Multi-station linkage forging device for copper strip machining

By designing a multi-station linkage forging device, multi-directional forging of copper strip is achieved using a drive motor and a thread drive system, which solves the problems of low consistency and low efficiency in copper strip forging in the existing technology, and improves processing quality and production efficiency.

CN224026386UActive Publication Date: 2026-03-24TAIXING CITY QIXING ADVANCED SEMICONDUCTOR MATERIALS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-08
Publication Date
2026-03-24

AI Technical Summary

Technical Problem

The current copper strip forging process relies on the skill level of workers, resulting in poor consistency, low product quality, and low production efficiency.

Method used

A multi-station linkage forging device was designed. The forging head is moved and adjusted in multiple directions on the copper strip by a drive motor and a thread drive system. The precise movement of the forging head and the forging operation are achieved by combining a return spring and a gear mechanism.

Benefits of technology

It improves the quality consistency and production efficiency of copper strip forging, simplifies the operation process, and facilitates the replacement and position adjustment of the forging head.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a multi-station linkage forging device for copper strip machining, and relates to the technical field of copper strip machining. The horizontal end of the supporting frame is arranged on the upper side of the forging and pressing head, and an open groove is formed in the horizontal end of the supporting frame. The moving block is slidably arranged in the open groove in a penetrating mode, a connecting rod is arranged in the moving block in a penetrating mode, and the lower end of the connecting rod is connected with the forging head; the forging assembly is arranged on the upper side of the moving block; the driving motor is fixedly arranged on the front side of the horizontal end of the supporting frame through a motor support, and an output shaft of the driving motor penetrates through the horizontal end of the supporting frame and then is arranged in the open groove. The screw rod is arranged in the open groove, and the front end of the screw rod is connected with the output end of the driving motor; the screw rod is sleeved with a screw pipe in a screwed connection mode through threads, and the rear end of the screw pipe is connected with the front side of the movable block. And the forging and pressing head is driven to move and adjust in multiple directions, so that the forging and pressing head performs forging operation on the copper strip, and the forging quality of the copper strip is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to copper strip processing technical field, concretely relates to a copper strip processing's multistation linkage forging device. BACKGROUND

[0002] Forging belongs to one kind of metal plastic processing, and the mechanical properties of metal are improved by hammering or pressure to make metal deformation, and the conductivity and ductility of copper strip can be improved after forging, which is used in electronic, electric power or decoration industry, however, the quality of existing forging processing depends on the proficiency of workers, and the consistency of the same kind of parts processed is poor, which leads to low product quality and production efficiency. INVENTION CONTENTS

[0003] The utility model discloses a copper strip processing's multistation linkage forging device, which is simple in structure, reasonable in design and convenient to use, and can improve the forging quality of copper strip by driving the forging head to move and adjust in multiple directions and making the forging head perform forging operation on the copper strip.

[0004] To achieve the above object, the utility model adopts the following technical scheme: it contains pedestal, workpiece table, the upside of pedestal is provided with workpiece table, and the upside of workpiece table is provided with forging head.

[0005] It also contains:

[0006] Support frame, the support frame is provided with " L " shape structure, and the vertical end of support frame is in contact with the pedestal, and is provided with the downside of workpiece table, the horizontal end of support frame is provided with the upside of forging head, and the horizontal end of support frame is provided with slot.

[0007] Moving block, the moving block is slidably arranged in the slot, and the connecting rod is arranged in the moving block, and the lower end of the connecting rod is connected with the forging head.

[0008] Forging assembly, the forging assembly is arranged on the upside of moving block.

[0009] Driving motor, the driving motor is fixedly arranged on the front side of the horizontal end of support frame through motor support, and the output shaft of driving motor is arranged in the slot after passing through the horizontal end of support frame.

[0010] Screw rod, the screw rod is arranged in the slot, and the front end of screw rod is connected with the output end of driving motor, and the screw pipe is threadedly connected with the screw rod, and the rear end of screw pipe is connected with the front side of moving block.

[0011] Through the technical scheme, the copper strip is placed on the workpiece table, the driving motor is started, the screw rod is rotated, the screw pipe is driven in a threaded manner, the moving block is moved, the forging head is moved, the forging assembly drives the forging head to forge the copper strip.

[0012] As a further improvement of the utility model, the base is internally provided with a driving groove, the driving groove is arranged at the rear side of the workpiece table, a moving motor is fixedly arranged on the outer wall of the base at one side of the driving groove through a motor support, the output shaft of the moving motor passes through the base, is arranged in the driving groove, and is provided with a screw rod, a support block is sleeved on the screw rod in a threaded manner, and the support block is slidingly arranged in the driving groove, and the support block is fixedly arranged at the bottom of the vertical end of the support frame.

[0013] Through the technical scheme, the moving motor is started, the screw rod is rotated, the support block is driven, and the forging head is moved to change the forging position.

[0014] As a further improvement of the utility model, the forging assembly comprises:

[0015] The support block is fixedly arranged on the upper side of the moving block, and the rear side wall of the support block and the rear side wall of the moving block are arranged on the same vertical wall.

[0016] The connecting frame is arranged in a reverse U-shaped structure, the connecting frame is fixedly arranged on the front side of the support block, and the bottom ends of the left and right sides of the connecting frame are fixedly arranged on the moving block.

[0017] The driving tooth block is arranged in the connecting frame, the rear side of the driving tooth block is slidingly arranged on the front side of the support block through a sliding pair, and the driving tooth block is fixedly arranged on the upper end of the connecting rod.

[0018] The rotating motor is fixedly arranged on the outer wall of one side of the connecting frame through a motor support, and the output shaft of the rotating motor passes through the side wall of the connecting frame, is provided with a rotating gear, and the rotating gear is arranged on the front side of the driving gear in a meshing mode, and the rotating gear is an umbrella-shaped gear.

[0019] The reset spring is fixedly arranged on the upper side of the driving tooth block, and the upper end of the reset spring is connected to the inner top surface of the connecting frame.

[0020] Through the technical scheme, the rotating motor drives the rotating gear to rotate, the driving tooth block is moved upward in a meshing mode, and the reset spring is compressed upward; after the rotating gear rotates away from the driving tooth block, the reset spring is reset to move the forging head downward to forge the copper strip.

[0021] As a further improvement of the utility model, the inside of the driving tooth block is provided with a guide groove, a guide block is arranged in the guide groove, and the left and right sides of the guide block are connected with the inner walls of the left and right sides of the connecting frame.

[0022] Through the technical scheme, the movement of the driving tooth block is guided and limited.

[0023] As a further improvement of the utility model, the bottom outside of the vertical end of the left and right sides of the connecting frame is fixedly provided with a guide card, the guide card is provided with an L-shaped structure, the guide card is slidably arranged on the outside of the horizontal end of the supporting frame.

[0024] Through the technical scheme, the movement of the moving block is guided.

[0025] As a further improvement of the utility model, the bottom end of the connecting rod is fixedly provided with a threaded sleeve, the upper side of the forging head is fixedly provided with a support column, the upper end of the support column is inserted into the threaded sleeve, the upper end of the support column is sleeved and fixed with an annular table, the annular table is arranged on the lower side of the threaded sleeve, a movable sleeve is movably arranged on the support column, the inner bottom surface of the movable sleeve is in contact with the lower side of the annular table, and the inner ring wall of the movable sleeve is movably arranged on the threaded sleeve through screwing.

[0026] Through the technical scheme, the forging head and the connecting rod are connected and installed.

[0027] As a further improvement of the utility model, the upper end of the support column is provided with a positioning groove, the inner top surface of the threaded sleeve is fixedly provided with a positioning table, and the positioning table is inserted into the positioning groove; sealing pads are arranged around the positioning table and inserted into the positioning groove.

[0028] Through the technical scheme, the connection between the support column and the threaded sleeve is reinforced.

[0029] The working principle of the utility model is as follows: the copper belt is placed on the workpiece table, the driving motor is started, the screw rod is rotated, the screw pipe is threadedly driven, and the moving block is moved; the moving motor is started, the screw rod is rotated, the support block is driven, and the forging head is moved; after the forging head is moved to the required position, the rotating motor is started, the rotating motor drives the rotating gear to rotate, the meshing drives the driving tooth block to move upward, and the reset spring is compressed upward; after the rotating gear rotates away from the driving tooth block, the reset spring is reset to drive the forging head to move downward and forge the copper belt.

[0030] Compared with the prior art, the utility model has the advantages that:

[0031] 1. The copper belt is placed on the workpiece table, and the forging head is moved to forge the copper belt in multiple stations. 2. The copper belt is not moved, and the forging head is moved to forge the copper belt in multiple stations.

[0032] 2、Through the thread drive between the screw and the screw pipe, the moving block is driven to move, the position of the forging head in the front and back direction is changed, the screw rod is driven to the support block, the position of the forging head in the left and right direction is changed;

[0033] 3、The reset spring, the driving tooth block and the rotating gear are matched to perform the forging operation on the forging head;

[0034] 4, the forging head and the connecting rod are connected through the cooperation of the thread rotation, so that the forging head is replaced in the later period. BRIEF DESCRIPTION OF DRAWINGS

[0035] Figure 1 is the structural schematic diagram of the utility model.

[0036] Figure 2 is Figure 1 the east-south isosceles side structural schematic diagram.

[0037] Figure 3 is the internal structure schematic diagram of the utility model.

[0038] Figure 4 is Figure 3 the A part enlarged view of

[0039] Figure 5 is Figure 3 the B part enlarged view of

[0040] Figure 6 is the connecting structure schematic diagram between the connecting rod, the threaded sleeve, the movable sleeve and the forging head in the utility model.

[0041] BRIEF DESCRIPTION OF DRAWINGS:

[0042] Base 1, drive groove 1-1, workpiece table 2, forging head 3, support frame 4, slot 4-1, moving block 5, connecting rod 6, forging assembly 7, support block 7-1, connecting frame 7-2, driving tooth block 7-3, rotating motor 7-4, rotating gear 7-5, reset spring 7-6, guide groove 7-7, guide block 7-8, driving motor 8, screw rod 9, screw pipe 10, moving motor 11, screw rod 12, guide card 14, threaded sleeve 15, support column 16, positioning groove 16-1, annular table 17, movable sleeve 18, positioning table 19, sealing gasket 20. DETAILED DESCRIPTION

[0043] The technical scheme in the utility model will be described clearly and completely in combination with the drawings, and the preferred embodiments in the description are only as examples, and all other embodiments obtained by the person skilled in the art without creative labor belong to the protection scope of the utility model.

[0044] Embodiment 1:

[0045] Please refer to Figures 1-6 , the embodiment comprises a base 1, a workpiece table 2, the upper side of the base 1 is provided with the workpiece table 2, and the upper side of the workpiece table 2 is provided with a forging head 3;

[0046] Further comprising:

[0047] A support frame 4, the support frame 4 is provided in an "L" shape structure, and the vertical end of the support frame 4 is in contact with the base 1 and is provided on the lower side of the workpiece table 2; the horizontal end of the support frame 4 is provided on the upper side of the forging head 3, and a slot 4-1 is formed in the horizontal end of the support frame 4; a driving groove 1-1 is formed in the base 1, and the driving groove 1-1 is provided on the rear side of the workpiece table 2; a moving motor 11 is fixedly provided on the outer wall of the base 1 on one side of the driving groove 1-1 through a motor support, the output shaft of the moving motor 11 passes through the base 1, is provided in the driving groove 1-1, and is provided with a screw rod 12; a support block 13 is sleeved on the screw rod 12 through threads, and the support block 13 is slidingly provided in the driving groove 1-1 and is fixedly provided at the bottom of the vertical end of the support frame 4;

[0048] A moving block 5, the moving block 5 is slidingly provided in the slot 4-1, and a connecting rod 6 is provided in the moving block 5; the lower end of the connecting rod 6 is connected with the forging head 3;

[0049] A forging assembly 7, the forging assembly 7 is provided on the upper side of the moving block 5;

[0050] A driving motor 8, the driving motor 8 is fixedly provided on the front side of the horizontal end of the support frame 4 through a motor support; the specific type of the driving motor 8 is directly purchased, installed and used according to actual use requirements; and the output shaft of the driving motor 8 passes through the horizontal end of the support frame 4 and is provided in the slot 4-1;

[0051] A screw rod 9, the screw rod 9 is provided in the slot 4-1, and the front end of the screw rod 9 is connected with the output end of the driving motor 8; a screw pipe 10 is sleeved on the screw rod 9 through threads, and the rear end of the screw pipe 10 is connected with the front side of the moving block 5;

[0052] Through the above technical scheme design, the copper strip is placed on the workpiece table 2, the driving motor 8 is started, the screw rod 9 is rotated, the screw pipe 10 is threadedly driven, the moving block 5 is moved, the forging head 3 is driven, the forging assembly 7 is driven, the moving motor 11 is started, the screw rod 12 is rotated, the support block 13 is driven, and the forging head 3 is moved to change the forging position.

[0053] Embodiment 2:

[0054] Please refer to Figures 1-6Further improvements are made on the basis of embodiment 1, the forging assembly 7 comprises:

[0055] A support block 7-1 is fixedly arranged on the upper side of the moving block 5, and the rear side wall of the support block 7-1 is arranged on the same vertical wall as the rear side wall of the moving block 5;

[0056] A connecting frame 7-2 is arranged in an inverted "U" shape, and is fixedly arranged on the front side of the support block 7-1. The bottom ends of the left and right sides of the connecting frame 7-2 are fixedly arranged on the moving block 5. The outer sides of the bottom of the vertical ends of the left and right sides of the connecting frame 7-2 are fixedly arranged with guide cards 14, and the guide cards 14 are arranged in an "L" shape. The guide cards 14 are slidingly arranged on the outer side of the horizontal end of the support frame 4;

[0057] A drive tooth block 7-3 is arranged in the connecting frame 7-2. The rear side of the drive tooth block 7-3 is slidingly arranged on the front side of the support block 7-1 through a sliding pair. The drive tooth block 7-3 is fixedly arranged on the upper end of the connecting rod 6. The inside of the drive tooth block 7-3 is provided with a guide groove 7-7. A guide block 7-8 is arranged in the guide groove 7-7. The left and right sides of the guide block 7-8 are respectively connected and arranged with the inner walls of the left and right sides of the connecting frame 7-2;

[0058] A rotating motor 7-4 is fixedly arranged on one side of the outer wall of the connecting frame 7-2 through a motor support. The specific model of the rotating motor 7-4 is directly purchased and used according to actual use requirements. The output shaft of the rotating motor 7-4 is arranged with a rotating gear 7-5 after penetrating through one side wall of the connecting frame 7-2. The rotating gear 7-5 is arranged on the front side of the drive gear and is an umbrella-shaped gear;

[0059] A reset spring 7-6 is fixedly arranged on the upper side of the drive tooth block 7-3. The upper end of the reset spring 7-6 is connected and arranged with the inner top surface of the connecting frame 7-2;

[0060] Through the above technical scheme design, the rotating motor 7-4 drives the rotating gear 7-5 to rotate, which in turn drives the drive tooth block 7-3 to move upward, and the reset spring 7-6 is compressed upward. After the rotating gear 7-5 rotates away from the drive tooth block 7-3, the reset spring 7-6 resets to drive the forging head 3 to move downward to forge the copper strip.

[0061] Embodiment 3:

[0062] Please refer to Figures 1-6Further improved on the basis of embodiment 1, the bottom end of the connecting rod 6 is fixedly provided with a threaded sleeve 15, the upper side of the forging head 3 is fixedly provided with a support 16, and the upper end of the support 16 is inserted into the threaded sleeve 15, the upper end of the support 16 is provided with a positioning groove 16-1, and the inner top surface of the threaded sleeve 15 is fixedly provided with a positioning table 19, and the positioning table 19 is inserted into the positioning groove 16-1; The four sides of the positioning table 19 are provided with sealing pads 20, and the sealing pads 20 are inserted into the positioning groove 16-1; The upper end of the support 16 is sleeved and fixed with an annular table 17, and the annular table 17 is in contact with the lower side of the threaded sleeve 15; The movable sleeve 18 is arranged on the support 16, and the inner bottom surface of the movable sleeve 18 is in contact with the lower side of the annular table 17; The inner ring wall of the movable sleeve 18 is sleeved and fixed on the threaded sleeve 15 through screw thread connection;

[0063] Through the technical scheme, the forging head 3 and the connecting rod 6 are connected and installed.

[0064] When the utility model is used, the copper strip is placed on the workpiece table 2, the drive motor 8 is started, the screw rod 9 is rotated, the screw pipe 10 is driven in screw thread, and the moving block 5 is moved; The moving motor 11 is started, the screw rod 12 is rotated, the support block 13 is driven, and the forging head 3 is moved; After the forging head 3 is moved to the required position, the rotating motor 7-4 is started, the rotating motor 7-4 drives the rotating gear 7-5 to rotate, engages the driving tooth block 7-3 to move upwards, and the reset spring 7-6 is compressed upwards; After the rotating gear 7-5 rotates away from the driving tooth block 7-3, the reset spring 7-6 resets to drive the forging head 3 to move downwards to forge the copper strip.

[0065] Compared with the prior art, the utility model has the advantages that:

[0066] 1. The copper strip is placed on the workpiece table 2, and the forging head 3 is moved to forge the copper strip in multiple stations;

[0067] 2. The screw rod 9 and the screw pipe 10 are driven in screw thread to move the moving block 5, change the position of the forging head 3 in the front and back directions, and the screw rod 12 drives the support block 13 in screw thread to change the position of the forging head 3 in the left and right directions;

[0068] 3. The reset spring 7-6, the driving tooth block 7-3 and the rotating gear 7-5 are matched to operate the forging head 3;

[0069] 4. The forging head 3 and the connecting rod 6 are connected through screw thread connection for replacement of the forging head 3 in the later period.

[0070] For those skilled in the art, the technical solutions recorded in the foregoing embodiments can be modified, and equivalent replacement of part of the technical features, any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the present application should be included in the protection scope of the present application.

Claims

1. A multi-station linkage forging device for copper strip processing, comprising a base (1), a workpiece table (2) arranged on the upper side of the base (1), and a forging head (3) arranged on the upper side of the workpiece table (2). characterized in that It further comprises: a support frame (4) arranged in an "L" shape, with the vertical end of the support frame (4) being arranged in contact with the base (1) and on the lower side of the workpiece table (2); the horizontal end of the support frame (4) being arranged on the upper side of the forging head (3), with a slot (4-1) being formed in the horizontal end of the support frame (4); a moving block (5) slidingly arranged in the slot (4-1), with a connecting rod (6) being arranged in the moving block (5), and the lower end of the connecting rod (6) being connected with the forging head (3); a forging assembly (7) arranged on the upper side of the moving block (5); a drive motor (8) fixedly arranged on the front side of the horizontal end of the support frame (4) through a motor support, with the output shaft of the drive motor (8) being arranged in the slot (4-1) after passing through the horizontal end of the support frame (4); a screw rod (9) arranged in the slot (4-1), with the front end of the screw rod (9) being connected with the output end of the drive motor (8); a screw pipe (10) being threadedly connected with the screw rod (9), with the rear end of the screw pipe (10) being connected with the front side of the moving block (5).

2. The multi-station linkage forging and stamping device for copper strip processing of claim 1, wherein: A drive slot (1-1) is formed in the base (1), with the drive slot (1-1) being arranged on the rear side of the workpiece table (2); a moving motor (11) is fixedly arranged on the outer wall of the base (1) on one side of the drive slot (1-1) through a motor support, with the output shaft of the moving motor (11) being arranged in the drive slot (1-1) after passing through the base (1), and a lead screw (12) being arranged, with a support block (13) being threadedly connected with the lead screw (12), and the support block (13) being slidingly arranged in the drive slot (1-1), with the support block (13) being fixedly arranged at the bottom of the vertical end of the support frame (4).

3. The multi-station linkage forging and stamping device for copper strip processing of claim 1, wherein: The forging assembly (7) comprises: a support block (7-1) fixedly arranged on the upper side of the moving block (5), with the rear side wall of the support block (7-1) being arranged on the same vertical wall as the rear side wall of the moving block (5); a connecting frame (7-2) arranged in an inverted "U" shape, with the connecting frame (7-2) being fixedly arranged on the front side of the support block (7-1), and the bottom ends of the left and right sides of the connecting frame (7-2) being fixedly arranged on the moving block (5); a drive tooth block (7-3) arranged in the connecting frame (7-2), with the rear side of the drive tooth block (7-3) being slidingly arranged on the front side of the support block (7-1) through a sliding pair; and the drive tooth block (7-3) being fixedly arranged on the upper end of the connecting rod (6). A rotating motor (7-4) is fixedly arranged on one side of the outer wall of the connecting frame (7-2) through a motor support, and the output shaft of the rotating motor (7-4) is provided with a rotating gear (7-5) after penetrating through one side wall of the connecting frame (7-2), the rotating gear (7-5) is arranged on the front side of the driving gear, and the rotating gear (7-5) is an umbrella-shaped gear; A reset spring (7-6) is fixedly arranged on the upper side of the driving tooth block (7-3), and the upper end of the reset spring (7-6) is connected and arranged with the inner top surface of the connecting frame (7-2).

4. The multi-station linkage swaging device for copper strip processing of claim 3, wherein: The inside of the driving tooth block (7-3) is provided with a guide groove (7-7), the guide groove (7-7) is provided with a guide block (7-8) penetrating through the inside, and the left and right sides of the guide block (7-8) are respectively connected and arranged with the inner walls of the left and right sides of the connecting frame (7-2).

5. The multi-station linked forging and stamping device for processing copper strips according to claim 3, characterized in that: The bottom outer side of the vertical end of the left and right sides of the connecting frame (7-2) is fixedly provided with a guide card (14), the guide card (14) is provided in an "L" shape structure, and the guide card (14) is slidingly arranged on the outer side of the horizontal end of the support frame (4).

6. The multi-station linked forging and stamping device for processing copper strips according to claim 1, characterized in that: The bottom end of the connecting rod (6) is fixedly provided with a threaded sleeve (15), the upper side of the forging head (3) is fixedly provided with a support column (16), the upper end of the support column (16) is inserted into the threaded sleeve (15), the upper end of the support column (16) is sleeved and fixed with an annular table (17), the annular table (17) is arranged on the lower side of the threaded sleeve (15), a movable sleeve (18) is arranged on the support column (16), the inner bottom surface of the movable sleeve (18) is arranged in contact with the lower side of the annular table (17), and the inner ring wall of the movable sleeve (18) is sleeved and fixed on the threaded sleeve (15) through screwing.

7. The multi-station linked forging and stamping device for processing copper strips according to claim 6, characterized in that: The upper end of the support column (16) is provided with a positioning groove (16-1), the inner top surface of the threaded sleeve (15) is fixedly provided with a positioning table (19), and the positioning table (19) is inserted into the positioning groove (16-1); sealing pads (20) are arranged around the positioning table (19), and the sealing pads (20) are inserted into the positioning groove (16-1).