connecting arm (4); A movable chamber (21) is provided at the middle end of the main body box (2), a driving motor (22) is provided at the top end of the movable chamber (21), a screw (23) is connected to the bottom end of the driving shaft of the driving motor (22), a pressing mechanism (24) is connected to the bottom end of the screw (23), and a slider (25) is connected to the outside, the left and right ends of the slider (25) are connected to a group of pressure rollers (27) via a connecting frame (26), and sliding grooves (28) corresponding to the two groups of pressure rollers (27) are provided on the front and rear sides of the movable chamber (21).

2. According to claim 1, a new energy battery automatic glue sticking machine is characterized in that: The pressing mechanism (24) comprises a fixed seat (241), a lower pressing frame (242) and a spring (243); a group of fixed seats (241) are provided at the middle end of the inner bottom of the movable chamber (21); the top end of the fixed seat (241) is connected to the screw rod (23); the bottom end is connected to the lower pressing frame (242); and the top end of the fixed seat (241) and the bottom end of the lower pressing frame (242) are connected via the spring (243).

3. According to claim 1, the automatic glue sticking machine for new energy batteries is characterized by: The left and right ends of the slider (25) are both provided with a set of connecting side plates (251), and the left and right ends of the bottom surface are both provided with a set of lower pressure plates (252).

4. According to claim 1, the automatic glue sticking machine for new energy batteries is characterized by: The glue pulling mechanism (3) comprises a bottom plate (31), a moving mechanism (32), a traction mechanism (33) and a cutting mechanism (34); the bottom ends of the front and rear surfaces of the main body box (2) are both connected to a group of bottom plates (31); both groups of bottom plates (31) are provided with a second movable cavity (311); both groups of movable cavity (311) are connected to a group of moving mechanisms (32); the left ends of the opposite surfaces of the front and rear groups of bottom plates (31) are provided with a traction mechanism (33); the right ends of the opposite surfaces are provided with a cutting mechanism (34); the rear end of the traction mechanism (33) is connected to the moving mechanism (32) at the rear end; and the front end of the cutting mechanism (34) is connected to the moving mechanism (32) at the front end.

5. According to claim 4, the automatic glue sticking machine for new energy batteries is characterized in that: The components of the moving mechanism (32) are all the same. A set of screw rods (321) are arranged in the movable chamber (311) at the rear end. The left end of the screw rods (321) passes through the left end of the bottom plate (31) at the rear end and is connected to a set of driving motors (322). The outer end of the screw rods (321) is connected to a set of sliders (323).

6. According to claim 5, the automatic glue sticking machine for new energy batteries is characterized in that: The traction mechanism (33) comprises a traction frame (331), a rotating slot (332), a roller (333), a clamping member (334), a movable cavity (335), a gear (336) and a driving motor (337). The front end of the slider (323) at the rear end extends to the front end of the bottom plate (31) at the rear end and is connected to a group of traction frames (331). The middle end of the traction frame (331) is provided with a rotating slot (332). The upper and lower ends of the rotating slot (332) are both connected to a group of rollers (333). The two groups of The right ends of the rollers (333) are connected to a group of clamping members (334), and a movable cavity (335) is provided at a position near the rotating through slot (332) at the rear end of the traction frame (331), and a group of gears (336) are provided at the upper and lower ends of the movable cavity (335) corresponding to the positions of the two groups of rollers (333), and the rear ends of the two groups of rollers (333) extend through the movable cavity (335) and are connected to the front ends of the gears (336), and the rear ends of the gears (336) at the bottom end are connected to a group of driving motors (337).

7. According to claim 5, the automatic glue sticking machine for new energy batteries is characterized in that: The cutting mechanism (34) comprises a movable seat (341), a movable through slot 1 (342), a rotating frame (343), an intermediate rod (344) and a driving mechanism (345); the rear end of the slider 2 (323) at the front end extends to the rear end of the bottom plate (31) at the front end and is connected to a set of movable seats (341); a set of movable through slot 1 (342) is provided at the middle end of the movable seat (341); the left end and the upper and lower ends of the movable through slot 1 (342) are both connected to a set of rotating frames (343); two sets of intermediate rods (344) are provided between the two sets of rotating frames (343); and the driving mechanism (345) is provided at the top front end of the movable seat (341).

8. According to claim 7, the automatic glue sticking machine for new energy batteries is characterized by: The right end of the rotating frame (343) is connected to the left end of the movable through slot 1 (342), and a movable through slot 2 (3431) is provided on the outer side near the right end. The left end of the rotating frame (343) is connected to a group of cutting tools (3432).

9. According to claim 8, the automatic glue sticking machine for new energy batteries is characterized by: The driving mechanism (345) comprises a motor cabin (3551), a driving motor four (3552), a rotating disk (3553), a fixed shaft one (3554), a movable plate (3555), a movable through slot three (3556), a fixed shaft two (3557) and a connecting slot (3558); a motor cabin (3551) is connected to the front end of the top of the movable seat (341); a driving motor four (3552) is provided at the rear end of the motor cabin (3551); a rotating disk (3553) is connected to the front end of the driving shaft of the driving motor four (3552) 3553), the front outer end of the turntable (3553) is connected to a group of fixed shafts (3554), the front end of the motor cabin (3551) is provided with a group of movable plates (3555), the top of the movable plates (3555) is provided with movable through grooves (3556) corresponding to the fixed shafts (3554), and the rear ends are provided with a group of fixed shafts (3557) at positions corresponding to the two groups of movable through grooves (3431), and the bottom end of the motor cabin (3551) is connected to the left end of the movable through groove (3558) inside the movable through groove (342).

10. A method for using an automatic glue sticking machine for new energy batteries, according to any one of claims 1 to 9, characterized in that: The steps include: S1: The new energy battery is moved to the bottom of the main box (2) through the conveying device main body (1); S2: The left end of the adhesive tape passes through the movable through slot 1 (342) and is clamped up and down by two sets of clamping members (334); S3: The rear moving mechanism (32) drives the second slider (323) and the traction frame (331) to move to the left, and pulls the rubber cloth to the upper end of the new energy battery; S4: The driving motor 1 (22) drives the screw 1 (23) to rotate, and the slider 1 (25) moves downward along the screw 1 (23) and moves the two sets of pressure rollers (27) through the two sets of connecting frames (26); S5: The two sets of pressing rollers (27) move along the slide groove (28), and press the adhesive tape downward when moving downward, so that the adhesive tape is adhered to the top surface of the new energy battery; S6: When the slider 1 (25) continues to move downward, the two sets of pressing rollers (27) are moved toward the left and right ends of the top surface of the new energy battery through the connection frame (26) and the slide groove (28) to compact the adhesive tape; S7: When the two sets of pressing rollers (27) move close to the left and right ends of the top surface of the new energy battery, the two sets of clamping members (334) release the clamping of the left end of the tape, and the cutting mechanism (34) cuts the right end of the tape; S8: The two sets of pressing rollers (27) continue to move to compact the two ends of the tape; S9: When the slider 1 (25) moves to the bottom, the lower pressing frame (242) is pressed by the lower pressing plate (252), and the lower pressing frame (242) compacts the tape at the top middle end of the new energy battery; S10: The slider 1 (25) is recovered to drive the two sets of pressure rollers (27) to reset, and the gluing of a set of new energy batteries is completed. The conveying device body (1) drives the new energy battery to move, and the next new energy battery is replaced with the gluing.

Citation Information

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