Pressing and riveting tool for conducting strip

By using the elastic contact and guiding surface design of the conductive sheet riveting fixture, combined with the positioning post and automated material handling mechanism, the problems of deformation and indentation during the conductive sheet riveting process are solved, achieving high-quality riveting effect and convenient operation.

CN223557185UActive Publication Date: 2025-11-18ZHEJIANG GUANGHE INTELLIGENT TECH CO LTD
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Patent Information

Application Number
CN202422996242.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-05
Publication Date
2025-11-18
Estimated Expiration
2034-12-05

AI Technical Summary

Technical Problem

In the existing technology, during the riveting process of the conductive sheet and the rivet nut, the conductive sheet is prone to deformation and indentation on the surface, which affects the aesthetics and flatness.

Method used

A riveting fixture for conductive sheets is adopted, including components such as a stripper plate, a riveting head, a positioning post, and an elastic element. Through the elastic contact of the guide sleeve and the design of the guide surface, deformation of the conductive sheet is avoided, and the positioning post prevents the riveted parts from tilting. Combined with an automated material handling mechanism, the riveting quality is ensured.

Benefits of technology

It effectively prevents deformation and indentation of conductive sheets, improves riveting quality, ensures the flatness and aesthetics of conductive sheets, and simultaneously achieves automated material handling and precise movement, improving operational convenience and efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a pressing and riveting tool for a conducting strip, which is characterized in that a stripper plate is provided with a cavity for fixing the conducting strip, and the conducting strip is pre-provided with a pressing and riveting piece; the pressing rivet head comprises a cover plate, a sheath, a guide sleeve, a rivet column and a first elastic piece, the cover plate and the sheath are matched to form a containing cavity, the first elastic piece is contained in the containing cavity, one end of the guide sleeve extends into the containing cavity and abuts against the first elastic piece, the other end of the guide sleeve extends to the outside, and the guide sleeve is provided with a through hole penetrating through the two ends; the riveting column penetrates through the through hole and slides relative to the guide sleeve; in an initial state, the bottom surface of the guide sleeve is lower than the bottom surface of the riveting column; when the guide sleeve abuts against the conducting strip, the guide sleeve moves towards one side of the first elastic piece, and the riveting column is riveted to the matching position of the conducting strip and the riveting piece in a pressing mode. According to the structure, in the pressing riveting process, it can be ensured that the conducting strip cannot be deformed and bent, indentations on the conducting strip after pressing riveting are reduced, and the pressing riveting effect is good.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of frock, concretely relates to a riveting frock of electrically conductive sheet. BACKGROUND

[0002] Riveting process: the principle is that the pressure makes the flower tooth of the riveting nut extrude into the plate to cause the plastic deformation of the hole periphery, the deformation is extruded into the guide groove, thereby producing the locking effect.

[0003] In the prior art, the riveting between the electrically conductive sheet and the riveting nut adopts the riveting head to directly rivet, and the common problem is that after riveting, the electrically conductive sheet will be deformed (produce the arc), leading to that the overall flatness is not enough, and secondly, the surface of the electrically conductive sheet will produce the indentation, influencing the appearance of the electrically conductive sheet. UTILITY MODEL CONTENTS

[0004] Therefore, the technical problem to be solved by the utility model is how to improve the riveting quality. For this purpose, a riveting frock of electrically conductive sheet comprises:

[0005] The stripper plate is provided with a cavity for fixing the electrically conductive sheet, and the electrically conductive sheet is pre-installed with a riveting piece;

[0006] The riveting head comprises a cover plate, a sheath, a guide sleeve, a riveting column and a first elastic piece, the cover plate and the sheath cooperate to form a containing cavity, the first elastic piece is accommodated in the containing cavity, one end of the guide sleeve extends into the containing cavity and abuts against the first elastic piece, the other end of the guide sleeve extends to the outside, the guide sleeve is provided with a through hole penetrating through both ends; the riveting column penetrates through the through hole, and the riveting column slides relative to the guide sleeve;

[0007] In the initial state, the bottom surface of the guide sleeve is lower than the bottom surface of the riveting column; when the guide sleeve abuts against the electrically conductive sheet, the guide sleeve moves towards the side of the first elastic piece, and the riveting column is riveted at the cooperation position of the electrically conductive sheet and the riveting piece.

[0008] The bottom surface of the guide sleeve is provided with a guide surface.

[0009] The cavity is fixed with a positioning column, the riveting piece is provided with a positioning cavity, the positioning column extends to the positioning cavity, and a clearance is arranged between the edge wall of the positioning column and the inner wall of the positioning cavity.

[0010] Further comprising a fixed plate and a second elastic piece, the second elastic piece is located between the fixed plate and the stripper plate, the stripper plate is further fixed with a support block and a positioning column, the top surface of the support block is part of the cavity, and the support block moves relative to the stripper plate; the stripper plate is provided with a stripper column, the riveting column and the stripper column cooperate to drive the stripper plate to move towards the fixed plate.

[0011] The top surface of the conductive sheet exceeds the top surface of the stripper plate.

[0012] The number of the cavities is several, and the pressure riveting pieces are horizontally aligned.

[0013] The pressure riveting mechanism further comprises a pressure sensor and an inductor probe, and the inductor probe monitors the pressure in real time.

[0014] The pressure riveting mechanism further comprises a pressure riveting support, a KK module and a roller track, the stripper plate is linked with the pressure riveting support, the KK module drives the pressure riveting support to move along a first direction, and the roller track drives the pressure riveting support to move along a second direction.

[0015] The cleaning station is provided with a cleaning module, the cleaning module is sleeved on the stripper plate when the stripper plate moves to the cleaning station, and the cleaning module cleans the stripper plate.

[0016] The taking mechanism comprises a clamping jaw, the clamping jaw clamps the completed conductive sheet to take and discharge the conductive sheet when the stripper plate moves below the taking mechanism.

[0017] The technical scheme of the utility model has the following advantages:

[0018] 1. The utility model provides a kind of pressure riveting tool of conductive sheet, this kind of pressure riveting tool, it is elastically arranged by guide sleeve, in the process of pressure riveting, guide sleeve is prior to riveting column and contact with conductive sheet, forms an elastic pressure effect, then it is riveted by riveting column operation, this structure, in the process of pressure riveting, it can ensure that conductive sheet does not deform and bend, secondly reduce the indentation on conductive sheet after pressure riveting.

[0019] 2. The utility model provides a kind of pressure riveting tool of conductive sheet, the setting of guide surface forms guide effect, avoids the interference of riveting column and pressure riveting piece, leads to the damage of pressure riveting tool.

[0020] 3. The utility model provides a kind of pressure riveting tool of conductive sheet, positioning column is used for cooperating with pressure riveting piece, prevents in the process of running or falling off, pressure riveting piece is inclined, secondly, the setting of the space between positioning column and positioning cavity, so that in the process of pressure riveting, the thread inside pressure riveting piece is not damaged.

[0021] 4. The utility model provides a kind of pressure riveting tool of conductive sheet, in the process of pressure riveting, it can form a stripping effect to make the completed conductive sheet of pressure riveting can be stripped from cavity by the cooperation between stripper plate and supporting block, convenient for subsequent taking operation.

[0022] 5. The utility model provides a kind of riveting tool of conducting sheet, conducting sheet is cooperated with cavity, conducting sheet will exceed the top surface of stripping plate, for realizing the thickness control of conducting sheet, guaranteeing the requirement of flatness, simultaneously, it can also guarantee that guide sleeve can first contact conducting sheet.

[0023] 6. The utility model provides a kind of riveting tool of conducting sheet, horizontal alignment, that is, located on the same straight line, facilitate processing, reduce the adjustment of operator to coordinate, improve the convenience of operation.

[0024] 7. The utility model provides a kind of riveting tool of conducting sheet, the real-time monitoring of pressure is controlled by operator, improves riveting efficiency.

[0025] 8. The utility model provides a kind of riveting tool of conducting sheet, KK module and roller line rail form movement in different directions, so that riveting bearing can be moved to corresponding position according to actual demand, form the effect of accurate movement.

[0026] 9. The utility model provides a kind of riveting tool of conducting sheet, cleaning station is used to clean the debris generated in riveting process, improve neatness, facilitate subsequent riveting operation.

[0027] 10. The utility model provides a kind of riveting tool of conducting sheet, gripper carries out material taking, discharging operation, forms the effect of automated operation. DRAWINGS

[0028] In order to more clearly illustrate the specific embodiments of the utility model or the technical solutions in the prior art, the following will briefly introduce the drawings needed to be used in specific embodiments or prior art description, and obviously, the drawings in the following description are some embodiments of the utility model, and those skilled in the art can also obtain other drawings according to these drawings without creating labor.

[0029] Figure 1 The structural schematic diagram of the riveting tool of conducting sheet provided by the utility model is shown in the drawing;

[0030] Figure 2 The structural schematic diagram of the riveting tool of conducting sheet provided by the utility model is shown in the drawing;

[0031] Figure 3 The partial structural schematic diagram of the riveting tool of conducting sheet provided by the utility model is shown in the drawing;

[0032] Figure 4 The sectional view of Figure 3 ;

[0033] Figure 5 The sectional view of Figure 4A part of the middle part is enlarged;

[0034] Figure 6 A part of the middle part is enlarged; Figure 4 A part of the middle part is enlarged;

[0035] Figure 7 An exploded view of the material removal plate and the fixing plate is provided in the utility model;

[0036] Figure 8 A cooperation schematic view of the conductive sheet and the pressure riveting piece is provided in the utility model;

[0037] Figure 9 A structure schematic view of the pressure riveting mechanism is provided in the utility model;

[0038] Figure 10 A sectional view of the pressure riveting head is provided in the utility model.

[0039] Mark explanation:

[0040] 11, material removal plate; 12, conductive sheet; 13, pressure riveting piece; 14, pressure riveting head; 15, cover plate; 16, sheath; 17, guide sleeve; 18, rivet column; 19, first elastic piece; 20, fixing plate; 21, second elastic piece; 22, support block; 23, bushing assembly; 24, limiting column; 25, support column; 26, pressure riveting mechanism; 27, pressure riveting support; 28, KK module; 29, roller rail; 30, cleaning module; 31, clamping jaw; 111, cavity; 112, positioning column; 113, material removal column; 131, positioning cavity; 151, containing cavity; 171, through hole; 172, guide surface; 181, chamber; 261, pressure sensor; 262, inductor probe. Specific implementation

[0041] The technical scheme of the utility model will be described clearly and completely in combination with the drawings, obviously, the described embodiments are a part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by the person skilled in the art without creative labor belong to the protection scope of the utility model.

[0042] In the description of the utility model, it needs to be explained that the orientation or position relation indicated by the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer" and the like is the orientation or position relation based on the drawings shown, and is only for the convenience of describing the utility model and simplifying the description, and cannot be understood as indicating or implying that the indicated device or element must have a particular orientation, be constructed and operated in a particular orientation, therefore, cannot be understood as the limitation of the utility model. In addition, the terms "first", "second", "third" are only for the description purpose, and cannot be understood as indicating or implying relative importance.

[0043] In the description of the utility model, it is explained that, unless otherwise specified and limited, the terms "mounting", "connection" and "connection" should be understood broadly, for example, it can be fixed connection, or detachable connection, or integral connection; it can be mechanical connection, or electrical connection; it can be directly connected, or indirectly connected through intermediate medium, or the communication between two elements. For ordinary skilled in the art, the specific meaning of the above terms in the utility model can be understood according to the specific circumstances.

[0044] In addition, the technical features involved in the different embodiments of the utility model described below can be combined with each other as long as there is no conflict.

[0045] Example 1

[0046] The embodiment provides a press-in tool for conductive sheet, as shown in the accompanying drawings, comprising: Figures 1-10 As shown in the accompanying drawings, comprising:

[0047] The stripper plate 11 is provided with a cavity 111 for fixing the conductive sheet 12. The conductive sheet 12 can be fixed in the cavity 111 as a whole, or partially fixed in the cavity 111 and extended outside the stripper plate 11. In this embodiment, the size of the conductive sheet 12 can be adjusted according to actual needs. When the size of the conductive sheet 12 is too large, the conductive sheet 12 can be partially fixed, and the remaining part of the conductive sheet 12 is extended outside the stripper plate 11. The press-in part 13 is pre-installed on the conductive sheet 12. At this time, the press-in part 13 and the conductive sheet 12 are not fixed by press-in, but only pre-installed. The press-in part 13 and the conductive sheet 12 can be operated by a clamping arm. In this embodiment, the press-in part 13 can be a press-in nut, a press-in stud, or a press-in screw, etc. Here, only the press-in nut is described as an example.

[0048] The riveting head 14 includes a cover plate 15, a sheath 16, a guide sleeve 17, a riveting column 18, and a first elastic member 19. The cover plate 15 cooperates with the sheath 16 to form a containing cavity 151. The cover plate 15 is located above the sheath 16, and the sheath 16 is located below. The first elastic member 19 is accommodated in the containing cavity 151. One end of the guide sleeve 17 extends into the containing cavity 151 and abuts against the first elastic member 19. The other end of the guide sleeve 17 extends to the outside. In this embodiment, one end of the first elastic member 19 abuts against the cover plate 15, and the other end of the first elastic member 19 abuts against the upper end of the guide sleeve 17. The first elastic member 19 gives the guide sleeve 17 a certain elastic force, so that the guide sleeve 17 has an elastic movement effect. The guide sleeve 17 is provided with a through hole 171 penetrating through both ends. The through hole 171 penetrates through the upper and lower ends of the guide sleeve 17. The riveting column 18 penetrates through the through hole 171. In this embodiment, one end of the riveting column 18 cooperates with an external driving source, and the other end of the riveting column 18 penetrates through the through hole 171 and extends downward, so that the riveting column 18 slides relative to the guide sleeve 17. In this embodiment, when the riveting nut is taken as an example, the riveting column 18 is not solid, and the lower end of the riveting column 18 is provided with a cavity 181. The cavity 181 opens downward, so that the lower end bottom surface of the riveting column 18 forms a circular ring structure. In the riveting process, the riveting part 13 extends into the cavity 181, so that the lower end bottom surface of the riveting column 18 is attached to the riveting position, and a riveting operation is formed. Conversely, when the riveting part 13 has other structures, the riveting column 18 can also be solid, and the lower end bottom surface of the riveting column 18 is a circular or square structure or a solid surface structure. In addition, it should be noted that the guide sleeve 17 is further provided with a limiting structure inside. The limiting structure limits the movement of the riveting column 18. At this time, the riveting column 18 cannot directly fall out from the lower side of the through hole 171, and the riveting column 18 has a certain stroke.

[0049] In the initial state, the bottom surface of the guide sleeve 17 is lower than the bottom surface of the riveting column 18, that is, the riveting column 18 does not penetrate out of the through hole 171. The whole riveting head 14 moves towards the conductive sheet 12 until the guide sleeve 17 abuts against the conductive sheet 12. The guide sleeve 17 moves towards the side of the first elastic member 19, and the riveting column 18 is riveted at the cooperation position of the conductive sheet 12 and the riveting part 13. This riveting tool is elastically arranged through the guide sleeve 17. In the riveting process, the guide sleeve 17 contacts the conductive sheet 12 before the riveting column 18, so that an elastic pressing effect is formed. Then, the riveting operation is performed through the riveting column 18. This structure can ensure that the conductive sheet 12 will not be deformed and bent in the riveting process, and can also reduce the indentation on the conductive sheet 12 after riveting.

[0050] Specifically, as shown in the accompanying drawings Figure 10As shown, the bottom surface of the guide sleeve 17 is provided with a guide surface 172. The guide surface 172 forms a guide effect, avoiding interference between the rivet column 18 and the pressure riveting part 13, which causes damage to the pressure riveting tool. Here, the guide surface 172 can be a bevel or an arc surface. The guide surface 172 is connected with the through hole 171. In addition, other guide structures can also be used to form a guide, for example, a related guide is provided on the upper end of the pressure riveting part 13.

[0051] Specifically, the number of the first elastic members 19 can be adjusted according to actual needs. Here, the first elastic member 19 is specifically a spring.

[0052] Specifically, as shown in the accompanying drawings, Figures 3-7 As shown, the positioning column 112 is fixed in the cavity 111, and the pressure riveting part 13 is provided with a positioning cavity 131. The positioning column 112 extends to the positioning cavity 131, and a clearance is provided between the side wall of the positioning column 112 and the inner wall of the positioning cavity 131. The positioning column 112 is used to cooperate with the pressure riveting part 13 to prevent the pressure riveting part 13 from tilting during operation or falling off. In addition, the clearance between the positioning column 112 and the positioning cavity 131 is provided so that the threads inside the pressure riveting part 13 will not be damaged during the pressure riveting process.

[0053] Specifically, as shown in the accompanying drawings, Figures 3-7 As shown, the fixed plate 20 and the second elastic member 21 are further included. The second elastic member 21 is located between the fixed plate 20 and the stripping plate 11, so that a gap is formed between the fixed plate 20 and the stripping plate 11. The stripping plate 11 is further provided with the support block 22 and the positioning column 112. The top surface of the support block 22 is part of the cavity 111, and the support block 22 moves relative to the stripping plate 11. The stripping plate 11 is provided with a stripping column 113. The rivet column 18 cooperates with the stripping column 113 to drive the stripping plate 11 to move towards the fixed plate 20. During the pressure riveting process, the conductive sheet 12 will expand, which makes it difficult to take out the material. Through the cooperation between the stripping plate 11 and the support block 22, a stripping effect can be formed, so that the conductive sheet 12 that has completed pressure riveting can be stripped out of the cavity 111, which is convenient for subsequent material taking operation. After the pressure riveting is completed, the stripping column 113 is moved below the rivet column 18 by moving the pressure riveting head 14 or moving the stripping plate 11. Then, the rivet column 18 abuts against the stripping column 113 to drive the stripping plate 11 to move towards the fixed plate 20, so that the conductive sheet 12 in the cavity 111 moves upward relatively to form a stripping effect.

[0054] Specifically, the height of the gap minus the thickness of the conductive sheet 12 is greater than 1 mm. Such parameter limitation makes the conductive sheet 12 completely stripped, and the rivet column 18 is not easy to break during debugging.

[0055] Specifically, in this embodiment, the maximum deformation amount of the cavity 111 and the conductive sheet 12 is matched, which ensures that the stripping will not be affected due to the expansion.

[0056] Specifically, the top surface of the conductive sheet 12 exceeds the top surface of the stripping plate 11. After the conductive sheet 12 cooperates with the cavity 111, the conductive sheet 12 will exceed the top surface of the stripping plate 11, which is used to realize the thickness control of the conductive sheet 12, ensure the flatness requirement, and also ensure that the guide sleeve 17 can first contact the conductive sheet 12. In this embodiment, the top surface of the conductive sheet 12 exceeds the top surface of the stripping plate 11 by 0.1mm.

[0057] Specifically, the number of cavities 111 is several, and the riveting pieces 13 are horizontally aligned. The adjacent two cavities 111 are designed to be center-symmetric, so that the riveting pieces 13 are arranged at equal intervals horizontally, specifically, the riveting positions are located on the same horizontal line. The horizontal alignment, that is, located on the same straight line, facilitates processing, reduces the adjustment of the coordinates by the operator, and improves the convenience of operation.

[0058] Specifically, as shown in the accompanying drawings, Figures 3-7 It also includes a bushing assembly 23, which realizes the up-down movement of the stripping plate 11 and plays a certain guiding role.

[0059] Specifically, as shown in the accompanying drawings, Figures 3-7 It also includes a limiting column 24, which limits the gap between the stripping plate 11 and the fixed plate 20. The setting of the limiting column 24 makes the stripping plate 11 unable to separate from the fixed plate 20, so that the stripping plate 11 can only rise to a certain height.

[0060] Specifically, it also includes a supporting column 25, which is located on the fixed plate 20 and below the supporting block 22. A let-in structure is provided between the supporting column 25 and the supporting block 22. Because the stripping plate 11 is a force position during the stripping process, the stripping plate 11 will tilt, which will cause the stripping plate 11 to be unable to restore to its original state. Moreover, there is a probability that the stripping plate 11 will drive the supporting block 22 to float up. The setting of the let-in structure can avoid the occurrence of such accidents. The height of the let-in structure here cannot exceed half the thickness of the conductive sheet 12.

[0061] Specifically, it also includes a riveting mechanism 26, and the riveting head 14 is a part of the riveting mechanism 26. The riveting mechanism 26 also includes a pressure sensor 261 and a sensor probe 262, which monitors the pressure in real time. Real-time monitoring of the pressure facilitates the control of the operator and improves the riveting efficiency.

[0062] Specifically, as shown in the accompanying drawings, Figures 1-2As shown, the device further comprises a press-in bearing 27, a KK module 28, and a roller track 29. The stripper plate 11 is connected to the press-in bearing 27, that is, when the press-in bearing 27 moves, the stripper plate 11 also moves. The KK module 28 drives the press-in bearing 27 to move in a first direction, which can be the X-axis direction. The roller track 29 drives the press-in bearing 27 to move in a second direction, which can be the Y-axis direction. At this time, the first direction and the second direction are perpendicular to each other. The KK module 28 and the roller track 29 form movements in different directions, so that the press-in bearing 27 can move to the corresponding position according to the actual needs, and the effect of precise movement is formed.

[0063] Specifically, as shown in the accompanying drawings, Figures 1-2 As shown, the device further comprises a cleaning station, which is provided with a cleaning module 30. When the stripper plate 11 moves to the cleaning station, the stripper plate 11 moves through the KK module 28 and the roller track 29. The cleaning module 30 is sleeved on the stripper plate 11, and the cleaning module 30 cleans the stripper plate 11. The cleaning station is used to clean the debris generated in the press-in process, so as to improve the cleanliness and facilitate the subsequent press-in operation. In this embodiment, the cleaning module 30 can also move, and through blowing and suction, the debris on the press-in bearing 27 moves, and finally the effect of suction cleaning is realized. The cleaning station is also provided with a storage bag for collecting debris.

[0064] Specifically, as shown in the accompanying drawings, Figures 1-2 As shown, the device further comprises a material taking mechanism, which comprises a clamping jaw 31. When the stripper plate 11 moves below the material taking mechanism, the clamping jaw 31 clamps the completed conductive sheet 12 to take and discharge materials. The clamping jaw 31 takes and discharges materials, which forms the effect of automatic operation. The clamping jaw 31 can move relative to the press-in bearing 27, and different mechanisms can be used to realize the movement effect of the clamping jaw 31 in different directions.

[0065] Specifically, the device further comprises a control mechanism, which controls the operation of each mechanism. The control mechanism can be a PLC control or other control mode.

[0066] Obviously, the above embodiments are only examples for clearly illustrating, and do not limit the embodiments. For those skilled in the art, on the basis of the above description, other different forms of changes or variations can also be made. Here, it is not necessary and impossible to enumerate all the embodiments. The obvious changes or variations derived therefrom are still within the protection scope of the present application.

Claims

1. A press-riveting jig for an electrically conductive sheet, characterized by, The utility model relates to a press-in mechanism and a press-in head thereof, and belongs to the technical field of press-in mechanism. The utility model discloses a press-in mechanism and a press-in head thereof, and belongs to the technical field of press-in mechanism. The utility model discloses a press-in mechanism and a press-in head thereof, and belongs to the technical field of press-in mechanism. The utility model discloses a press-in mechanism and a press-in head thereof, and belongs to the technical field of press-in mechanism.

2. The press-riveting tool for an electrically conductive sheet according to claim 1, characterized by, The utility model discloses a press-in mechanism and a press-in head thereof, and belongs to the technical field of press-in mechanism.

3. The press-riveting tool for an electrically conductive sheet according to claim 1, wherein The utility model discloses a press-in mechanism and a press-in head thereof, and belongs to the technical field of press-in mechanism.

4. The press-riveting tool for an electrically conductive sheet according to claim 1, wherein The utility model discloses a press-in mechanism and a press-in head thereof, and belongs to the technical field of press-in mechanism.

5. The press-riveting tool for an electrically conductive sheet according to claim 1 or 4, characterized by, The utility model discloses a press-in mechanism and a press-in head thereof, and belongs to the technical field of press-in mechanism.

6. The press-riveting tool for an electrically conductive sheet according to claim 1, wherein The utility model discloses a press-in mechanism and a press-in head thereof, and belongs to the technical field of press-in mechanism.

7. The press-riveting tool for an electrically conductive sheet according to claim 1, wherein The utility model discloses a press-in mechanism and a press-in head thereof, and belongs to the technical field of press-in mechanism. The utility model discloses a press-in mechanism and a press-in head thereof, and belongs to the technical field of press-in mechanism. The utility model discloses a press-in mechanism and a press-in head thereof, and belongs to the technical field of press-in mechanism. The utility model discloses a press-in mechanism and a press-in head thereof, and belongs to the technical field of press-in mechanism. The utility model discloses a press-in mechanism and a press-in head thereof, and belongs to the technical field of press-in mechanism. The utility model discloses a press-in mechanism and a press-in head thereof, and belongs to the technical field of press-in mechanism. 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The utility model discloses a press-in mechanism and a press-in head thereof, and belongs to the technical field of press-in mechanism. The utility model discloses a press-in mechanism and a press-in head thereof, and belongs to the technical field of press-in mechanism. The utility model discloses a press-in mechanism and a press-in head thereof, and belongs to the technical field of press-in mechanism. The utility model discloses a press-in mechanism and a press-in head thereof, and belongs to the technical field of press-in mechanism. The utility model discloses a press-in mechanism and a press-in head thereof, and belongs to the technical field of press-in mechanism. The utility model discloses a press-in mechanism and a press-in head thereof, and belongs to the technical field of press-in mechanism. The utility model discloses a press-in mechanism and a press-in head thereof, and belongs to the technical field of press-in mechanism. The utility model discloses a press-in mechanism and a press-in head thereof, and belongs to the technical field of press-in mechanism. The utility model discloses a press-in mechanism and a press-in head thereof, and belongs to the technical field of press-in mechanism. The utility model discloses a press-in mechanism and a press-in head thereof, and belongs to the technical field of press-in mechanism. The utility model discloses a press-in mechanism and a press-in head thereof, and belongs to the technical field of press-in mechanism. The utility model discloses a press-in mechanism and a press-in head thereof, and belongs to the technical field of press-in mechanism. The utility model discloses a press-in mechanism and a press-in head thereof, and belongs to the technical field of press-in mechanism. The utility model discloses a press-in mechanism and a press-in head thereof, and belongs to the technical field of press-in mechanism. The utility model discloses a press-in mechanism and a press-in head thereof, and belongs to the technical field of press-in mechanism. The utility model discloses a press-in mechanism and a press-in head thereof, and belongs to the technical field of press-in mechanism. The utility model discloses a press-in mechanism and a press-in head thereof, and belongs to the technical field of press-in mechanism. The utility model discloses a press-in mechanism and a press-in head thereof, and belongs to the technical field of press-in mechanism. The utility model discloses a press-in mechanism and a press-in head thereof, and belongs to the technical field of press-in mechanism. The utility model discloses a press-in mechanism and a press-in head thereof, and belongs to the technical field of press-in mechanism. The utility model discloses a press-in mechanism and a press-in head thereof, and belongs to the technical field of press-in mechanism. The utility model discloses a press-in mechanism and a press-in head thereof, and belongs to the technical field of press-in mechanism. The utility model discloses a press-in mechanism and a press-in head thereof, and belongs to the technical field of press-in mechanism. The utility model discloses a press-in mechanism and a press-in head thereof, and belongs to the technical field of press-in mechanism. The utility model discloses a press-in mechanism and a press-in head thereof, and belongs to the technical field of press-in mechanism. The utility model discloses a press-in mechanism and a press-in head thereof, and belongs to the technical field of 8. The press-riveting tool for an electrically conductive sheet according to claim 1, wherein Further comprising a press-in chamfer (27), a KK module (28) and a roller track (29), the stripper plate (11) is linked with the press-in chamfer (27), the KK module (28) drives the press-in chamfer (27) to move along a first direction; the roller track (29) drives the press-in chamfer (27) to move along a second direction.

9. The press-riveting tool for an electrically conductive sheet according to claim 1, wherein Further comprising a cleaning station, the cleaning station is provided with a cleaning module (30), when the stripper plate (11) moves to the cleaning station, the cleaning module (30) is sleeved on the stripper plate (11), and the cleaning module (30) cleans the stripper plate (11).

10. The press-riveting tool for an electrically conductive sheet according to claim 1, wherein Further comprising a taking mechanism, the taking mechanism comprises a clamping jaw (31), when the stripper plate (11) moves to below the taking mechanism, the clamping jaw (31) clamps the completed conductive sheet (12) to take and discharge.