Integrated copper bar connecting piece machining device

By integrating the design of punching mechanism, linkage components and bending components, continuous processing of copper busbar connectors is achieved, which solves the problems of complex structure and insufficient precision of existing devices and improves processing efficiency and stability.

CN120791444APending Publication Date: 2025-10-17DONGGUAN LEIXUN NEW ENERGY TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202511189810.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-08-25
Publication Date
2025-10-17

AI Technical Summary

Technical Problem

The existing copper busbar connector processing device has a low degree of integration, resulting in a complex structure and a large volume. In addition, the copper busbar needs to be cut in advance when bending, which affects the bending accuracy and use effect.

Method used

An integrated copper busbar connector processing device has been designed. By integrating the punching mechanism, linkage components and bending components, continuous punching, cutting and bending of the copper busbar can be achieved. The coordination of the slot plate and the stop bar is used to avoid processing interference, and the conveying unit is used to improve stability and precision.

Benefits of technology

The processing efficiency is improved, the device volume and manufacturing difficulty are reduced, the stability and precision of copper busbar processing are ensured, and interference and dislocation problems during the processing are avoided.

✦ Generated by Eureka AI based on patent content.

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Abstract

The integrated copper bar connecting piece machining device comprises a base table and a punching mechanism, the punching mechanism comprises a support, the base table is sleeved with the support, the body of the support is fixedly connected with an extrusion rod, the output end of the extrusion rod is fixedly connected with a groove plate, the interior of the groove plate is rotationally connected with a punching rod, and the punching rod is fixedly connected with the base table. The punching rod is in a T shape, the transverse side of the punching rod is used for supporting and controlling rotation of the punching rod, the longitudinal side of the punching rod is used for punching machining of a copper bar, a cutter is arranged between the outer surface of the groove plate and the outer surface of the base table, and a hole used for being matched with the punching rod and the cutter for punching is formed in the surface of the base table. The problems that when an existing integrated copper bar connecting piece machining device is used, the overall integration degree is not high, the device structure is complex, the size is large, a copper bar needs to be cut off in advance during bending, the stability of the formed copper bar is insufficient, and the bending precision and the using effect are affected are solved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of connector processing, in particular to an integrated copper bar connector processing device. BACKGROUND

[0002] The existing copper bar needs to be bent according to the installation station during use, and the existing bending method needs to bend the two ends of the copper bar respectively, which causes the problem of rotating and adjusting the copper bar between processes, thereby reducing the actual processing efficiency. In a new energy automobile soft and hard integrated copper bar connector processing device with publication number CN118768946A, a processing support assembly is provided, which includes an adjusting support plate and a U-shaped pushing plate, which realizes continuous processing of the copper sheet, keeps the operation smooth, and avoids additional operations.

[0003] Although the device provides an integrated processing scheme, the following defects still exist during use: 1) Although the device provides an integrated processing method, the overall integration degree is not high, resulting in a complex device structure and a large size; 2) When the device is processing, the copper bar is directly cut off after punching, and then the formed copper bar is bent, which is easy to dislocate when the cut copper bar is subjected to extrusion force, thereby affecting the bending precision and use effect.

[0004] Therefore, the problems of the above-mentioned copper bar processing device still need to be solved. SUMMARY

[0005] In view of the deficiencies of the prior art, the present application provides an integrated copper bar connector processing device. The existing integrated copper bar connector processing device has the problems of low overall integration degree, complex device structure, large size, and the need to cut the copper bar in advance during bending, which affects the bending precision and use effect.

[0006] To achieve the above purpose, the present application is realized by the following technical scheme: an integrated copper bar connector processing device, comprising a base, a punching and cutting mechanism, the punching and cutting mechanism comprising a support, the support being sleeved outside the base, the body of the support being fixedly connected with an extrusion rod, the output end of the extrusion rod being fixedly connected with a groove plate, the inside of the groove plate being rotatably connected with a punching rod, the punching rod being T-shaped, one side of the horizontal direction being used for supporting and controlling the rotation of the punching rod, and the other side of the vertical direction being used for punching processing of the copper bar, a cutting knife being arranged between the outer surfaces of the groove plate and the base, the surface of the base being provided with a hole for adapting the punching and cutting of the punching rod and the cutting knife, the groove plate cutting off the copper bar by pressing the cutting knife, and the punching rod entering the inside of the groove plate by rotating during cutting; A linkage assembly is arranged outside the cutter to control the position of the cutter, and to realize the conveying and cutting of the copper bar. A bending assembly is arranged outside the cutter to integrate the bending and cutting of the copper bar.

[0007] Preferably, the body of the groove plate is fixedly connected with a rotary air cylinder, the output end of the rotary air cylinder is fixedly connected with one end of a punch rod, the outer surface of the punch rod is provided with a resisting groove, and the resisting groove is movably connected with a resisting strip, and both ends of the resisting strip are fixedly connected with the inner part of the groove plate.

[0008] Preferably, the linkage assembly comprises a horizontal strip arranged between the outer surfaces of the base and the groove plate, the outer surface of the cutter is slidably connected with the inner part of the horizontal strip, the outer surface of the horizontal strip is fixedly connected with a spring rod, the outer surface of the spring rod is fixedly connected with the body of the base, and the inner parts of the horizontal strip and the base are slidably connected with resisting plates, the outer surfaces of the resisting plates are movably connected, the outer surfaces of the resisting plates are fixedly connected with lifting rods, and one end of each of the lifting rods is fixedly connected with the inner parts of the base and the horizontal strip.

[0009] Preferably, a linkage gear is arranged between the outer surfaces of the resisting plates and the cutter, the body of the linkage gear is fixedly connected with a rotating rod, both ends of the rotating rod are rotatably connected with the inner part of the horizontal strip, both sides of the outer surface of the linkage gear are engaged with racks, the outer surfaces of the racks are fixedly connected with the outer surfaces of the resisting plates and the cutter, the bodies of the resisting plates and the cutter are provided with through clamping grooves, the inner part of the clamping grooves is clamped with an expansion rod, and one end of the expansion rod is fixedly connected with the inner part of the horizontal strip.

[0010] Preferably, the horizontal strip is provided with a conveying unit, the conveying unit comprises groups of rotating rollers, each group of the rotating rollers comprises two rotating rollers arranged above and below, the shaft ends of both sides of the rotating rollers are fixedly connected with clamping rings, the outer surface of the rotating rollers is sleeved with a rubber cylinder, and one side of the shaft end of the rotating roller is fixedly connected with a driving motor through a shaft coupling.

[0011] Preferably, the outer parts of the rotating rollers arranged above and below are provided with slide rails, the slide rails arranged above and below are provided with two slide rails arranged on the left and right, the outer surfaces of the slide rails arranged above and below are fixedly connected with the outer surfaces of the base and the horizontal strip, the outer surface of the slide rail is slidably connected with a linear motor, the outer surface of the linear motor is fixedly connected with a bending strip, the output end of the driving motor and the shaft end of the rotating roller are rotatably connected with the body of the bending strip, and the outer surface of the driving motor is fixedly connected with the outer surface of the bending strip.

[0012] Preferably, the bending assembly comprises a support plate arranged outside the base, an adjusting rod is fixedly connected to the outer surface of the support plate, a rotating cylinder is rotatably connected to the output end of the adjusting rod, two clamping plates are fixedly connected to the end of the output end of the adjusting rod, a push rod is fixedly connected to the outer surface of the rotating cylinder, and the rotating cylinder bends the copper bar by rotating the push rod and abutting the clamping plates.

[0013] Preferably, the output end of the adjusting rod is fixedly connected with two circular plates, the outer surfaces of the two circular plates are movably connected to the two sides of the interior of the rotating cylinder, the outer surface of one of the circular plates is fixedly connected with a rotary motor, the output end of the rotary motor is fixedly connected with a drive gear, the outer surface of the drive gear is engaged with a tooth ring, and the outer surface of the tooth ring is fixedly connected with the interior of the rotating cylinder.

[0014] Beneficial effects The application provides a one-piece copper bar connecting piece processing device. (1) By setting the punching mechanism, the cutting knife and the punching rod are integrated below the slot plate, the slot plate is pressed down to realize punching and cutting knife operation, the volume and manufacturing difficulty of the device are reduced, the punching end of the punching rod is used to make the punching and cutting two processes not interfere with each other, and the abutting action of the abutting groove and the abutting bar is used to make the abutting bar receive the stress of the punching rod, thereby avoiding the problem of affecting the position adjustment caused by the disconnection and misplacement of the connecting end of the punching rod.

[0015] (2) By setting the linkage assembly, the synchronous reverse movement of the cutting knife and the abutting plate is realized through the transmission of the linkage gear and the two side racks, so that the cutting knife is retracted and the upper and lower abutting plates are abutted to facilitate the punching of the copper bar by the punching rod, and the continuous conveying of the copper bar blank is facilitated, and when the abutting plate is retracted, the punching rod is rotated into the interior of the slot plate, so that the cutting knife can cut and form the copper bar blank, thereby avoiding the problem of mutual interference of the two processes.

[0016] (3) By setting the conveying unit, the upper and lower rotating rollers can improve the contact friction with the copper bar blank through the rubber tube, so that the rotating rollers can continuously convey the copper bar blank for continuous punching and cutting, and the rubber tube can also avoid the problem of deformation of the surface of the copper bar caused by hard contact, and the clamping action of the two side clamping rings can improve the stability of the conveying of the copper bar blank, thereby improving the precision of punching and cutting.

[0017] (4) By setting the bending assembly, the clamping and abutting of the copper bar blank by the clamping plate, and then driving the rotating drum to rotate by the rotating motor, the lever follows the rotation, and cooperates with the abutting effect of the clamping plate, so that the copper bar blank can be bent at different angles, and the retraction of the output end of the telescopic rod can facilitate the retraction of the bent copper bar blank, so that the cutter can cut it to form, so as to realize the mutual interference between the two processes. BRIEF DESCRIPTION OF DRAWINGS

[0018] Figure 1 It is the external structure perspective view of the application; Figure 2 It is the internal structure perspective view of the groove plate of the application; Figure 3 It is the external structure perspective view of the resisting plate of the application; Figure 4 It is the internal structure perspective view of the rotating drum of the application; Figure 5 It is the external structure perspective view of the rotating roller of the application.

[0019] In the figure: 1, base; 2, support; 3, extrusion rod; 4, groove plate; 5, punching rod; 6, cutter; 7, linkage assembly; 71, horizontal bar; 72, conveying unit; 721, rotating roller; 722, clamping ring; 723, rubber cylinder; 724, driving motor; 725, slide rail; 726, linear motor; 727, folding strip; 73, spring rod; 74, resisting plate; 75, lifting rod; 76, linkage gear; 77, rotating rod; 78, telescopic rod; 79, rack; 710, clamping groove; 8, bending assembly; 81, support plate; 82, adjusting rod; 83, rotating drum; 84, clamping plate; 85, lever; 86, round plate; 87, rotating motor; 88, driving gear; 89, gear ring; 9, rotating air cylinder; 10, resisting groove; 11, resisting strip. DETAILED DESCRIPTION

[0020] The technical solutions in the embodiments of the application will be described clearly and completely below with reference to the drawings in the embodiments of the application. Obviously, the described embodiments are only part of the embodiments of the application, not all. Based on the embodiments in the application, those skilled in the art can make further modifications without making creative efforts, and all belong to the protection scope of the application.

[0021] Please refer to Figures 1-5 The application provides a kind of technical solutions: a kind of integrated copper bar connecting piece processing device: Example one: including the base station 1, the outside of the base station 1 is provided with a punching mechanism, the punching mechanism includes a support 2, the support 2 is sleeved on the outside of the base station 1, the body of the support 2 is fixedly connected with an extrusion rod 3, the extrusion rod 3 is made of a hydraulic rod, and is connected with an external control circuit, the output end of the extrusion rod 3 is fixedly connected with a groove plate 4, the cross section of the groove plate 4 is U-shaped, and the opening faces downward, the inside of the groove plate 4 is rotatably connected with a punching rod 5, the punching rod 5 is T-shaped, one side of the punching rod 5 is used for supporting and controlling the rotation of the punching rod 5, and the other side of the punching rod 5 is used for punching the copper bar, a cutter 6 is arranged between the outer surface of the groove plate 4 and the base station 1, the cutter 6 is used for cutting the processed copper bar blank, the surface of the base station 1 is provided with a hole for adapting the punching of the punching rod 5 and the cutter 6, and the inside of the hole is provided with a waste discharge measure (not shown in the figure), including but not limited to a discharge pipe, a suction end of a dust collector and the like, the groove plate 4 cuts the copper bar by pressing the cutter 6 downward, and the punching rod 5 enters the inside of the groove plate 4 by rotating during cutting, the body of the groove plate 4 is embeddedly and fixedly connected with a rotary air cylinder 9, the rotary air cylinder 9 is connected with the external control circuit, the output end of the rotary air cylinder 9 is fixedly connected with one end of the punching rod 5, a resisting groove 10 is formed in the outer surface of the punching rod 5, a resisting strip 11 is movably connected in the resisting groove 10, the resisting strip 11 is made of a material with large hardness, pressure resistance and wear resistance, the instantaneous impact force during punching of the punching rod 5 is borne by the resisting strip 11 through cooperation with the resisting groove 10, so that the end of the punching rod 5 for connection is prevented from being dislocated and disconnected, thereby avoiding the problem that continuous processing is affected, and the two ends of the resisting strip 11 are fixedly connected with the inside of the groove plate 4.

[0022] In the embodiment, first, one end of the long strip-shaped copper bar blank is placed on the surface of the base station 1, then the copper bar blank is moved by pushing, and at the same time, when the position of the blank that needs to be punched is directly below one end of the punching rod 5, the rotary air cylinder 9 drives the punching rod 5 to rotate, so that the end of the punching rod 5 for punching moves from the inside of the groove plate 4 to the outside thereof and vertically downward, then the output end of the extrusion rod 3 is extended so that the groove plate 4 drives the punching rod 5 to move downward, thereby punching the blank, and the continuous movement of the blank and the reciprocating upward and downward movement of the punching rod 5 driven by the extrusion rod 3 are accompanied, so that the continuous processing of the blank is realized, thereby reducing the size of the device, and after the punching of one end of the blank is completed, the blank moves to the other side of the base station 1, in the process of continuous punching, the blank can be bent, so that the two processes are synchronized, thereby improving the overall processing efficiency, and after the bending process is completed, one end of the punching rod 5 rotates into the inside of the groove plate 4, then the groove plate 4 is lowered by the extrusion rod 3, so that the cutter 6 at the bottom of the groove plate 4 is pressed downward, thereby cutting the bent part of the blank by the cutter 6, so that the formed copper bar is obtained.

[0023] The outer part of the cutter 6 is provided with a linkage assembly 7, which includes a cross strip 71, the body of which is provided with a through hole for punching one end of the punch rod 5 through punching, the cross strip 71 is arranged between the outer surface of the base 1 and the groove plate 4, the outer surface of the cutter 6 is in sliding connection with the inner part of the cross strip 71, the outer surface of the cross strip 71 is fixedly connected with a spring rod 73, which plays a limiting and movement guiding role on the cross strip 71 and keeps connected with the base 1, the outer surface of the spring rod 73 is fixedly connected with the body of the base 1, the inner parts of the cross strip 71 and the base 1 are both in sliding connection with a resisting plate 74, the upper and lower two resisting plates 74 abut against each other, the outer surfaces of the two resisting plates 74 are movably connected, the outer surfaces of the two resisting plates 74 are both fixedly connected with a lifting rod 75, which is made of an electric push rod and is electrically connected with an external control circuit, the resisting plate 74 is controlled to move in and out of the inner part of the base 1 and the cross strip 71 through stretching and contracting, one end of each of the two lifting rods 75 is fixedly connected with the inner part of the base 1 and the cross strip 71, a linkage gear 76 is arranged between the upper resisting plate 74 and the outer surface of the cutter 6, the body of the linkage gear 76 is fixedly connected with a rotating rod 77, both ends of the rotating rod 77 are rotatably connected with the inner part of the cross strip 71, both sides of the outer surface of the linkage gear 76 are engaged with a rack 79, the transmission between the two racks 79 and the linkage gear 76 enables the cutter 6 and the resisting plate 74 to move synchronously and reversely, so that the punching and cutting of the copper bar blank do not interfere with each other, the outer surfaces of the two racks 79 are fixedly connected with the outer surfaces of the resisting plate 74 and the cutter 6 respectively, the bodies of the resisting plate 74 and the cutter 6 are both provided with a through clamping groove 710, the inner part of the clamping groove 710 is clamped with a telescopic rod 78, which is made of an electric push rod and is electrically connected with an external control circuit, through cooperation with the clamping groove 710, the telescopic rod 78 can bear the stress of the resisting plate 74 and the cutter 6 to improve the stability of the two, and the telescopic rod 78 is arranged in two or more along the movement direction of the resisting plate 74 and the cutter 6 to limit the retracted and extended states of the two, one end of the telescopic rod 78 is fixedly connected with the inner part of the cross strip 71.

[0024] In this embodiment, when punching is performed, the output end of the lifting rod 75 is extended, and the upper and lower side stop plates 74 are ejected from the inside of the base 1 and the crosspiece 71. During the punching process, the abutment of the two side stop plates 74 limits the downward path of the crosspiece 71, thereby avoiding the crosspiece from pressing the copper bar blank and causing deformation, which affects the forming quality. When the copper bar blank needs to be cut, the output end of the lifting rod 75 is retracted. Through the transmission connection of the two side racks 79 and the linkage gear 76, when the stop plate 74 enters the inside of the base 1 and the crosspiece 71, the cutter 6 slides out from the inside of the stop plate 74. After the position adjustment of the cutter 6 and the stop plate 74 is completed, the output end of the telescopic rod 78 is extended and enters the inside of the clamping groove 710 to limit the cutter 6 and the stop plate 74. Then, the extrusion rod 3 presses down the slot plate 4, so that the slot plate 4 presses down the crosspiece 71, thereby making the cutter 6 follow the downward movement to cut the copper bar blank.

[0025] In this embodiment, the crosspiece 71 is provided with a conveying unit 72, which includes a plurality of groups of rotating rollers 721. Each group of rotating rollers 721 includes two rotating rollers 721. The two shaft ends of each rotating roller 721 are fixedly connected with clamping rings 722. The distance between the two clamping rings 722 is matched with the width of the copper bar blank, which can prevent the copper bar blank from deviating during continuous conveying. The outer surface of the rotating roller 721 is sleeved with a rubber cylinder 723 made of a rubber material with good friction performance and not easy to fatigue. As an optional mode, a plurality of groups of rotating rollers 721 without rubber cylinders 723 and with clamping rings 722 are arranged equidistantly on the side of the copper bar blank feeding, which can support and prevent the copper bar blank from deviating. One side shaft end of the rotating roller 721 is fixedly connected with a driving motor 724 through a shaft coupling. The driving motor 724 is made of a servo motor and is electrically connected with an external control circuit. The outer surfaces of the upper and lower rotating rollers 721 are provided with sliding rails 725. The upper and lower sliding rails 725 are provided with two left and right sliding rails respectively. The outer surfaces of the upper and lower sliding rails 725 are fixedly connected with the outer surfaces of the base 1 and the crosspiece 71 respectively. The outer surface of the sliding rail 725 is slidingly connected with a linear motor 726. The linear motor 726 has a self-locking function and is electrically connected with an external control circuit. The outer surface of the linear motor 726 is fixedly connected with a folding strip 727. The output end of the driving motor 724 and the shaft end of the rotating roller 721 are rotatably connected with the body of the folding strip 727. The outer surface of the driving motor 724 is fixedly connected with the outer surface of the folding strip 727.

[0026] In the embodiment, when the copper bar blank is fed, one end of the blank is sequentially inserted between a plurality of fixed rotating rollers 721, and then placed on the surface of the base 1. Then, the linear motor 726 slides along the slide rail 725, so that the folding strip 727 drives the corresponding rubber cylinder 723 to approach each other through the movable rotating roller 721. Then, the rubber cylinder 723 is in extrusion contact with the surface of the copper bar blank, so that the driving motor 724 drives the rotating roller 721 to rotate to drive the copper bar blank to be automatically conveyed by friction, so as to realize the purpose of continuous processing. When the blank needs to be cut after bending, if the cutting position is not directly below the cutter 6, the driving motor 724 is reversed to make the copper bar blank retreat, so that the cutter can cut the blank, and the formed copper bar is discharged by falling.

[0027] Embodiment 4: The outside of the cutter 6 is provided with a bending assembly 8, which includes a support plate 81. The support plate 81 is provided on the outside of the base 1. The outer surface of the support plate 81 is fixedly connected with an adjusting rod 82. The adjusting rod 82 is made of a hydraulic rod and is electrically connected to the external control circuit. An inclined material tray (not shown in the figure) can be fixed on one side of the base 1 close to the adjusting rod 82 to receive the copper bar after cutting. The output end of the adjusting rod 82 is rotatably connected to a rotating drum 83. The rotating drum 83 is hollow inside, and one side of the surface is connected to the output of the adjusting rod 82. One end of the output end is flush, and the end of the output end of the adjusting rod 82 is fixedly connected to two clamping plates 84. The spacing between the two clamping plates 84 is adapted to the thickness of the copper bar blank and is used to clamp and abut the copper bar blank. The outer surface of the rotating cylinder 83 is fixedly connected with a lever 85. The spacing between the levers 85 on both sides is greater than the distance between the clamping plates 84 on both sides, and by following the rotation of the rotating cylinder 83, the copper bar blank can be bent at any angle. At the same time, the edge chamfer of the clamping plate 84 close to the lever 85 is set to avoid exceeding the outer arc surface of the output end of the adjusting rod 82. , which affects the bending effect of the copper bar blank. The rotating drum 83 drives the lever 85 to rotate and uses the abutment of the clamping plate 84 to bend the copper bar. The output end of the adjusting rod 82 is fixedly connected with two circular plates 86. The circular plates 86 play an axial limit and support role on the rotating drum 83, so that the rotating drum 83 remains coaxial with the adjusting rod 82. The outer surfaces of the two circular plates 86 are movably connected to the two sides of the inside of the rotating drum 83 respectively. The outer surface of one side circular plate 86 is fixedly connected to a rotating motor 87. The rotating motor 87 is made of a servo motor and is connected to the adjusting rod 82. The external control circuit is electrically connected, and the output end of the rotating motor 87 is fixedly connected to the driving gear 88. There are multiple driving gears 88 arranged at equal angles around the axis of the adjusting rod 82, which can not only improve the stability and force-bearing capacity of the rotating drum 83, but also provide sufficient driving force to bend the copper busbar blank. The outer surface of the driving gear 88 is engaged with a gear ring 89, and a certain transmission ratio is set between the gear ring 89 and the driving gear 88 to facilitate the bending of the copper busbar blank at any angle. The outer surface of the gear ring 89 is fixedly connected to the inside of the rotating drum 83.

[0028] In this embodiment, after the copper busbar blank is continuously conveyed and punched, one end of it extends to the other side of the base 1, and then the output end of the adjusting rod 82 extends out, driving the rotating drum 83 and the clamping plate 84 to move from one side close to the copper busbar blank, and making the clamping plate 84 clamp it. Then, when the copper busbar blank to be bent is aligned on the side of the clamping plate 84 close to the lever 85, the rotating motor 87 drives the driving gear 88 to rotate, so that the gear ring 89 drives the lever 85 to rotate around the axis of the adjusting rod 82 through the rotating drum 83, and then the copper busbar blank is bent by the contact between the lever 85 and the copper busbar blank and the abutment of the clamping plate 84. At the same time, when the copper busbar blank needs to be retracted and cut after the bending process, the output end of the adjusting rod 82 retracts, so that the clamping plate 84 is reset and freed from the restriction on the copper busbar blank.

[0029] While the application has been shown and described with reference to particular embodiments thereof, it will be understood by those skilled in the art that various changes in form and details can be made therein without departing from the spirit and scope of the application. Accordingly, the scope of the application is defined only by the appended claims and equivalents thereof.

Claims

1. An integrated copper busbar connector processing device, comprising a base (1), characterized in that: A punching mechanism, the punching mechanism comprising a bracket (2), the bracket (2) being sleeved on the outside of the base (1), the body of the bracket (2) being fixedly connected to an extrusion rod (3), the output end of the extrusion rod (3) being fixedly connected to a slot plate (4), the interior of the slot plate (4) being rotatably connected to a punching rod (5), the punching rod (5) being T-shaped, with one lateral side being used for supporting and controlling its own rotation, and one longitudinal side being used for punching the copper bar, a cutter (6) being provided between the outer surface of the slot plate (4) and the base (1), the surface of the base (1) being provided with holes for adapting to punching by the punching rod (5) and the cutter (6), the slot plate (4) cutting the copper bar by pressing the cutter (6) downward, and the punching rod (5) entering the interior of the slot plate (4) by rotating during cutting; A linkage assembly (7), the linkage assembly (7) being arranged outside the cutter (6) and used to control the position of the cutter (6) to achieve the conveying and cutting of the copper busbar; A bending assembly (8) is provided outside the cutter (6), so that the bending and cutting of the copper busbar are integrated.

2. The integrated copper busbar connector processing device according to claim 1, characterized in that: The body of the groove plate (4) is embedded and fixedly connected with a rotating cylinder (9), the output end of the rotating cylinder (9) is fixedly connected to one end of the punching rod (5), the outer surface of the punching rod (5) is provided with a supporting groove (10), the interior of the supporting groove (10) is movably connected with a supporting bar (11), and both ends of the supporting bar (11) are fixedly connected to the interior of the groove plate (4).

3. The integrated copper busbar connector processing device according to claim 1, characterized in that: The linkage assembly (7) includes a horizontal bar (71), which is arranged between the outer surface of the base (1) and the slot plate (4), the outer surface of the cutter (6) is slidably connected to the inside of the horizontal bar (71), the outer surface of the horizontal bar (71) is fixedly connected to a spring rod (73), the outer surface of the spring rod (73) is embedded and fixedly connected to the body of the base (1), the interior of the horizontal bar (71) and the base (1) are both slidably connected to a support plate (74), the outer surfaces of the support plates (74) on both sides are movably connected, the outer surfaces of the support plates (74) on both sides are embedded and fixedly connected to a lifting rod (75), and one end of the lifting rod (75) on both sides is fixedly connected to the inside of the base (1) and the horizontal bar (71), respectively.

4. The integrated copper busbar connector processing device according to claim 3, characterized in that: A linkage gear (76) is provided between the upper support plate (74) and the outer surface of the cutter (6), and a rotating rod (77) is fixedly connected to the body of the linkage gear (76), and both ends of the rotating rod (77) are embedded and rotatably connected to the interior of the horizontal bar (71). Racks (79) are meshed on both sides of the outer surface of the linkage gear (76), and the outer surfaces of the racks (79) on both sides are fixedly connected to the outer surfaces of the support plate (74) and the cutter (6), respectively. The bodies of the support plate (74) and the cutter (6) are both provided with a through-groove (710), and a telescopic rod (78) is clamped inside the slot (710), and one end of the telescopic rod (78) is fixedly connected to the interior of the horizontal bar (71).

5. The integrated copper busbar connector processing device according to claim 3, characterized in that: A conveying unit (72) is provided on the outside of the horizontal bar (71), and the conveying unit (72) includes rollers (721) arranged in groups, and each group of the rollers (721) is provided with two upper and lower rollers, and the shaft ends on both sides of the rollers (721) are penetrated and fixedly connected with clamping rings (722), and the outer surface of the rollers (721) is provided with a rubber sleeve (723), and the shaft end on one side of the rollers (721) is fixedly connected to a driving motor (724) through a coupling.

6. The integrated copper busbar connector processing device according to claim 5, characterized in that: The outer parts of the upper and lower rollers (721) are provided with slide rails (725), and the upper and lower slide rails (725) are respectively provided with two left and right ones. The outer surfaces of the upper and lower slide rails (725) are respectively fixedly connected to the outer surfaces of the base (1) and the horizontal bar (71). The outer surface of the slide rail (725) is slidably connected to the linear motor (726), and the outer surface of the linear motor (726) is fixedly connected to the folding bar (727). The output end of the drive motor (724) and the shaft end of the roller (721) are both rotatably connected to the body of the folding bar (727), and the outer surface of the drive motor (724) is fixedly connected to the outer surface of the folding bar (727).

7. The integrated copper busbar connector processing device according to claim 1, characterized in that: The bending assembly (8) comprises a support plate (81), the support plate (81) being arranged outside the base (1), the outer surface of the support plate (81) being fixedly connected to an adjusting rod (82), the output end of the adjusting rod (82) being rotatably connected to a rotating drum (83), the end of the output end of the adjusting rod (82) being fixedly connected to two clamping plates (84), the outer surface of the rotating drum (83) being fixedly connected to a shifting rod (85), the rotating drum (83) being driven to rotate the shifting rod (85) and utilizing the abutting action of the clamping plates (84) to bend the copper busbar.

8. The integrated copper busbar connector processing device according to claim 7, characterized in that: The output end of the regulating rod (82) is fixedly connected to two circular plates (86), and the outer surfaces of the two circular plates (86) are movably connected to the two sides of the inside of the rotating drum (83). The outer surface of one side of the circular plate (86) is fixedly connected to a rotating motor (87), and the output end of the rotating motor (87) is fixedly connected to a driving gear (88). The outer surface of the driving gear (88) is meshed with a gear ring (89), and the outer surface of the gear ring (89) is fixedly connected to the inside of the rotating drum (83).

Citation Information

Patent Citations

  • Soft and hard integrated copper bar connecting piece machining device for new energy automobile

    CN118768946A