Soft package battery heat sealing system

By adopting a soft-pack battery heat sealing system during the battery production process, the combination of folding components, top packaging components, side packaging components, detection components and edge cutting components is solved, and the service life and reliability of the battery cell is improved.

CN119944033AActive Publication Date: 2025-05-06UNIV OF JINAN
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Patent Information

Application Number
CN202510423439.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-07
Publication Date
2025-05-06
Estimated Expiration
2045-04-07

AI Technical Summary

Technical Problem

During the production process of battery cells, inconsistent packaging positions lead to inconsistent service life and reliability of battery cells.

Method used

A soft-pack battery heat sealing system is employed, which includes a folding assembly, a top packaging assembly, a side packaging assembly, a detection assembly and a edging assembly. The top and side slots of the soft-pack battery are packaged by providing top and side slots on the storing piece and in conjunction with the combination of these components, and the consistency of packaging position is ensured by providing support pads during packaging.

Benefits of technology

The precise positioning of the packaging position of the soft-pack battery is achieved, ensuring the packaging consistency of each battery cell, thereby improving the service life and reliability of the battery cell.

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Abstract

The invention provides a heat sealing system for a soft package battery, and belongs to the technical field of energy reserve. A top packaging assembly is arranged at the end of a folding assembly, a side packaging assembly is arranged on one side of the folding assembly, a detection assembly is arranged on one side of the side packaging assembly, and an edge cutting assembly is arranged on one side of the detection assembly; the containing part comprises a containing plate, a first containing groove used for containing the soft package battery is formed in the upper end face of the containing plate, a side plate is arranged on the side face of the containing plate, a top groove is formed in the side plate, and the two ends of the top groove are each provided with a side groove. The top groove is matched with the top packaging assembly to complete packaging of the top of the soft package battery, and the two side grooves are matched with the side packaging assembly to complete packaging of the side of the soft package battery. The supporting pads are arranged in the top groove and the side grooves in the packaging process, so that positioning of the packaging process is achieved, and it is guaranteed that the packaging positions of all the soft package batteries are consistent.
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Description

Technical Field

[0001] The invention belongs to the technical field of energy storage, and in particular relates to a soft-pack battery heat sealing system. Background Art

[0002] Battery cells are widely used in electronic devices, such as mobile phones, laptop computers, battery cars, electric cars, electric airplanes, electric ships, electric toy cars, electric toy ships, electric toy airplanes, and electric tools, etc. Battery cells can include nickel-cadmium battery cells, nickel-hydrogen battery cells, ion battery cells, and secondary alkaline zinc-manganese battery cells, etc.

[0003] In the development of battery technology, differences in the process of each battery cell in the production process will lead to inconsistent service life and reliability of the battery cells. For example, inconsistent packaging positions during the packaging process will lead to uncontrollable packaging effects, which will affect the service life and reliability of the battery cells. Summary of the invention

[0004] The invention provides a soft-pack battery heat sealing system.

[0005] In order to achieve the above object, the present invention adopts the following technical solutions: A soft-pack battery heat sealing system comprises a folding component, a top packaging component is arranged at the end of the folding component, a side packaging component is arranged on one side of the folding component, materials between the side packaging component and the top packaging component are transported by a transport component 1, a detection component is arranged on one side of the side packaging component, a trimming component is arranged on one side of the detection component, materials between the side packaging component, the detection component and the trimming component are transported by a transport component 2, a holding component can be fixed on the folding component, the side packaging component, the detection component and the trimming component, the holding component comprises a holding plate, a holding groove 1 for placing the soft-pack battery is arranged on the upper end surface of the holding plate, a side plate is arranged on the side of the holding plate, a top groove is arranged on the side plate, a side groove is arranged at each end of the top groove, the top groove cooperates with the top packaging component to complete the packaging of the top of the soft-pack battery, and the two side grooves cooperate with the side packaging component to complete the packaging of the side of the soft-pack battery.

[0006] The present invention provides a containing piece, and provides a top groove and a side groove on the containing piece, so that the top groove is used in conjunction with the top packaging component to complete the top packaging of the soft-pack battery, and the side groove is used in conjunction with the side packaging component to complete the side packaging of the soft-pack battery. In addition, by providing support pads in the top groove and the side groove during packaging, not only the positioning of the packaging process is achieved, but also the consistency of the packaging position of each soft-pack battery is ensured. BRIEF DESCRIPTION OF THE DRAWINGS

[0007] Figure 1The three-dimensional structure of the present invention is shown in FIG. Figure 1 ; Figure 2 The three-dimensional structure of the present invention is shown in FIG. Figure 2 ; Figure 3 For the present invention Figure 1 A top view of Figure 4 The three-dimensional folding assembly of the present invention Figure 1 ; Figure 5 The three-dimensional folding assembly of the present invention Figure 2 ; Figure 6 The top package component of the present invention is a three-dimensional Figure 1 ; Figure 7 The top package component of the present invention is a three-dimensional Figure 2 ; Figure 8 For the present invention Figure 7 A three-dimensional diagram of the middle positioning member 1; Fig. 9 For the present invention Figure 7 A top view of the middle positioning member 1; Fig.10 It is a top view of the second heat-sealing member of the present invention; Fig.11 is a three-dimensional diagram of the side packaging component of the present invention; Fig.12 It is a front view of the side packaging component of the present invention; Fig.13 The three-dimensional structure of the feeding assembly in the present invention Figure 1 ; Fig.14 The three-dimensional structure of the feeding assembly in the present invention Figure 2 ; Fig.15 For the present invention Fig.13 Right view of; Fig.16 For the present invention Fig.11 A three-dimensional view of the middle heat seal part three; Fig.17 For the present invention Fig.11 a top view of the middle heat seal member 3; Fig.18 For the present invention Fig.11 right side view of the middle heat seal part 3; Fig.19 For the present invention Fig.11 a three-dimensional view of the middle heat seal member 4; Fig. 20 For the present invention Fig.11 A right side view of the middle heat seal member 4; Fig.21 The three-dimensional structure of the clamping assembly in the present invention Figure 1 ; Fig. 22 The three-dimensional structure of the clamping assembly in the present invention Figure 2 ; Fig.23 It is a front view of the clamping assembly in the present invention; Fig.24 It is a right side view of the clamping assembly in the present invention; Fig.25 is a top view of the clamping assembly of the present invention; Fig.26 For the present invention Fig.21 A bottom view of the middle support plate 6; Fig. 27 The three-dimensional structure of the container in the present invention Figure 1 ; Fig.28 The three-dimensional structure of the container in the present invention Figure 2 ; Fig.29 The three-dimensional structure of the container in the present invention Figure 3 ; Fig.30 A top view of the container in the present invention; Fig.31 For the present invention Fig. 27 The main view; Fig.32 is a three-dimensional diagram of a connecting rod in the present invention; Fig.33 It is the front view of the connecting rod in the present invention.

[0008] In the figure, 1 is a mounting platform, 2 is a folding assembly, 3 is a top packaging assembly, 4 is a side packaging assembly, 5 is a transport assembly 1, 6 is a transport assembly 2, 7 is a detection assembly, 8 is a trimming assembly 1, 9 is a trimming assembly 2, and 10 is a containing component; 201 moving guide rail 1, 202 driving motor 1, 203 slider 1, 204 mounting plate 1, 205 fixing member 1, 206 cylinder 1, 207 mounting plate 2, 208 cylinder 2, 209 moving plate 1, 210 folding rotating roller, 211 clamping assembly, 212 supporting plate 1, 213 cylinder 3, 214 moving plate 2, 215 cylinder 4, 216 moving plate 3, 217 folding plate; 21101 bottom plate two, 21102 supporting column, 21103 supporting plate six, 21104 supporting plate seven, 21105 clamping plate one, 21106 clamping plate two, 21107 cylinder five, 21108 piston five, 21109 connecting block, 21110 connecting plate three, 21111 pressure member, 21112 swing member one, 21113 swing member two, 21114 connecting rod, 21115 mounting rod, 21116 spring one, 21117 fixing member three, 21118 clamping plate three, 21119 swing member three, 21120 clamping plate four, 21121 heat sealing member five, 21122 bracket; 211032 swing groove one, 211033 swing groove two, 211034 positioning groove; 211141 rod body one, 211142 mounting hole, 211143 rod body two; 301 fixed frame 1, 302 fixed plate 1, 303 mounting frame 1, 304 driving motor 2, 305 lead screw 1, 306 connecting piece 1, 307 limiting plate 1, 308 fixed slide rail 1, 309 slider 2, 310 moving frame 1, 311 fixed slide rail 2, 312 slider 3, 313 moving frame 2, 314 positioning piece 1, 315 fixed plate 2, 316 heat sealing piece 2; 31401 bottom block three, 31402 positioning block; 31601 bottom block four, 31602 heat sealing plate six; 401 bottom plate one, 402 support rod one, 403 support plate two, 404 pad, 405 heat sealing part three, 406 support rod two, 407 support plate three, 408 support rod three, 409 support plate four, 410 support rod four, 411 drive motor three, 412 bearing part two, 413 lead screw two, 414 connecting part two, 415 connecting cylinder, 416 telescopic cylinder, 417 installation cylinder, 418 telescopic rod, 419 support plate five, 420 heat sealing part four, 421 fixed frame, 422 fixed slide rail four, 423 slider five, 424 moving plate four, 425 support rod five, 426 limit baffle, 427 telescopic cylinder two, 428 telescopic rod two, 429 holding plate, 430 fixed part two, 431 drive motor four, 432 lead screw three, 433 bearing part three, 434 bearing part four; 40501 bottom block one, 40502 connecting plate one, 40503 connecting plate two, 40504 heat sealing plate one, 40505 trapezoidal reinforcement one, 40506 trapezoidal reinforcement two; 42001 bottom block 2, 42002 heat sealing plate 2, 42003 extrusion block; 1001 a holding plate, 1002 a holding slot 1, 1003 a side plate, 1004 a top slot, 1005 a side slot, 1006 a supporting block, and 1007 a slot. DETAILED DESCRIPTION

[0009] The technical solutions in the embodiments of the present invention will be described clearly and completely below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.

[0010] In the description of the present invention, it is necessary to understand that the terms "upper", "lower", "front", "back", "left", "right", "top", "bottom", "inside", "outside", etc., indicating the orientation or position relationship are based on the orientation or position relationship shown in the drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the present invention.

[0011] Reference Figure 1-31A soft-pack battery heat sealing system comprises a folding component 2, a top packaging component 3 is arranged at the end of the folding component 2, a side packaging component 4 is arranged on one side of the folding component 2, materials between the side packaging component 4 and the top packaging component 3 are transported by a transport component 5, a detection component 7 is arranged on one side of the side packaging component 4, a trimming component is arranged on one side of the detection component 7, materials between the side packaging component 4, the detection component 7 and the trimming component are transported by a transport component 6, and a holding part 10 can be fixed on the folding component 2, the side packaging component 4, the detection component 7 and the trimming component. The stacking assembly 2, the side packaging assembly 4, the detection assembly 7, and the trimming assembly are all arranged on the mounting platform 1. The holding member 10 includes a holding plate 1001. The upper end surface of the holding plate 1001 is provided with a holding groove 1 for placing soft-pack batteries. The side of the holding plate 1001 is provided with a side plate 1003. The side plate 1003 is provided with a top groove 1004. The two ends of the top groove 1004 are respectively provided with a side groove 1005. The top groove 1004 cooperates with the top packaging assembly 3 to complete the packaging of the top of the soft-pack battery. The two side grooves 1005 cooperate with the side packaging assembly 4 to complete the packaging of the side of the soft-pack battery. The trimming assembly includes a trimming assembly 1 8 and a trimming assembly 2 9.

[0012] The present invention provides an embodiment, referring to Figure 4-5The folding assembly 2 includes a moving guide rail 201, a driving motor 202 is provided at the end of the moving guide rail 201, a slider 203 is installed on the moving guide rail 201, the output shaft of the driving motor 202 is fixedly connected to the lead screw 4, the lead screw 4 is connected to the slider 203 by a thread, the slider 203 can move on the moving guide rail 201 when the lead screw 4 rotates, and a mounting plate 204 is fixed on the upper end surface of the slider 203, and a useful A clamping assembly 211 is used to fix the containing member 10. A fixing member 205 is also fixed on the mounting plate 204. A cylinder 206 is installed on the fixing member 205. An end of a piston of the cylinder 206 is fixedly connected to a mounting plate 207. A cylinder 208 is fixed on the mounting plate 204. An end of a piston in the cylinder 208 is fixedly connected to a movable plate 209. A folding rotating roller 210 is installed at an end of the movable plate 209. The folding rotating roller 210 can rotate around the axial direction. A support plate 212 is provided on each side of the movable guide rail 201, and a cylinder 3 213 is fixed on the support plate 212. The cylinder 3 213 is vertically arranged, and the piston 3 in the cylinder 3 213 is arranged upward, and the end of the piston 3 in the cylinder 3 213 is fixedly connected to the movable plate 214, and a cylinder 4 215 is fixed on the movable plate 214, and the end of the piston 4 in the cylinder 4 215 is fixedly connected to the movable plate 3 216, and the movable plate 3 216 is fixedly connected to the folding plate 217.

[0013] The present invention provides an embodiment, referring to Figure 6-7The top packaging component 3 includes a fixed frame 301, on which a fixed plate 302 and a fixed plate 315 are fixed, and a heat sealing drive component is arranged on each of the fixed plate 302 and the fixed plate 315, and a heat sealing drive component 316 is arranged on the upper heat sealing drive component, and a positioning component 314 is arranged on the lower heat sealing drive component, and the heat sealing drive component includes a mounting frame 303, on which a driving motor 304 is arranged, and the output shaft of the driving motor 304 is connected to a lead screw 305 through a coupling, and the lead screw 305 is connected to a connecting component 306 through a thread, and a limiting plate 307 is fixed to the end of the lead screw 305, and the connecting component 306 is fixed on a movable frame 310, and the rear of the movable frame 310 is provided with two parallel arranged Slider 2 309, the slider 2 309 is mounted on the fixed rail 1 308, the fixed plate 1 302 and the fixed plate 2 315 are both fixed with the fixed rail 1 308, the mobile frame 1 310 is fixedly connected to the mobile frame 2 313, the rear part of the mobile frame 2 313 is equipped with two parallel sliders 312, the sliders 312 are mounted on the fixed rail 2 311, the fixed plate 1 302 and the fixed plate 2 315 are both fixed with the fixed rail 2 311, the end of the mobile frame 2 313 of the heat sealing drive assembly is fixed with a positioning piece 1 314 or a heat sealing piece 2 316, the end of the mobile frame 2 313 of the heat sealing drive assembly located at the upper part is fixed with a positioning piece 1 314, the end of the mobile frame 2 313 of the heat sealing drive assembly located at the lower part is fixed with a heat sealing piece 2 316, and the positioning piece 1 and the heat sealing piece 2 are arranged opposite to each other.

[0014] When the folding component 2 and the top packaging component are used together, it is necessary to first place the aluminum-plastic film and the battery cell with the holes punched in them in the containing groove 1002 of the containing part 10, and then place the containing part 10 with the aluminum-plastic film and the battery cell with the holes punched in it on the clamping component 211. Before placing, the cylinder 5 21107 at the lower part of the clamping plate 4 21120 drives the internal piston 5 21108 to extend, and the piston 5 21108 drives the connecting block 21109, the connecting plate 3 21110 and the pressure piece 21111 to move upward, and the pressure piece 21111 squeezes the connecting rod 21114, so that the connecting rod 21114 rotates axially with the rotating axis as the rotating axis, so that the rod body 1 211141 and the pressure piece 211 The end in contact with 11 is pushed by the pressure piece 21111 to rotate upward. When the connecting rod 21114 rotates, the rod body 211143 pushes the swinging piece 1 21112 to move in the direction of the center line of the sliding hole of the fixing piece 3 21117 along with the rotation of the rod body 1 211141. When the swinging piece 1 21112 moves, the swinging piece 1 21112 slides in the sliding hole with the mounting rod. The baffle plate on the mounting rod 21115 presses the spring 1 21116. The swinging piece 1 21112 drives the swinging piece 3 21119 to move. The swinging piece 3 21119 drives the clamping plate 4 21120 to move, so that the distance between the clamping plate 4 21120 and the clamping plate 2 21106 increases. Similarly, the cylinder 5 21107 at the lower part of the clamping plate 3 21118 drives the internal piston 5 21108 to extend, and the piston 5 21108 drives the connecting block 21109, the connecting plate 3 21110 and the pressure piece 21111 to move upward, and the pressure piece 21111 squeezes the connecting rod 21114, so that the connecting rod 21114 rotates axially with the rotating axis as the rotating axis, so that the end of the rod body 1 211141 of the connecting rod 21114 that contacts with the pressure piece 21111 is pushed upward by the pressure piece 21111 and rotates upward. When the connecting rod 21114 rotates, the rod body 21111 of the connecting rod 21114 is pressed against the pressure piece 21111. As the rod body 1 211141 rotates, it pushes the swinging member 1 21112 to move in the direction of the center line of the sliding hole of the fixing member 3 21117. When the swinging member 1 21112 moves, the swinging member 1 21112 slides in the sliding hole with the mounting rod 21115. The baffle on the mounting rod 21115 presses the spring 1 21116. The swinging member 1 21112 drives the swinging member 2 21113 to move. The swinging member 2 21113 moves with the clamping plate 3 21118. The distance between the clamping plate 1 21105 and the clamping plate 3 21118 increases, so that the placing of the containing member 10 is convenient. After the receiving part 10 with the aluminum-plastic film and the battery cell with the holes punched is placed on the clamping assembly 211, the piston 5 21108 is retracted by the cylinder 5 21107, and the clamping plate 3 21118 and the clamping plate 4 21120 return to their original positions under the action of the spring 1 21116 of the mounting rod 21115. When the receiving part 10 placed by the transporting assembly 5 is not in the correct position, the clamping plate 3 21118 and the clamping plate 4 21120 can push the receiving part 10 to move on the supporting plate 7 21104 while swinging, so that the clamping plate 3 21118 and the clamping plate 4 21120 can push the receiving part 10 to move on the supporting plate 7 21104, so that the clamping plate 3 21118 and the clamping plate 4 21120 can move the receiving part 10 to the supporting plate 7 21104. One 21105, clamping plate two 21106, clamping plate three 21118, and clamping plate four 21120 complete the clamping of the container 10. The clamping plate one 21105, clamping plate two 21106, clamping plate three 21118, and clamping plate four 21120 play a clamping role. When the clamping plate one 21105, clamping plate two 21106, clamping plate three 21118, and clamping plate four 21120 complete the clamping of the container, the heat sealing plate seven of the heat sealing piece five 21121 of the clamping assembly is inserted into the top groove 1004 of the container. After the clamping is completed, the piston 1 in the driving cylinder 1 206 is extended, and the piston 1 drives the mounting plate 207 thereon to move upward, and the mounting plate 207 moves upward together with the movable plate 1 209 and the folding rotating roller 210 thereon, and the folding rotating roller 210 moves upward together with the aluminum-plastic film. When the folding rotating roller 210 moves upward, the cylinder 208 simultaneously extends out with the movable plate 1 209 and the folding rotating roller 210 to perform preliminary bending on the aluminum-plastic film. The preliminary bending refers to the part of the aluminum-plastic film close to the clamping plate 3 21118. The length of this part is also relatively long. In the natural state, it hangs on one side of the clamping plate 3 21118 of the clamping assembly 211. The folding rotating roller 210 is driven to rise by the cylinder 1 206, so that the horizontal height of this part of the aluminum-plastic film is higher than the battery cell.Then, the piston 2 in the driving cylinder 208 is extended, so that the folding rotating roller 210 moves closely to the aluminum-plastic film and the battery cell toward the clamping assembly 211, and the folding rotating roller 210 makes an axial rotation on the aluminum-plastic film and the battery cell, and the horizontal height of the folding rotating roller 210 is controlled by the piston 1 in the cylinder 1 206, so that the folding rotating roller 210 moves closely to the aluminum-plastic film and the battery cell toward the clamping assembly 211, and the horizontal height of the folding rotating roller 210 is controlled by the piston 1 in the cylinder 1 206, so that The folding rotating roller 210 moves closely to the aluminum-plastic film and the battery cell toward the clamping assembly 211, so that the lower part of the folding rotating roller 210 contacts the battery cell in the containing part 10, thereby folding the upper aluminum-plastic film to the maximum extent, and folding the upper aluminum-plastic film to the maximum extent, so that the bending part of the aluminum-plastic film is closely to the battery cell, and there is as little gap as possible between the bending part and the battery cell. After the folding is completed, the folding rotating roller 210 is moved a distance away from the clamping assembly 211 by the cylinder 2 208. The distance is less than half of the length of the holding groove 1002, so that the folding rotating roller 210 can also squeeze the upper aluminum-plastic film, and then the slider 203 is driven by the driving motor 202 to move toward the top packaging component 3 on the moving slide rail 1, so that the holding part 10 and the top of the aluminum-plastic film battery cell are inserted between the positioning part 1 314 and the heat-sealing part 2 316 of the top packaging component 3, and the positioning part 1 314 and the heat-sealing part 2 316 are driven by the heat-sealing driving component of the top packaging component 3. The two heat sealing members 316 and 317 move towards each other, so that the positioning block 31402 on the positioning member 1 314 is inserted into the positioning groove 211034 at the bottom of the support plate 6 21103 of the clamping assembly 211, and then the heat sealing member 2 316 contacts the heat sealing member 5 21121 on the clamping assembly 211, and the heat sealing plate 6 31602 on the heat sealing member 2 316 and the heat sealing plate 7 on the heat sealing member 5 21121 start to be heated, and the heat sealing of the aluminum-plastic film is completed through the heating and extrusion of the heat sealing plate 6 31602 and the heat sealing plate 7. After the heat sealing is completed, the heat sealing driving component of the top packaging component 3 controls the positioning member 1 314 and the heat sealing member 2 316 to move in the opposite direction, so that the positioning member 1 314 and the heat sealing member 2 316 are away from the clamping component, and then the folding rotating roller 210 is retracted. When retracting, the piston 1 in the control cylinder 1 206 is first extended, so that the folding rotating roller 210 no longer squeezes the aluminum-plastic film and the battery cell, and then the cylinder 2 208 is controlled to be retracted, so that the folding rotating roller 210 leaves the range of the clamping component 211 (the vertical projection of the clamping component 211), and then the cylinder 1 206 is controlled to be completely retracted, and the slider 1 203 is driven by the driving motor 1 202 to move on the moving slide rail 1 in the direction away from the top packaging component 3. There are at least four suction cups on the transport plate, and the transport plate is a rectangular plate. The transport plate is fixed on the moving member of the transport component 1 5. The moving member is installed on the longitudinal moving component 1, and the moving member can be longitudinally displaced on the longitudinal moving member 1. The longitudinal moving component 1 is installed on the transverse moving component 1, and the longitudinal moving component 1 can be transversely displaced on the transverse moving component 1.The positions of the four suction cups correspond to the four corners of the side plate of the containing part. The transport component 5 drives the transport plate to move to the top of the containing part, and the suction cups on the transport plate suck the four corners of the containing part. At the same time, the transport component 5 moves up to lift the containing part 10 and the semi-finished soft-pack batteries thereon together, and then the transport component 5 moves horizontally to transport the containing part 10 to the top of the containing tray 429 of the side packaging component 4, and then the transport component 5 moves down to place the containing part 10 and the semi-finished soft-pack batteries thereon together in the containing tray 429, and the suction cups release the suction of the containing part 10, thereby completing the transport.

[0015] The present invention provides an embodiment, referring to Figure 11-12 The side packaging assembly includes a bottom plate 401, four support rods 2 406 are fixed on the upper part of the bottom plate 401, the upper ends of the support rods 2 406 are fixedly connected to the support plate 3 407, a support plate 2 403 is fixed to the bottom plate through the support rod 1 402, two parallel pads 404 are fixed on the support plate 2 403, each pad 404 is fixedly connected to a heat sealing member 3 405, a plurality of support rods 3 408 are fixed to the upper end of the support plate 3 407, the upper ends of the support rods 3 408 are fixedly connected to the support plate 4 409, the upper ends of the support plate 4 409 are fixedly connected to the support rod 4 410, the upper ends of the support rod 4 410 are fixedly connected to the support plate 8, a drive motor 3 411 is fixed on the support plate 8, the output shaft of the drive motor 3 411 is connected to the lead screw 2 413 through a coupling, and the support A bearing piece 2 412 is installed at the center of the support plate 409, the inner ring of the bearing piece 2 412 is fixedly connected to the screw 2 413, the screw 2 413 is connected to the connecting piece 2 414 through a thread, the connecting piece 2 414 is fixedly connected to the connecting tube 415, the end of the connecting tube 415 is fixedly connected to the support plate 5 419, the support plate 5 419 is fixedly connected to the ends of a plurality of telescopic rods 418, the telescopic rods 418 extend into the interior of the telescopic tube 1 416, the end of the telescopic tube 1 416 is fixedly connected to the support plate 409, the outside of the telescopic tube 1 416 is fixedly provided with a mounting tube 417, the mounting tube 417 is fixedly connected to the support plate 3 407, the lower end of the support plate 5 419 is fixedly provided with two parallelly arranged pads 404, each pad 404 on the support plate 5 419 is fixedly connected to a heat sealing piece 420. The heat sealing part 420 comprises a bottom block 42001, and a heat sealing plate 42002 and an extrusion block 42003 are arranged on the upper end surface of the bottom block 42001.

[0016] The present invention provides an embodiment, referring to Figure 13-15The side packaging assembly is provided with a supporting feeding assembly, and the feeding assembly includes a fixed frame 421, a fixed slide rail 422 is laid on the upper part of the fixed frame 421, a slider 5 423 is installed on the fixed slide rail 422, and the slider 5 423 is fixedly connected to a movable plate 424. A plurality of support rods 5 425 are fixed on the movable plate 424, and the ends of the support rods 5 425 are fixedly connected to a limit baffle 426. Two telescopic rods 2 428 are also fixed on the movable plate 424, and the telescopic rods 2 428 extend into the interior of a telescopic cylinder 2 427, and the telescopic cylinder 2 427 passes through the limit baffle 426 and is fixedly connected to a placing plate 429, and a spring 2 is arranged in the telescopic cylinder 2 427, and the spring 2 abuts against the telescopic rod 2 42 8, a fixing part 2 430 is fixed on the fixing frame 421, a driving motor 431 is installed on the fixing part 2 430, the output shaft of the driving motor 431 is connected to a screw 3 432 through a coupling, the end of the screw 3 432 is fixedly connected to the inner ring of a bearing part 434, the lower end of the bearing part 434 is fixed on the support plate 2 403 of the side packaging assembly, the bearing part 4 is fixed on the support plate 2, which plays a role in fixing the end of the screw 3 of the feeding assembly, the screw 3 432 is connected to the connecting part 3 through a thread, the connecting part 3 is fixedly connected to the moving plate 424, a bearing part 3 433 is also fixed on the fixing frame 421, the inner ring of the bearing part 3 433 is fixedly connected to the screw 3 432.

[0017] The present invention provides an embodiment, referring to Figure 16-18 The heat sealing member 3 405 comprises a bottom block 1 40501, a connecting plate 1 40502 is arranged at the upper end of the bottom block 1 40501, a connecting plate 2 40503 is arranged at the upper end of the connecting plate 1 40502, a heat sealing plate 1 40504 is arranged on the connecting plate 2 40503, and a plurality of trapezoidal reinforcing members 1 40505 are arranged at the connection between the heat sealing plate 1 40504 and the connecting plate 2 40503, the cross section of the trapezoidal reinforcing member 1 40505 is a right-angled trapezoid, and the plane where the right-angle waist of the right-angled trapezoid of the trapezoidal reinforcing member 1 40505 is located is parallel to the heat sealing member 1 Plate 1 40504 is fixedly connected, the plane where the right-angled bottom of the right-angled trapezoid of the trapezoidal reinforcement 1 40505 is located is fixedly connected to the connecting plate 2 40503, and a trapezoidal reinforcement 2 40506 is provided at the connection between the connecting plate 1 40502 and the bottom block 1 40501, the cross-section of the trapezoidal reinforcement 2 40506 is a right-angled trapezoid, the plane where the right-angled waist of the right-angled trapezoid of the trapezoidal reinforcement 2 40506 is located is fixedly connected to the connecting plate 1 40502, and the plane where the right-angled bottom of the trapezoidal reinforcement 2 40506 is located is fixedly connected to the bottom block 1 40501.

[0018] The present invention provides an embodiment, wherein a receiving tray 429 is used to place a receiving member 10, and when the receiving member 10 is placed on the receiving tray 429, the horizontal height of the lower end surface of the side plate 1003 of the receiving member 10 is higher than the upper end surface of the heat sealing plate 1 40504 of the heat sealing member 3 405. The distance A5 from the upper end surface of the heat sealing plate 1 40504 of the heat sealing member 3 405 to the upper end surface of the trapezoidal reinforcement member 1 40505 is equal to the thickness A3 of the side plate 1003 of the receiving member 10. The distance A6 from the upper end surface of the trapezoidal reinforcement member 2 40506 to the upper end surface of the heat sealing plate 1 40504 is not less than the sum of the height A4 of the support block 1006 and the thickness of the side plate 1003. The length L7 of the heat sealing plate 1 40504 is not greater than the length A1 of the side groove 1005, and the width L8 of the heat sealing plate 1 40504 is not greater than the width of the side groove 1005. The distance A7 from the upper end surface of the heat sealing plate 3 of the heat sealing member 420 to the upper end surface of the extrusion block 42003 is not less than the thickness A3 of the side plate 1003 of the receiving member 10. The distance A8 from the lower end surface of the receiving plate 429 to the upper end surface of the limiting baffle 426 is not less than the distance A5 from the upper end surface of the heat sealing plate 1 40504 of the heat sealing member 3 405 to the upper end surface of the trapezoidal reinforcing member 1 40505.

[0019] When the side packaging assembly is working, the driving motor four 431 is turned on to drive the screw three 432 to rotate, and the connecting piece three on the screw three 432 drives the movable plate four 424 to move on the fixed slide rail four 422, driving the containing part 10 containing the soft-packed batteries with completed top packaging to move toward the side packaging assembly 4. When the movable plate four 424 moves to the end of the screw three 432, the connecting piece three on the screw three 432 moves to the end of the screw three 432 (contacting the bearing piece four 434), and the movable plate four 424 moves to the bottom of the two heat sealing parts three 405. The position of the heat sealing plate one 40504 of the two heat sealing parts three 405 corresponds to the position of the side groove 1005 of the containing part 10 on the movable plate four 424, and the heat sealing plate one 40504 can be inserted into the side groove 1005.

[0020] Then, the lead screw 2 413 is driven to rotate by the driving motor 3 411, thereby driving the connection 2 on the lead screw 2 413 to move downward, and the connection piece 2 414 moves downward through the connecting tube 415 and the supporting plate 5 419. When the supporting plate 5 419 moves downward, it drives the heat sealing piece 420 to move downward as well. First, the lower end surface of the extrusion block 42003 on the heat sealing piece 420 contacts the upper end surface of the side plate 1003 of the receiving piece 10 on the feeding assembly. The heat sealing piece 420 continues to move downward, and the extrusion block 42003 pushes the receiving piece 10 and the receiving plate 429 to move downward. When the receiving plate 429 moves downward, the telescopic rod 2 428 moves in the telescopic tube 2 427, and the spring 2 in the telescopic tube 2 427 is squeezed. When the receiving plate 429 and the receiving piece 10 move downward, the heat sealing plate 1 on the heat sealing piece 3 405 is pressed downward. 40504 is inserted into the side groove 1005 of the receiving member 10. When the lower end surface of the side plate 1003 of the receiving member 10 contacts the upper end surface of the trapezoidal reinforcement member 1 40505, the heat sealing plate 1 40504 of the heat sealing member 3 405 contacts the heat sealing plate 2 42002 of the heat sealing member 420, and at the same time, the lower end surface of the support block 1006 of the receiving member 10 contacts the upper end surface of the trapezoidal reinforcement member 2 40506. The limiting is completed by the trapezoidal reinforcement piece 40505 and the side plate 1003, the limiting of the side packaging is also completed by the trapezoidal reinforcement piece 2 40506 and the support block 1006, the heat sealing plate 1 40504 of the heat sealing piece 3 405 and the heat sealing plate 2 42002 of the heat sealing piece 4 420 start to be heated, and the heat sealing of the side of the aluminum-plastic film is completed through the heating and extrusion of the heat sealing plate 1 40504 and the heat sealing plate 2 42002.

[0021] After the side packaging is completed, the lead screw 2 413 is driven to rotate in the opposite direction by the driving motor 3 411, thereby driving the connection 2 on the lead screw 2 413 to move upward, and the connection piece 2 414 moves upward through the connecting tube 415 and the supporting plate 5 419. When the supporting plate 5 419 moves downward, it drives the heat sealing piece 4 420 to move upward as well. The receiving piece 10 on the feeding assembly is no longer squeezed by the squeezing block, and the spring 2 on the feeding assembly lifts the receiving plate, so that the heat sealing plate 1 40504 on the heat sealing piece 3 405 is pulled out from the side groove 1005 of the receiving piece 10, and then the lead screw 3 432 is driven to rotate in the opposite direction by the driving motor 431, so that the receiving piece 10 containing the completed packaging moves away from the side packaging assembly 4; while moving, the conveying assembly 2 6 drives the insertion plate water The insert plate is moved horizontally so that it moves to the top of the receiving part to be transported, and then the insert plate of the transport component 2 is moved downward so that the insert plate and the slot of the receiving part are at the same horizontal height, and then the lead screw 3 432 is driven in the opposite direction by the driving motor 431, so that the receiving part 10 containing the completed package is moved away from the side packaging component 4, so that the insert plate is inserted into the slot of the receiving part, and then the transport component 2 6 is moved upward together with the receiving part so that the receiving part leaves the receiving tray 429 of the feeding component, and then the transport component 2 6 is moved horizontally so that the receiving part 10 moves to the top of the receiving tray 429 of the detection component, and then the transport component 2 6 drives the receiving part 10 to move downward, thereby placing the receiving part 10 on the receiving tray of the detection component 7. After the detection component 7 is completed, the holding part 10 is placed in the trimming component 1 8 and the trimming component 2 9 through the transport component 2 6 to trim the soft-pack battery. The transport component 2 6 can simultaneously transport the side packaging component 4, the detection component 7, and the holding part 10 on the trimming component 1 8. The transport component 2 6 includes a lateral movement component 2, and the lateral movement component 2 is provided with four insertion plates. The insertion plates can move laterally on the lateral movement component 2, and all the insertion plates are linked on the lateral movement component 2, that is, the insertion plates move laterally on the lateral movement component 2, and the relative The distance between two adjacent insertion plates remains unchanged, the detection component 7, the trimming component one 8, and the trimming component two 9 are each equipped with a feeding component, and a receiving tray 429 is provided on each feeding component, that is to say, a receiving tray 429 is provided on each of the side packaging component 4, the detection component 7, the trimming component one 8, and the trimming component two 9, and the distance between two adjacent insertion plates on the transverse moving component two is equal to the distance between two adjacent receiving trays 429, and the transverse moving component two is arranged on the longitudinal moving component two, and the transverse moving component two can move longitudinally on the longitudinal moving component two.

[0022] The processes on the side packaging component 4, the detection component 7, the trimming component one 8, and the trimming component two 9 can be carried out simultaneously, and then they are uniformly transported by the conveying component two 6 after the processes are completed. That is to say, a holding piece 10 is installed on the holding tray 429 of the lower feeding component of the trimming component two 9, and the battery pack whose trimming is completed by the trimming component one 8 is placed on the holding piece 10; a holding piece 10 is installed on the holding tray 429 of the lower feeding component of the trimming component one 8, and the battery pack whose inspection is completed by the detection component 7 is placed on the holding piece 10; a holding piece 10 is installed on the holding tray 429 of the lower feeding component of the detection component 7, and the battery pack whose side packaging is completed by the side packaging component 4 is placed on the holding piece 10; the holding tray 429 of the lower feeding component of the side packaging component 4 is 29 is equipped with a containing piece 10, on which a battery pack with a top packaging assembly completed with a top edge packaging is placed, and the containing piece 10 on the containing tray 429 of the lower feeding assembly of the side packaging assembly 4 is transported from the clamping assembly of the top packaging assembly by the transporting assembly one; the insertion plate on the transporting assembly two that is closest to the side packaging assembly 4 moves to above the slot on the containing tray 429 that can be inserted into the side packaging assembly 4 under the drive of the lateral moving assembly two, then the remaining three insertion plates will also move to the corresponding upper parts of the containing tray 429 of the detection assembly 7, the containing tray 429 of the trimming assembly one 8, and the containing tray 429 of the trimming assembly two 9, and then the lateral moving assembly and the insertion plate are moved to the opposite side by the longitudinal moving assembly two. The corresponding longitudinal height, that is, the lower end surface of the insertion plate and the lower bottom surface of the slot of the holding tray 429 are on the same horizontal plane, and then the driving motor 431 of the feeding assembly drives the lead screw 3 432 to rotate, so that the holding piece 10 moves in the direction close to the insertion plate, so that the insertion plate is inserted into the slot of the holding piece 10, and then driven by the longitudinal moving assembly 2 of the conveying assembly 2, the transverse moving assembly 2 moves upward together with the holding piece 10, so that the holding piece 10 leaves the holding tray 429 of the feeding assembly, and then the transverse moving assembly 2 of the conveying assembly 2 6 moves horizontally again, so that the holding piece 10 originally located on the side packaging assembly 4 moves to just above the holding tray 429 of the detection assembly 7, and the holding piece 10 originally located on the detection assembly 7 moves To the top of the receiving tray 429 of the trimming component 1 8, the receiving part 10 originally located at the trimming component 1 8 is moved to the top of the receiving tray 429 of the trimming component 2 9, the receiving tray 429 originally located at the trimming component 2 9 is moved to the top of the receiving tray 429 of the packaging and palletizing component, and then the conveying component 2 drives the receiving part 10 to move downward by the longitudinal moving component 2, so that the receiving part 10 is placed on the corresponding receiving tray 429, thereby completing the material transportation between the side packaging component 4, the detection component 7, the trimming component 1 8, and the trimming component 2 9. Therefore, the processes on the side packaging component 4, the detection component 7, the trimming component 1 8, and the trimming component 2 9 can be carried out simultaneously, and after the process is completed, it is then transported uniformly by the conveying component 2 6.

[0023] The present invention provides an embodiment, referring to Figure 21-25 The clamping assembly 211 includes a bottom plate 21101, four support columns 21102 are fixed on the upper end surface of the bottom plate 21101, the upper end surface of the support column 21102 is fixedly connected to the support plate 6 21103, the upper part of the support plate 6 21103 is fixed with a support plate 7 21104, the upper end surface of the bottom plate 21101 is fixed with a mounting frame 2, two sets of driving components are installed on the mounting frame 2, the support plate 6 21103 and the support plate 7 21104 are both provided with a swinging groove 1 211032 and a swinging groove 2 211033, the swinging groove 1 211032 of the support plate 7 21104 is provided with a swinging piece 21113, the swinging groove 2 211033 of the support plate 7 21104 is provided with a swinging piece 3 21119, the swinging piece 21113 and the clamping plate 3 211 118 is fixedly connected, the swing member three 21119 is fixedly connected to the clamping plate four 21120, the clamping plate three 21118 is vertically arranged with the clamping plate four 21120, and the upper end surface of the support plate seven 21104 is also fixed with a clamping plate one 21105 and a clamping plate two 21106, the clamping plate one 21105 is parallelly arranged with the clamping plate three 21118, and the clamping plate two 21106 is parallel to the clamping plate three 21118. The clamping plate 4 21120 is arranged in parallel, and the clamping plate 1 21105, the clamping plate 2 21106, the clamping plate 3 21118, the clamping plate 4 21120, and the support plate 7 21104 form a second receiving slot for placing the receiving member 10. The driving assembly can drive the clamping plate 3 21118 and the clamping plate 4 21120 to move, and the clamping plate 1 21105 is fixed with a heat sealing member 5 21121. Fig.26 A positioning groove 211034 is provided at the bottom of the support plate six 21103.

[0024] The present invention provides an embodiment, referring to Figure 21-25The driving assembly includes a cylinder five 21107, and the cylinder five 21107 is fixed to the bottom plate two 21101 through a bracket 21122. A piston five 21108 is arranged in the cylinder five 21107. The upper end of the piston five 21108 is fixedly connected to the connecting block 21109, and the connecting block 21109 is fixedly connected to the connecting plate three 21110. A pressure piece 21111 is installed on the connecting plate three 21110. A fixing piece three 21117 is fixed to the lower part of the swing groove one 211032 or the swing groove two 211033 on the support plate six 21103. Two sliding holes are arranged on the fixing piece three, and a mounting rod 21115 is arranged in each sliding hole. The end of the mounting rod 21115 is connected to the swing piece one 211032 or the swing groove two 211033 on the support plate six 21103. 112 is fixedly connected, the swinging member 1 21112 is fixedly connected to the swinging member 2 21113 or the swinging member 3 21119, that is, there are two swinging members 1 21112, one swinging member 1 21112 is fixedly connected to the swinging member 2 21113, and the other swinging member 1 21112 is fixedly connected to the swinging member 3 21119. A baffle is arranged at the end of the mounting rod 21115, and a spring 1 21116 is arranged on the mounting rod 21115, and the spring 1 21116 is arranged between the baffle and the fixing member 3 21117. The fixing member 3 21117 is equipped with a rotating shaft, and the rotating shaft passes through the mounting hole of the connecting rod 21114, and the connecting rod 21114 can rotate on the rotating shaft with the axis of the rotating shaft. Figure 32-33 The connecting rod includes a rod body 1 211141, a rod body 2 211143 is provided at the end of the rod body 1 211141, the rod body 1 211141 and the rod body 2 211143 are vertically arranged, a mounting hole 211142 is arranged on the rod body 1 211141, and the rod body 1 is arranged on a side close to the pressure member.

[0025] The present invention provides an embodiment, referring to body 8-9, the positioning member 1 314 includes a bottom block 31401, and a positioning block 31402 is provided on the upper end surface of the bottom block 31401. The length L3 of the positioning block 31402 is not greater than the length L1 of the positioning groove 211034 at the bottom of the support plate 6 21103, the width L4 of the positioning block 31402 is not greater than the width L2 of the positioning groove 211034 at the bottom of the support plate 6 21103, and the height of the positioning block 31402 is equal to the depth of the positioning groove 211034.

[0026] The present invention provides an embodiment, wherein the heat sealing member 2 316 comprises a bottom block 4 31601, and a heat sealing plate 6 31602 is disposed on the upper end surface of the bottom block 4 31601. The heat sealing member 5 21121 comprises a bottom block 5, and a heat sealing plate 7 is disposed on the upper end surface of the bottom block 5, and the length L9 of the heat sealing plate 7 is not greater than the length A2 of the top groove 1004 of the containing member 10, and the width L10 of the heat sealing plate 7 is not greater than the width of the top groove 1004, and the sum of the thickness of the clamping plate 1 and the height of the heat sealing member 5 21121 is equal to the sum of the thickness of the containing plate 1001 and the thickness A3 of the side plate 1003. The sum of the thickness of the clamping plate 1 and the height of the heat sealing member 5 21121 is equal to the sum of the thickness of the containing plate 1001 and the thickness A3 of the side plate 1003. The length L5 of the heat sealing plate 6 31602 is not less than the length L9 of the heat sealing plate 7, and the width L6 of the heat sealing plate 6 31602 is not less than the width L10 of the heat sealing plate 7. The sum of the height A4 of the support block 1006 and the thickness of the clamping plate 4 21120 is equal to the thickness of the holding plate 1001.

[0027] The specific embodiments described above further illustrate the objectives, technical solutions and beneficial effects of the present invention in detail. It should be understood that the above description is only a specific embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the protection scope of the present invention.

Claims

1. A soft pack battery heat sealing system, comprising a folding assembly, characterized in that: A top packaging component is provided at the end of the folding component, a side packaging component is provided on one side of the folding component, and materials between the side packaging component and the top packaging component are transported by a transport component 1, a detection component is provided on one side of the side packaging component, and a trimming component is provided on one side of the detection component, and materials between the side packaging component, the detection component and the trimming component are transported by a transport component 2, and a holding component can be fixed on the folding component, the side packaging component, the detection component and the trimming component, and the holding component includes a holding plate, a holding groove 1 for placing a soft-pack battery is provided on the upper end surface of the holding plate, a side plate is provided on the side of the holding plate, a top groove is provided on the side plate, and a side groove is provided at each end of the top groove, the top groove cooperates with the top packaging component to complete the packaging of the top of the soft-pack battery, and the two side grooves cooperate with the side packaging component to complete the packaging of the side of the soft-pack battery.

2. A soft pack battery heat sealing system according to claim 1, characterized in that: The folding assembly includes a movable guide rail, a driving motor is provided at the end of the movable guide rail, a slider is installed on the movable guide rail, the output shaft of the driving motor is fixedly connected to a lead screw four, the lead screw four is connected to the slider by a thread, and the slider can move on the movable guide rail when the lead screw four rotates, a mounting plate is fixed on the upper end surface of the slider, a clamping assembly for fixing a containing member is fixed on the mounting plate, a fixing member is also fixed on the mounting plate, a cylinder is installed on the fixing member, an end of a piston of the cylinder is fixedly connected to a mounting plate two, a cylinder is fixed on the mounting plate one, an end of a piston in the cylinder is fixedly connected to the movable plate one, a folding rotating roller is installed at the end of the movable plate one, and the folding rotating roller can rotate axially.

3. A soft pack battery heat sealing system according to claim 1, characterized in that: The top packaging assembly comprises a fixed frame 1, on which a fixed plate 1 and a fixed plate 2 are fixed, and a heat sealing drive assembly is arranged on each of the fixed plate 1 and the fixed plate 2, and a heat sealing member 2 is arranged on the upper heat sealing drive assembly, and a positioning member 1 is arranged on the lower heat sealing drive assembly, and the heat sealing drive assembly comprises a mounting frame 1, on which a driving motor 2 is arranged, and an output shaft of the driving motor 2 is connected to a lead screw 1 through a coupling, and the lead screw 1 is connected to a connecting member 1 through a thread, and the connecting member 1 is fixed on a moving frame 1, and two parallel sliders 2 are arranged at the rear of the moving frame 1, and the sliders 2 are mounted on a fixed slide rail 1, and the fixed plate 1 and the fixed plate 2 are both fixed with a fixed slide rail 1, and the moving frame 1 is fixedly connected to the moving frame 2, and two parallel sliders 3 are arranged at the rear of the moving frame 2, and the sliders 3 are mounted on the fixed slide rail 2, and the fixed plate 1 and the fixed plate 2 are both fixed with a fixed slide rail 2, and a positioning member 1 or a heat sealing member 2 is fixed at the end of the moving frame 2.

4. A soft pack battery heat sealing system according to claim 1, characterized in that: The side packaging assembly includes a bottom plate 1, four support rods 2 are fixed on the upper part of the bottom plate 1, the upper ends of the support rods 2 are fixedly connected to the support plate 3, the bottom plate is fixed with a support plate 2 through the support rod 1, two parallel pads 1 are fixed on the support plate 2, each pad 1 is fixedly connected to a heat sealing part 3, a plurality of support rods 3 are fixed to the upper end of the support plate 3, the upper end of the support rod 3 is fixedly connected to the support plate 4, the upper end of the support plate 4 is fixedly connected to the support rod 4, the upper end of the support rod 4 is fixedly connected to the support plate 7, a drive motor 3 is fixed on the support plate 7, and the output shaft of the drive motor 3 is connected to the lead screw through a coupling Two are connected, a bearing piece 2 is installed in the center of the support plate 4, the inner ring of the bearing piece 2 is fixedly connected to the lead screw 2, the lead screw 2 is connected to the connecting piece 2 through a thread, the connecting piece 2 is fixedly connected to the connecting tube, the end of the connecting tube is fixedly connected to the support plate 5, the support plate 5 is fixedly connected to the ends of a plurality of telescopic rods, the telescopic rods extend into the telescopic tube, the end of the telescopic tube is fixedly connected to the support plate 4, the outside of the telescopic tube is fixedly provided with a mounting tube, the mounting tube is fixedly connected to the support plate 3, the lower end of the support plate 5 is fixedly provided with two parallelly arranged pads, and each pad on the support plate 5 is fixedly connected to a heat-sealing piece 4.

5. A soft pack battery heat sealing system according to claim 4, characterized in that: The side packaging assembly is provided with a supporting feeding assembly, and the feeding assembly includes a fixed frame, a fixed slide rail 4 is laid on the upper part of the fixed frame, a slider 5 is installed on the fixed slide rail 4, the slider 5 is fixedly connected to the moving plate, a plurality of support rods 5 are fixed on the moving plate, the ends of the support rods 5 are fixedly connected to the limit baffle, and two telescopic rods 2 are also fixed on the moving plate, the telescopic rods 2 extend into the interior of the telescopic cylinder 2, the telescopic cylinder 2 passes through the limit baffle and is fixedly connected to the containing plate, and a spring 2 is arranged inside the telescopic cylinder 2. The second spring is against the end of the second telescopic rod, and a second fixing part is fixed on the fixed frame. A drive motor four is installed on the second fixing part. The output shaft of the drive motor four is connected to the third screw through a coupling, and the end of the third screw is fixedly connected to the inner ring of the fourth bearing. The lower end of the fourth bearing is fixed to the second support plate of the side packaging assembly, and the third screw is connected to the third connecting part through a thread, and the third connecting part is fixedly connected to the movable plate. A third bearing is also fixed on the fixed frame, and the inner ring of the third bearing is fixedly connected to the third screw.

6. A soft pack battery heat sealing system according to claim 1, characterized in that: The clamping assembly includes a base plate 2, four support columns are fixed on the upper end surface of the base plate 2, the upper end surface of the support column is fixedly connected to the support plate 6, the upper part of the support plate 6 is fixed with the support plate 7, the upper end of the base plate 2 is fixed with the mounting frame 2, two groups of driving components are installed on the mounting frame 2, the support plate 6 and the support plate 7 are both provided with a swinging groove 1 and a swinging groove 2, the swinging groove 1 of the support plate 7 is equipped with a swinging piece 2, the swinging groove 2 of the support plate 7 is equipped with a swinging piece 3, the swinging piece 2 and the clamping plate 3 are connected to each other. The swinging member three is fixedly connected with the clamping plate four, the clamping plate three is vertically arranged with the clamping plate four, the upper end surface of the support plate seven is also fixed with the clamping plate one and the clamping plate two, the clamping plate one is parallelly arranged with the clamping plate three, the clamping plate two is parallelly arranged with the clamping plate four, the clamping plate one, the clamping plate two, the clamping plate three, the clamping plate four and the support plate seven form a containing groove two for placing the containing member, the driving assembly can drive the clamping plate three and the clamping plate four to move, and the clamping plate one is fixed with the heat sealing member five.

7. A soft pack battery heat sealing system according to claim 6, characterized in that: The heat-sealing component 5 includes a bottom block 5, and a heat-sealing plate 7 is arranged on the upper end surface of the bottom block 5. The length L9 of the heat-sealing plate 7 is not greater than the length A2 of the top groove of the containing component, and the width L10 of the heat-sealing plate 7 is not greater than the width of the top groove. The sum of the thickness of the clamping plate 1 and the height of the heat-sealing component 5 is equal to the sum of the thickness of the containing plate and the thickness A3 of the side plate.

Citation Information

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