Efficient processing equipment for power tabs

Through the combination of shaping, drawing, cutting, transfer and slitting modules, efficient processing of power tabs is achieved, the problem of low efficiency of existing equipment is solved, and the simultaneous processing of three tabs is realized, meeting the needs of high production capacity.

CN223414231UActive Publication Date: 2025-10-03GEYUAN ELECTRONICS TECH (SHANGHAI) CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422503018.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-16
Publication Date
2025-10-03
Estimated Expiration
2034-10-16

AI Technical Summary

Technical Problem

The existing linear pulling production equipment is inefficient in power tab processing and can only fuse once at a time, which cannot meet the increasingly stringent production cost and capacity requirements.

Method used

An efficient processing equipment for power tabs is designed. Through the combination of a shaping module, a pulling module, a cutting module, a material taking module, a transfer module and a slitting module, rapid cutting of coiled materials and simultaneous processing of multiple pieces are achieved, including shaping, laminating, exhausting, hot melting, cooling and other processes, thereby improving processing efficiency.

Benefits of technology

In the same amount of time, three tabs can be cut and processed, significantly improving production efficiency and meeting the needs of high production capacity.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223414231U_ABST
    Figure CN223414231U_ABST
Patent Text Reader

Abstract

The utility model discloses efficient processing equipment for a power tab. The efficient processing equipment is provided with a machine table, a material placing disc, a shaping module, a material pulling module, a cutting module, a first material taking module, a positioning module, a second material taking module, a first transferring module, a pair of glue placing modules, a processing module, a second transferring module, a slitting module and a collecting module. Through observation, each beat is clamped in the fusion beat and takes a long time, because the product performance of the power tab is mainly maintained for a certain fusion time for heating, so that the product performance of the power tab is ensured. The previous cutting and other stations consume short time, so that a processing mode concept is provided, three roll materials are cut in one turn, three metal sheets are transferred to a processing station through a manipulator, and the three metal sheets are fused at one time during one-time rubberizing and fusion, so that three tabs can be produced in the same aging rhythm, and the production efficiency is improved. And the product is turned over by three times within the same time.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to the technical field of power tab processing, in particular to a high-efficiency processing device for power tabs. Background Art

[0002] In view of the rapid development of the electric vehicle industry, power tabs, as key components in electric vehicles, require more and more matching production capacity, and the cost control is becoming more and more stringent. The production efficiency of the original linear drawing production equipment can no longer meet the increasingly stringent production costs. Therefore, an efficient processing equipment for power tabs is designed.

[0003] The original linear production equipment is to load the material in the form of a coil, and then glue it on each step forward, and then glue it on a linear material strip, and then cut the tab into pieces through the cutting station. The station flow chart is as follows Figures 1-3 The specific steps are as follows: the raw materials are loaded into the loading station 1 in the form of rolls, and enter the coating station 6 through the guiding station 2 and the pressing station 3. The upper and lower glue of the tabs are passed through the material by mechanical fingers, and pressed through the coating station 6 to make the glue and metal bonded. Then, they pass through the exhaust station 7, the fusion station 8, and the shaping station 9 in sequence to make the product meet the performance requirements. Then, they pass through the cutting station 11 to cut the product into the desired specifications. This processing method is the first fully automated production model. Although the degree of automation is also high, the efficiency is relatively low. Each fusion product can only be fused once. In this way, only one tab can be made within the fusion cycle, which is inefficient. Summary of the Invention

[0004] According to an embodiment of the present invention, there is provided an efficient processing device for power tabs, comprising:

[0005] Machine;

[0006] The unloading tray is set on the top side of the machine and is used to place the coiled material;

[0007] The shaping module is arranged on the machine platform and is located on one side of the unloading tray, and is used to shape the coiled material on the unloading tray;

[0008] The material pulling module is arranged on the machine platform and is located on one side of the shaping module. It is used to pull the coiled material on the unloading tray and transport the coiled material.

[0009] The cutting module is arranged on the machine platform and is located on one side of the material pulling module, and is used to cut the coiled material conveyed by the material pulling module;

[0010] The first material taking module is arranged on the machine platform and is located on one side of the cutting module, and is used to grab the coiled material cut by the cutting module;

[0011] The positioning module is arranged on the machine platform and is located on one side of the first retrieving module, and is used to receive the coiled material grabbed by the first retrieving module and position the coiled material;

[0012] The second material taking module is arranged on the machine platform and is located on one side of the positioning module, and is used to grab the coil positioned by the positioning module;

[0013] The first transfer module is arranged on the machine platform and is located on one side of the second retrieving module, and is used to receive three coils grabbed by the second retrieving module;

[0014] A pair of glue placing modules, one pair of glue placing modules is respectively set at the top and bottom of the machine, for placing glue;

[0015] A processing module is provided on the machine platform and is located on one side of the first transfer module;

[0016] The second transfer module is arranged on the machine platform and is arranged opposite to the processing module. It is used to transfer the three coils on the first transfer module to the processing module, and the processing module performs lamination, exhaust, hot melting, shaping and cooling to form three tabs, and then transfer the three tabs out of the processing module;

[0017] The slitting module is arranged on the machine platform and is located on one side of the processing module. It is used to cut the film between the three tabs transferred from the processing module by the second transfer module and receive the three tabs after the film is cut.

[0018] The collecting module is arranged on the machine platform and is located on one side of the slitting module, and is used to grab and collect the three tabs after cutting and laminating.

[0019] Furthermore, the shaping module includes:

[0020] The shaping frame is set on the machine table and is located on one side of the discharge tray;

[0021] A first roller, the first roller is rotatably arranged on the shaping frame;

[0022] Shaping driver, which is set at the top of the shaping frame and provides the driving force for lifting;

[0023] A lifting frame, which is arranged at the output end of the shaping driver;

[0024] The second roller is rotatably arranged on the lifting frame.

[0025] Furthermore, the pulling module includes:

[0026] The first linear module is arranged on the machine platform and provides driving force in the X-axis direction;

[0027] A movable plate connected to the output end of the first linear module;

[0028] a third roller, the third roller being rotatably connected to the movable plate;

[0029] A pair of pulling cylinders, the pair of pulling cylinders are arranged on the top and bottom of the moving plate and are arranged opposite to each other;

[0030] a pair of guide rails, the pair of guide rails being arranged on the movable plate;

[0031] A pair of pulling plates are respectively arranged at the output ends of a pair of pulling cylinders, and the movable pulling plates are respectively slidably connected to a pair of guide rails.

[0032] Furthermore, the first reclaiming module comprises:

[0033] A rotary cylinder is provided on the machine platform and is located on one side of the cutting module;

[0034] A connecting rod, one end of which is connected to the output end of the rotary cylinder;

[0035] The first adsorption head is arranged at the other end of the connecting rod.

[0036] Furthermore, the positioning module includes:

[0037] The positioning platform is arranged on the machine platform and is located on one side of the first reclaiming module. A retaining edge is provided on the rear side of the positioning platform;

[0038] Positioning cylinder, the positioning cylinder is set at the bottom of the positioning platform, and two positioning plates are provided on the output end of the positioning cylinder, and the two positioning plates are located on the left and right sides of the positioning platform;

[0039] A propulsion cylinder is arranged on the front side of the positioning platform, and a positioning head is provided at the output end of the propulsion cylinder.

[0040] Furthermore, the second reclaiming module includes:

[0041] The retrieving plate is arranged on the machine platform and is located on one side of the positioning module;

[0042] A reclaiming rack, wherein the reclaiming rack guide slides and is arranged on the reclaiming plate;

[0043] The reclaiming drive is connected to the reclaiming plate and drives the reclaiming rack to move on the reclaiming plate;

[0044] The retrieving cylinder is arranged on the retrieving rack;

[0045] The second adsorption head is arranged on the material taking frame in a guide sliding manner and is connected with the output end of the material taking cylinder.

[0046] Furthermore, the first transfer module comprises:

[0047] The second linear module is set on the machine platform and located on one side of the second material picking module to provide driving force in the Y-axis direction;

[0048] The third linear module is arranged at the output end of the second linear module and provides driving force in the X-axis direction;

[0049] The Z-axis driver is arranged at the output end of the third linear module and provides driving force in the Z-axis direction;

[0050] The first adsorption plate is arranged at the output end of the Z-axis driver.

[0051] Furthermore, the second transfer module comprises:

[0052] Two electric transfer racks are connected to each other, and both electric transfer racks are equipped with multiple finger handling manipulators.

[0053] Furthermore, the slitting module includes:

[0054] The sixth linear module is arranged on the machine platform and located on one side of the processing module to provide driving force in the Y-axis direction;

[0055] A first slitting frame, which is arranged at the output end of the sixth linear module;

[0056] A first slitting cylinder, which is arranged on a first slitting frame;

[0057] The slitting table is connected to the output end of the first slitting cylinder and is slidingly guided on the first slitting frame. The slitting table is provided with a slitting hole.

[0058] A second slitting frame, the second slitting frame is arranged on top of the first slitting frame;

[0059] A second slitting cylinder is arranged on the top of the second slitting frame;

[0060] The lower pressing platform is arranged at the output end of the second slitting cylinder, and a slitting knife is provided at the bottom of the lower pressing platform;

[0061] The guide rod is arranged between the slitting table and the lower pressing table to guide the movement of the lower pressing table;

[0062] The linear drive mechanism is arranged on the machine platform and provides the driving force for the X-axis movement;

[0063] The second adsorption plate is arranged at the output end of the linear drive mechanism.

[0064] Furthermore, the collection module includes:

[0065] A collection box is set on the machine table;

[0066] The grabbing and adsorption robot grabs the three tabs after adsorption, cutting and lamination, and puts them into the collection box.

[0067] According to the high-efficiency processing equipment for power tabs of the embodiment of the present invention, it has been observed that each beat is stuck in the fusion beat, which takes a relatively long time, because the product performance of the power tabs mainly depends on maintaining a certain fusion time for heating to ensure its product performance. The previous cutting stations are relatively short in time, so a processing method concept is proposed, which cuts three sheets of coiled material in one round, and transfers the three metal sheets to the processing station through a robot arm, applies glue at one time, and fuses the three metal sheets at one time during fusion. In this way, three tabs can be produced within the same time frame, and the product output has tripled in the same time.

[0068] It is to be understood that both the foregoing general description and the following detailed description are exemplary, and are intended to provide further explanation of the technology as claimed. BRIEF DESCRIPTION OF THE DRAWINGS

[0069] Figure 1 This is a workstation flow chart for power tab processing in the existing technology.

[0070] Figure 2 This is a structural diagram of the glue coating station for power tab processing in the prior art.

[0071] Figure 3 This is an overall structural diagram of the power tab processing equipment in the existing technology.

[0072] Figure 4 It is a schematic diagram of the three-dimensional structure of an efficient processing equipment for power tabs according to an embodiment of the utility model.

[0073] Figure 5 This is a structural schematic diagram of the glue coating part of an efficient processing equipment for power tabs according to an embodiment of the present utility model.

[0074] Figure 6 The present invention is a flow chart of workstations of a highly efficient processing device for power tabs according to an embodiment of the present invention.

[0075] Figure 7 It is a schematic diagram of the three-dimensional structure of a shaping module of an efficient processing equipment for power tabs according to an embodiment of the present utility model.

[0076] Figure 8 It is a schematic diagram of the three-dimensional structure of a material pulling module of an efficient processing equipment for power tabs according to an embodiment of the present utility model.

[0077] Figure 9 It is a schematic diagram of the three-dimensional structure of a cutting module, a first material taking module, and a positioning module of an efficient processing equipment for power tabs according to an embodiment of the present utility model.

[0078] Figure 10 It is a schematic diagram of the three-dimensional structure of the second material taking module of an efficient processing equipment for power tabs according to an embodiment of the present utility model.

[0079] Figure 11 It is a schematic diagram of the three-dimensional structure of the first transfer module of an efficient processing equipment for power tabs according to an embodiment of the present utility model.

[0080] Figure 12 It is a schematic diagram of the three-dimensional structure of a slitting module of an efficient processing equipment for power tabs according to an embodiment of the present utility model.

[0081] Figure 13 This is a schematic diagram of the structure of the power tab. DETAILED DESCRIPTION

[0082] The preferred embodiments of the present invention will be described in detail below with reference to the accompanying drawings to further illustrate the present invention.

[0083] First, combine Figures 4 to 12 An efficient processing device for power tabs according to an embodiment of the present invention is described, which is used for the production and processing of power tabs and has a wide range of application scenarios.

[0084] like Figures 4 to 12 As shown, an efficient processing equipment for power tabs according to an embodiment of the utility model comprises a machine 1, a material discharge tray 2, a shaping module 3, a material pulling module 4, a cutting module 5, a first material picking module 6, a positioning module 7, a second material picking module 8, a first transfer module 9, a pair of glue discharge modules 14, a processing module 15, a second transfer module 10, a slitting module 11 and a collection module 13.

[0085] Specifically, if Figure 4 As shown, the discharge tray 2 is set on the top side of the machine 1 for placing coils. During processing, the metal coils are placed on the discharge tray 2 and wait for discharge processing.

[0086] Specifically, if Figure 4 、 7As shown, the shaping module 3 is mounted on the machine 1 and located on one side of the unloading tray 2, and is used to shape the coiled material on the unloading tray 2. The shaping module 3 comprises a shaping frame 31, a first roller 32, a shaping driver 33, a lifting frame 34, and a second roller 35. The shaping frame 31 is mounted on the machine 1 and located on one side of the unloading tray 2. The first roller 32 is rotatably mounted on the shaping frame 31. The shaping driver 33 is mounted at the top of the shaping frame 31, providing the driving force for lifting. The shaping driver 33 can be a pneumatic cylinder. The lifting frame 34 is mounted at the output end of the shaping driver 33. The second roller 35 is rotatably mounted on the lifting frame 34. The shaping driver 33 drives the lifting frame 34 and the second roller 35 to rise and fall, controlling the distance between the second roller 35 and the first roller 32 to achieve straightening and shaping of the coiled material.

[0087] Specifically, if Figure 4 、 8 As shown, the material pulling module 4 is arranged on the machine 1 and is located on one side of the shaping module 3, and is used to pull the coil on the discharge tray 2 and transport the coil. The material pulling module 4 includes: a first linear module 41, a movable plate 42, a third roller 43, a pair of material pulling cylinders 44, a pair of guide rails 45 and a pair of material pulling plates 46. The first linear module 41 is arranged on the machine 1 and provides driving force in the X-axis direction; the movable plate 42 is connected to the output end of the first linear module 41; the third roller 43 is rotatably connected to the movable plate 42; a pair of material pulling cylinders 44 are arranged at the top and bottom of the movable plate 42, and are arranged opposite to each other; a pair of guide rails 45 are arranged on the movable plate 42; a pair of material pulling plates 46 are respectively arranged at the output ends of a pair of material pulling cylinders 44, and the movable material pulling plates 46 are respectively slidably connected to the pair of guide rails 45. After the coil passes through the shaping module 3, a pair of pulling cylinders 44 are operated to drive a pair of pulling plates 46 to approach each other and clamp the coil, and then the first linear module 41 is controlled to move, driving the movable plate 42, the third roller 43, the pair of pulling cylinders 44 and the pair of pulling plates 46 to move to pull the coil, thereby cycling the above actions to pull the coil to the cutting module 5.

[0088] Specifically, if Figure 4 、 9 As shown, the cutting module 5 is arranged on the machine 1 and is located on one side of the pulling module 4. It is used to cut the coiled material conveyed by the pulling module 4 and cut the coiled material into pieces. The cutting module 5 can adopt the cutting structure in the existing technology.

[0089] Specifically, if Figure 4 、 9As shown, the first material picking module 6 is arranged on the machine 1 and is located on one side of the cutting module 5, and is used to grab the coiled material cut by the cutting module 5. The first material picking module 6 includes: a rotary cylinder 61, a connecting rod 62 and a first adsorption head 63. The rotary cylinder 61 is arranged on the machine 1 and is located on one side of the cutting module 5; one end of the connecting rod 62 is connected to the output end of the rotary cylinder 61; the first adsorption head 63 is arranged at the other end of the connecting rod 62. When in use, the rotary cylinder 61 drives the connecting rod 62 to rotate, moves the first adsorption head 63 to the cutting module 5, adsorbs a piece of coiled material cut by the cutting module 5, and then drives the rotary cylinder 61 to rotate in the opposite direction, so that the first adsorption head 63 adsorbs a piece of coiled material to the positioning module 7 for positioning processing.

[0090] Specifically, if Figure 4 、 9 As shown, the positioning module 7 is arranged on the machine 1 and is located on one side of the first material-retrieving module 6. It is used to receive the coil grabbed by the first material-retrieving module 6 and position the coil. The positioning module 7 includes: a positioning platform 71, a positioning cylinder 72 and a propulsion cylinder 73. The positioning platform 71 is arranged on the machine 1 and is located on one side of the first material-retrieving module 6. A retaining edge 711 is provided on the rear side of the positioning platform 71; the positioning cylinder 72 is arranged at the bottom of the positioning platform 71, and two positioning plates 721 are provided on the output end of the positioning cylinder 72. The two positioning plates 721 are located on the left and right sides of the positioning platform 71; the propulsion cylinder 73 is arranged on the front side of the positioning platform 71, and a positioning head 731 is provided on the output end of the propulsion cylinder 73. The first material picking module 6 will place the grabbed and adsorbed piece of coiled material on the positioning table 71, and then drive the two positioning plates 721 to approach each other through the positioning cylinder 72 to position the left and right sides of the coiled material, and then drive the positioning head 731 through the propulsion cylinder 73 to push the coiled material close to the retaining edge 711, and position the front and back sides of the coiled material, thereby completing the positioning of the coiled material, ensuring the grabbing accuracy of the second material picking module 8, and also improving the accuracy of subsequent processing.

[0091] Specifically, if Figure 4 、 10As shown, the second material picking module 8 is arranged on the machine 1 and is located on one side of the positioning module 7. It is used to grab the coil positioned by the positioning module 7. The second material picking module 8 includes: a picking plate 81, a picking rack 82, a picking drive (not shown in the figure), a picking cylinder 84, and a second suction head 85. The picking plate 81 is arranged on the machine 1 and is located on one side of the positioning module 7; the picking rack 82 is arranged on the picking plate 81 with a guide and slide; the picking drive is connected to the picking plate 81 and drives the picking rack 82 to move on the picking plate 81. The picking drive can be a linear module; the picking cylinder 84 is arranged on the picking rack 82; the second suction head 85 is arranged on the picking rack 82 with a guide and slide and is connected to the output end of the picking cylinder 84. When picking up materials, the picking drive is operated to drive the picking rack 82 to move on the picking plate 81, and the second adsorption head 85 is moved above the positioning table 71. Then, the picking cylinder 84 drives the second adsorption head 85 to descend, adsorbing the coiled material on the positioning table 71, and then placing the coiled material on the first transfer module 9.

[0092] Specifically, if Figure 4 、 11 As shown, the first transfer module 9 is set on the machine 1 and is located on one side of the second material picking module 8, and is used to receive three pieces of coiled materials grabbed by the second material picking module 8. The first transfer module 9 includes: a second linear module 91, a third linear module 92, a Z-axis driver 93 and a first adsorption plate 94. The second linear module 91 is set on the machine 1 and is located on one side of the second material picking module 8, providing a driving force in the Y-axis direction; the third linear module 92 is set at the output end of the second linear module 91, providing a driving force in the X-axis direction; the Z-axis driver 93 is set at the output end of the third linear module 92, providing a driving force in the Z-axis direction; the first adsorption plate 94 is set at the output end of the Z-axis driver 93, and the first adsorption plate 94 can adsorb three pieces of metal coiled materials at the same time. When the second material picking module 8 places the picked-up coiled materials on the first transfer module 9, the third linear module 92 can drive the first adsorption plate 94 to move toward the second material picking module 8 to receive the materials.

[0093] Specifically, if Figure 4 As shown, a pair of glue placing modules 14 are respectively arranged at the top and bottom of the machine 1 for placing glue. The pair of glue placing modules 14 can adopt the glue placing mechanism in the prior art.

[0094] Specifically, if Figure 4 As shown, the processing module 15 is set on the machine 1 and is located on one side of the first transfer module 9. The processing module 15 adopts the mechanism of coating, exhausting, hot melting, shaping and cooling the power tab in the existing technology.

[0095] Specifically, if Figure 4 、 12As shown, the second transfer module 10 is arranged on the machine 1 and is arranged opposite to the processing module 15. It is used to transfer the three coils on the first transfer module 9 to the processing module 15, and the processing module 15 performs coating, exhaust, heat melting, shaping and cooling to form three tabs, and then transfers the three tabs out of the processing module 15. The second transfer module 10 includes: two electric transfer racks 101, the two electric transfer racks 101 are connected, and the two electric transfer racks 101 are each provided with a plurality of finger handling manipulators 102. Through the movement of the two electric transfer racks 101, the finger handling manipulator 102 can be driven to grab the three metal coils on the first adsorption plate 94, and the three metal coils are placed in the processing module 15, and coated, exhausted, hot melted, shaped and cooled in turn to form three interconnected power tabs.

[0096] Specifically, if Figure 4 、 13As shown, the slitting module 11 is installed on the machine 1 and is located on one side of the processing module 15. It is used to cut the film between the three tabs transferred from the processing module 15 by the second transfer module 10 and receive the three tabs after the film is cut. The slitting module 11 includes: a sixth linear module 111, a first slitting frame 112, a first slitting cylinder 113, a slitting table 114, a second slitting frame 115, a second slitting cylinder 116, a lower pressing table 117, a guide rod 118, a linear drive mechanism 119 and a second suction plate 120. The sixth linear module 111 is disposed on the machine 1 and is located on one side of the processing module 15, providing driving force in the Y-axis direction; the first slitting frame 112 is disposed at the output end of the sixth linear module 111; the first slitting cylinder 113 is disposed on the first slitting frame 112; the slitting table 114 is connected to the output end of the first slitting cylinder 113 and is disposed on the first slitting frame 112 in a guided sliding manner. The slitting table 114 is provided with a slitting hole 1141; the second slitting frame 115 is disposed on top of the first slitting frame 112; The second slitting cylinder 116 is arranged at the top of the second slitting frame 115; the pressing table 117 is arranged at the output end of the second slitting cylinder 116, and a slitting knife 1171 is provided at the bottom of the pressing table 117; the guide rod 118 is arranged between the slitting table 114 and the pressing table 117, and is used to guide the movement of the pressing table 117; the linear drive mechanism 119 is arranged on the machine 1, providing driving force for the X-axis movement, and the linear drive mechanism 119 is a cylinder; the second adsorption plate 120 is arranged at the output end of the linear drive mechanism 119. When the three interconnected power tabs are transported to the slitting module 11 by the second transfer module 10, the sixth linear module 111 and the first slitting cylinder 113 will operate, driving the slitting table 114 and the slitting knife 1171 to move below and above the three interconnected power tabs, and then the second slitting cylinder 116 drives the slitting knife 1171 to approach the slitting table 114 to cut the film between the three interconnected power tabs, and the above slitting action is repeated to cut the three interconnected power tabs into three independent power tabs. Finally, the second transfer module 10 places the three independent power tabs on the second adsorption plate 120, waiting for subsequent collection. The second adsorption plate 120 can be driven to move by the setting of the linear drive mechanism 119 to receive the three independent power tabs transported by the second transfer module 10.

[0097] Specifically, if Figure 4 As shown, the collection module 13 is mounted on the machine 1, located to one side of the slitting module 11. It is used to grab and collect the three tabs after cutting and laminating. The collection module 13 includes a collection box and a grabbing and suction manipulator. The collection box is mounted on the machine 1; the grabbing and suction manipulator grabs and suctions the three tabs after cutting and laminating, and places them into the collection box.

[0098] Working principle: When in use, the coil is pulled cyclically by the pulling module 4. After being straightened by the shaping module 3, the coil enters the cutting module 5. The cutting module 5 cuts the coil into pieces, and then the first material picking module cuts the coil, which is placed in the positioning module 7 for positioning. The positioned coil is then placed on the first adsorption plate 94 of the first transfer module 9 by the second material picking module 8. When there are three coils on the first adsorption plate 94 of the first transfer module 9, the three coils are placed in the processing module at the same time by the second transfer module 10. 15. Lamination, exhaust, hot melting, shaping and cooling are carried out in sequence to form three interconnected power pole ears. The second transfer module 10 then moves the three interconnected power pole ears to the slitting module 11, and the three interconnected power pole ears are slit to form three independent power pole ears. The three independent power pole ears are placed on the second adsorption plate 120. Finally, the three independent power pole ears on the second adsorption plate 120 are grabbed by the grabbing adsorption robot and placed in a collection box for collection. The above actions are repeated to realize the production of power pole ears.

[0099] Above, refer to Figures 4 to 13 The invention describes an efficient processing equipment for power tabs according to an embodiment of the invention. It is observed that each beat is stuck in the fusion beat, which takes a relatively long time, because the product performance of the power tab mainly depends on maintaining a certain fusion time for heating to ensure its product performance. The previous cutting stations are relatively short in time, so a processing method concept is proposed, which cuts three coils in one round, and transfers the three metal sheets to the processing station through a robot arm, applies glue at one time, and fuses the three metal sheets at one time during fusion. In this way, three tabs can be produced within the same time frame, and the product output has tripled in the same time.

[0100] It should be noted that, in this specification, the terms "comprises," "includes," or any other variations thereof are intended to encompass non-exclusive inclusion, such that a process, method, article, or apparatus comprising a series of elements includes not only those elements but also other elements not explicitly listed, or elements inherent to such process, method, article, or apparatus. In the absence of further limitations, elements defined by the phrase "comprising..." do not exclude the presence of other identical elements in the process, method, article, or apparatus comprising the elements.

[0101] Although the present invention has been described in detail through the above preferred embodiments, it should be understood that the above description should not be considered as limiting the present invention. After reading the above description, various modifications and alternatives to the present invention will be readily apparent to those skilled in the art. Therefore, the scope of protection of the present invention shall be defined by the appended claims.

Claims

1. An efficient processing equipment for power tabs, characterized in that: Include: Machine; A material discharge tray is provided on one side of the top of the machine and is used for placing coils; A shaping module is provided on the machine platform and is located on one side of the unloading tray, and is used to shape the coiled material on the unloading tray; A material pulling module is provided on the machine platform and is located on one side of the shaping module, and is used to pull the coiled material on the discharge tray and convey the coiled material; A cutting module, which is arranged on the machine platform and located on one side of the material pulling module, and is used to cut the coiled material conveyed by the material pulling module; A first material taking module, which is arranged on the machine platform and located on one side of the cutting module, and is used to grab the coiled material cut by the cutting module; A positioning module is provided on the machine platform and is located on one side of the first retrieving module, and is used to receive the coiled material grabbed by the first retrieving module and position the coiled material; A second material taking module, which is arranged on the machine platform and located on one side of the positioning module, and is used to grab the coil positioned by the positioning module; a first transfer module, which is disposed on the machine platform and located on one side of the second retrieving module, and is used to receive three coils of material grabbed by the second retrieving module; A pair of glue placing modules, the pair of glue placing modules are respectively arranged at the top and bottom of the machine platform, for placing glue; a processing module, the processing module being disposed on the machine platform and located on one side of the first transfer module; A second transfer module is provided on the machine platform and is arranged opposite to the processing module, and is used to transfer the three coils on the first transfer module to the processing module, and perform lamination, exhaust, heat melting, shaping and cooling in the processing module to form three tabs, and then transfer the three tabs out of the processing module; A slitting module, which is arranged on the machine and located on one side of the processing module, is used to cut the coating between the three tabs transferred from the processing module by the second transfer module and receive the three tabs after the coating is cut; The collecting module is arranged on the machine platform and located on one side of the slitting module, and is used to grab and collect the three tabs after cutting and laminating.

2. The high-efficiency processing equipment for power tabs according to claim 1, characterized in that: The shaping module comprises: A shaping frame, which is arranged on the machine platform and located on one side of the discharge tray; a first roller rotatably disposed on the shaping frame; A shaping driver, which is arranged at the top of the shaping frame and provides a driving force for lifting; A lifting frame, the lifting frame being arranged at an output end of the shaping driver; A second roller is rotatably arranged on the lifting frame.

3. The high-efficiency processing equipment for power tabs according to claim 1, characterized in that: The pulling module comprises: A first linear module, which is arranged on the machine platform and provides driving force in the X-axis direction; A movable plate connected to an output end of the first linear module; a third roller, the third roller being rotatably connected to the movable plate; A pair of pulling cylinders, the pair of pulling cylinders being arranged at the top and bottom of the movable plate and being arranged opposite to each other; a pair of guide rails, the pair of guide rails being arranged on the movable plate; A pair of pulling plates are respectively arranged at the output ends of the pair of pulling cylinders, and the pair of pulling plates are respectively slidably connected to the pair of guide rails.

4. The high-efficiency processing equipment for power tabs according to claim 1, characterized in that: The first reclaiming module comprises: A rotary cylinder, which is arranged on the machine platform and located on one side of the cutting module; a connecting rod, one end of which is connected to the output end of the rotary cylinder; A first adsorption head is provided at the other end of the connecting rod.

5. The high-efficiency processing equipment for power tabs according to claim 1, characterized in that: The positioning module includes: A positioning platform, which is arranged on the machine platform and located on one side of the first retrieving module, and a rib is provided on the rear side of the positioning platform; A positioning cylinder, the positioning cylinder is arranged at the bottom of the positioning platform, and two positioning plates are provided on the output end of the positioning cylinder, and the two positioning plates are located on the left and right sides of the positioning platform; A propulsion cylinder is arranged at the front side of the positioning platform, and a positioning head is provided at the output end of the propulsion cylinder.

6. The high-efficiency processing equipment for power tabs according to claim 1, characterized in that: The second reclaiming module comprises: A retrieving plate, which is arranged on the machine platform and located on one side of the positioning module; A material taking rack, wherein the material taking rack is arranged on the material taking plate in a guide sliding manner; A material retrieving driver, connected to the material retrieving plate, driving the material retrieving rack to move on the material retrieving plate; A material taking cylinder, wherein the material taking cylinder is arranged on the material taking frame; The second adsorption head is arranged on the material picking rack in a guided sliding manner and is connected to the output end of the material picking cylinder.

7. The high-efficiency processing equipment for power tabs according to claim 1, characterized in that: The first transfer module comprises: A second linear module is provided on the machine platform and located on one side of the second reclaiming module, providing driving force in the Y-axis direction; A third linear module, which is arranged at the output end of the second linear module and provides driving force in the X-axis direction; A Z-axis driver, which is arranged at the output end of the third linear module and provides a driving force in the Z-axis direction; A first adsorption plate is provided at an output end of the Z-axis driver.

8. The high-efficiency processing equipment for power tabs according to claim 1, characterized in that: The second transfer module comprises: Two electric transfer racks are connected to each other, and each of the two electric transfer racks is provided with a plurality of finger handling manipulators.

9. The high-efficiency processing equipment for power tabs according to claim 1, characterized in that: The cutting module comprises: a sixth linear module, which is disposed on the machine platform and located on one side of the processing module, and provides a driving force in the Y-axis direction; a first slitting frame, the first slitting frame being arranged at an output end of the sixth linear module; a first slitting cylinder, the first slitting cylinder being arranged on the first slitting frame; A slitting table, the slitting table is connected to the output end of the first slitting cylinder and is slidingly arranged on the first slitting frame, and the slitting table is provided with a slitting hole; a second slitting frame, the second slitting frame being arranged on top of the first slitting frame; a second slitting cylinder, the second slitting cylinder being arranged on the top of the second slitting frame; A lower pressing platform, which is arranged at the output end of the second slitting cylinder, and a slitting knife is provided at the bottom of the lower pressing platform; A guide rod, which is arranged between the slitting table and the pressing table and is used to guide the movement of the pressing table; A linear drive mechanism, which is arranged on the machine platform and provides driving force for X-axis movement; A second adsorption plate is arranged at an output end of the linear drive mechanism.

10. The high-efficiency processing equipment for power tabs according to claim 1, characterized in that: The collection module comprises: A collection box, the collection box being arranged on the machine platform; The grabbing and adsorption manipulator grabs and adsorbs the three tabs after cutting and coating, and puts them into a collection box.