Forming equipment for non-rolled cylindrical copper electrical parts

By designing the structure of the loading section, forming section, and feeding section, the problems of unstable feeding and collision of finished parts were solved, achieving stable feeding and buffer protection, and improving the production efficiency and quality of electrical parts.

CN120885594AActive Publication Date: 2025-11-04NANTONG LIXING MASCH MFG CO LTD
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Patent Information

Application Number
CN202511440225.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-10-10
Publication Date
2025-11-04
Estimated Expiration
2045-10-10

AI Technical Summary

Technical Problem

Existing molding equipment has difficulty in steadily pushing columnar raw materials during the feeding process, resulting in inconvenience in feeding. Furthermore, finished parts are prone to collisions when falling, affecting quality.

Method used

A forming device for non-rolled cylindrical copper electrical parts was designed, comprising a loading section, a forming section, a control section, and a feeding section. Stable feeding and buffer protection are achieved through structures such as a buffer frame, push block, traction plate, and push plate.

Benefits of technology

It achieves stable feeding of columnar raw materials and buffer protection of finished parts, avoiding jamming and falling collisions during the feeding process, and improving the production efficiency and quality of electrical parts.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides forming equipment for a non-rolled cylindrical copper electric appliance part, and relates to the technical field of electric appliance accessory manufacturing. The forming part is arranged at the top of the loading part; the control part is arranged in the forming part; the feeding part is arranged at the top of the forming part; buffer springs at the bottom of a buffer frame facilitate buffering of finished accessories, an inclined rolling frame is arranged in an outer cover to facilitate movement of columnar raw materials, and meanwhile, a stabilizing frame is fixed to the outer portion of the outer cover through screws, so that stability of a pushing plate in the moving process is kept conveniently; according to the feeding device, the clamping plate is arranged on the feeding device, so that the clamping plate is conveniently driven to push columnar raw materials, the columnar raw materials are fed, electric accessories can be conveniently stamped, and the problem that in the recovery process of the finished accessories, the accessories are collided in the falling process due to the lack of a buffering structure, and the quality of the finished accessories is affected is solved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of electrical appliance accessory manufacturing, and particularly relates to a forming device for non-rolled cylindrical copper electrical appliance parts. BACKGROUND

[0002] In the field of electrical appliance manufacturing, the forming of non-rolled cylindrical copper parts (such as conductive terminals, connecting pieces, etc.) usually involves stamping, forging or extrusion processes. The traditional manufacturing method mainly relies on manual feeding and single-station stamping, and has the following problems: The existing forming device mostly feeds through the clamping and pushing mode, which makes it difficult to push the columnar raw material, and thus affects the continuous stamping production of electrical appliance accessories. In the recycling process of finished parts, the parts are collided in the falling process due to the lack of a buffer structure, thus affecting the quality of the finished parts. SUMMARY

[0003] Therefore, the present application provides a forming device for non-rolled cylindrical copper electrical appliance parts, which has a loading part and a feeding part. The bottom frame is fixed below the device to support other structures of the device and maintain the overall stability of the device. The jacking plate is fixed on the rectangular rod-shaped protrusion on the top of the bottom frame to maintain the stability of the buffer frame. The inside of the loading plate is provided with an inclined surface and a roller, so that the finished parts first contact the roller on the inclined surface during the falling process, thereby reducing the drop. The buffer spring at the bottom of the buffer frame is used to buffer the finished parts. The inside of the cover is provided with an inclined roller frame to move the columnar raw material. The stabilizing frame is fixed to the outside of the cover by screws to maintain the stability of the pushing plate during movement, so as to drive the clamping plate to push the columnar raw material, thereby feeding the columnar raw material and stamping the electrical appliance accessories.

[0004] The application provides a forming device for non-rolled cylindrical copper electrical parts, which specifically comprises a loading part, the loading part comprising a base frame, a buffer frame, the base frame being a rectangular frame structure, the bottom of the base frame being provided with four round table-shaped support blocks, and the top of the base frame being provided with four rectangular rods; the buffer frame being a rectangular frame structure, the top of the buffer frame being provided with four rectangular through holes, the bottom of the buffer frame being provided with a cylindrical sliding rod, the buffer frame being provided with a buffer spring on the cylindrical rod, the buffer frame being slidingly connected to the rectangular rods of the base frame, and the buffer frame being slidingly connected to the top of the tightening plate of the loading part; a forming part, the forming part being arranged on the top of the loading part, the mounting plate of the forming part being fixed to the top of the base frame, the forming part comprising a push block, the push block being a T-shaped rod structure, the right side of the push block being provided with a trapezoidal protrusion, and the push block being fixed to the left side rectangular protrusion of the mounting plate through a screw; a control part, the control part being arranged in the forming part, the fixed plate of the control part being fixed to the top of the mounting plate through a screw, the traction plate of the control part being fixed to the moving frame of the forming part through a screw, the control part comprising a traction plate, the traction plate being an L-shaped structure, the bottom of the traction plate being provided with a trapezoidal groove, the traction plate being provided with a clamping block of the control part inserted into the trapezoidal groove, and the traction plate being arranged above the baffle of the control part; and a feeding part, the feeding part being arranged on the top of the forming part, the outer cover of the feeding part being fixed to the protection cover of the forming part through a screw, and the connecting frame of the feeding part being threadedly connected to the threaded rods of the mounting plate; the feeding part comprising a connecting frame, the connecting frame being a U-shaped structure, the top of the connecting frame being provided with two groups of rectangular protrusions, the middle position of the connecting frame being provided with a threaded through hole, and the connecting frame being fixed to the bottom of the two groups of push plates of the feeding part through a screw.

[0005] Optionally, the tightening plate is a rectangular frame structure, the tightening plate is provided with four rectangular through holes, the bottom of the tightening plate is provided with four rectangular frame structures, the tightening plate is provided with a circular through hole, and the tightening plate is fixed to the top of the base frame through a screw.

[0006] Optionally, the loading part further comprises a loading plate, the loading plate being a cuboid structure, the top of the loading plate being provided with a rectangular protrusion, the inside of the loading plate being provided with an inclined surface, the inclined surface of the loading plate being provided with a roller, the loading plate being fixed to the top of the buffer frame through a screw, and the loading plate being slidingly connected to the rectangular rods of the base frame.

[0007] Optionally, the mounting plate is a square plate structure, the right side of the mounting plate is provided with a rectangular through hole, the top of the mounting plate is provided with rectangular protrusions on the left and right sides, the left side rectangular protrusion of the mounting plate is provided with a hydraulic cylinder, four cylindrical sliding rods are arranged between the two groups of rectangular protrusions of the mounting plate, a control motor is arranged on the mounting plate, and the control motor of the mounting plate is connected with a threaded rod; the moving frame is a square plate structure, the front and back sides of the moving frame are respectively provided with rectangular protrusions, the moving frame is connected with the hydraulic cylinder of the mounting plate, and the moving frame is slidingly connected to the four sliding rods of the mounting plate.

[0008] Optionally, the forming part further comprises: two sets of templates, the two sets of templates are respectively fixed on the right side of the rectangular protrusions of the mounting plate and the moving frame through screws; the protective cover is a inverted U-shaped plate, the top of the protective cover is provided with a T-shaped through hole, and the protective cover is fixed on the two sets of rectangular protrusions of the mounting plate through screws.

[0009] Optionally, the fixing plate is a rectangular frame structure, a rectangular frame-shaped groove is arranged on the outer wall of the fixing plate, a rectangular groove is connected to the inner wall of the fixing plate, a cylindrical rod is arranged in the rectangular groove of the fixing plate, and a rectangular through hole is connected to the left side of the inner wall of the fixing plate; the baffle is a square plate structure, rectangular protrusions are arranged on the front and back sides of the baffle, a return spring is arranged on the rectangular protrusions of the baffle, a trapezoidal protrusion is arranged on the left side of the baffle, a rectangular groove is arranged on the trapezoidal protrusion of the baffle, and the baffle is slidingly connected to the fixing plate.

[0010] Optionally, the clamping block is a trapezoidal structure, a return spring is arranged at the bottom of the clamping block, and the clamping block is slidingly connected to the rectangular groove of the baffle.

[0011] Optionally, the outer cover is a hollow cuboid structure, rectangular through holes are arranged on the inner walls of the front and back sides of the outer cover, rectangular protrusions are arranged on the inner walls of the front and back sides of the outer cover, rectangular grooves are arranged on the rectangular protrusions of the outer cover, two cylindrical sliding rods are arranged in the inner part of the outer cover, a circular through hole is arranged at the top of the outer cover, rectangular protrusions are arranged on the inner wall bottom of the front and back sides of the outer cover, and an inclined roller frame is arranged at the bottom of the outer cover; the feeding part further comprises: two sets of stabilizing grooves, the stabilizing grooves are inverted T-shaped through holes, and the two sets of stabilizing grooves are arranged on the two sets of rectangular protrusions in the inner part of the outer cover.

[0012] Optionally, the feeding part further comprises: stabilizing frames, the stabilizing frames are cylindrical rod structures, L-shaped frames are arranged on the left and right sides of the stabilizing frames, and the stabilizing frames are provided in four sets, which are fixed on the rectangular through hole positions of the outer cover through screws; the pushing plate is a cuboid structure, rectangular grooves are arranged on the pushing plate, T-shaped protrusions are arranged on the pushing plate, a rectangular protrusion is arranged at the top of the pushing plate, the pushing plate is provided in two sets, and the two sets of pushing plates are slidingly connected to the rectangular through hole and the sliding rod in the inner part of the outer cover, and the two sets of pushing plates are slidingly connected to the stabilizing frames.

[0013] Optionally, the feeding part further comprises: clamping plates, the clamping plates are trapezoidal structures, return springs are arranged on the clamping plates, and the clamping plates are provided in four sets, two sets of clamping plates are slidingly connected in the rectangular grooves of the outer cover, and the other two sets of clamping plates are slidingly connected in the rectangular grooves of the pushing plate.

[0014] Beneficial effects According to the electric appliance accessory puncher of each embodiment of the present application, compared with the traditional puncher, the bottom is provided with a loading part, the top plate is fixed on the top of the bottom frame through screws and connected with the buffer spring on the buffer plate, so as to keep the stability of the buffer frame through the buffer spring, the loading plate is fixed on the top of the buffer plate through screws, so as to buffer the loading plate through the buffer spring, the inside of the buffer plate is provided with an inclined surface and a roller, so that the finished product first contacts with the roller when falling, thereby reducing the falling difference of the finished accessory and avoiding collision.

[0015] In addition, the forming part is arranged on the top of the loading part, the mounting plate is fixed on the top of the bottom frame through screws, so as to keep the stability and facilitate the punching of the columnar raw material, the moving frame is slidingly connected on the cylindrical rod on the mounting plate and connected with the hydraulic cylinder on the mounting plate, the die plate is fixed on the mounting plate, so as to facilitate the punching of the columnar raw material and the manufacturing of the electric appliance accessory, the push block is fixed on the mounting plate through screws, so as to push the traction plate during the retreat of the moving plate, thereby facilitating the reset of the baffle.

[0016] In addition, the control part is arranged in the inside of the forming part, and the fixed plate is fixed on the mounting plate through screws, so as to keep the stability of other structures of the control part, the baffle is slidingly connected on the fixed plate, so that the traction plate is pushed by the push block during the movement of the moving frame, thereby separating the clamping block from the traction plate under the action of the push block, so as to reset the baffle and facilitate the support of the columnar raw material.

[0017] In addition, the feeding part is arranged on the top of the forming part, the outer cover is fixed on the top of the mounting plate through screws, so as to keep the stability of other structures of the feeding part, the outer cover is provided with an inclined roller frame in the inside, so as to facilitate the movement of the columnar raw material and the pushing of the raw material, the stable frame is fixed on the front and rear sides of the outer cover through screws, so as to keep the stability of the pushing plate during the movement, the clamping plate is slidingly connected on the outer cover and the pushing plate, so as to clamp the raw material through the extension control, thereby facilitating the pushing of the raw material, and the connecting frame is fixed on the bottom of the pushing plate through screws, so as to control the synchronous movement of the two groups of pushing plates. BRIEF DESCRIPTION OF DRAWINGS

[0018] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings of the embodiments will be briefly introduced below.

[0019] The drawings in the following description only relate to some embodiments of the present application, but not limit the present application.

[0020] In the drawings: Figure 1 The schematic diagram of the three-dimensional structure according to the embodiment of the present application is shown. Figure 2 A schematic view of a perspective bottom structure according to an embodiment of the present application is shown; Figure 3 A schematic view of an exploded structure according to an embodiment of the present application is shown; Figure 4 A schematic view of an exploded bottom structure according to an embodiment of the present application is shown; Figure 5 A schematic view of an enlarged structure of part A shown in Figure 4 Figure 6 A schematic view of an internal assembly structure according to an embodiment of the present application is shown; Figure 7 A schematic view of a loading part assembly structure according to an embodiment of the present application is shown; Figure 8 A schematic view of a forming part assembly structure according to an embodiment of the present application is shown; Figure 9 A schematic view of a control part assembly structure according to an embodiment of the present application is shown; Figure 10 A schematic view of a fixing part assembly structure according to an embodiment of the present application is shown.

[0021] List of reference signs 1. loading part; 101. bottom frame; 102. top pressing plate; 103. buffer frame; 104. loading plate; 2. forming part; 201. mounting plate; 202. moving frame; 203. template; 204. protective cover; 205. push block; 3. control part; 301. fixing plate; 302. baffle; 303. clamping block; 304. traction plate; 4. feeding part; 401. outer cover; 402. stabilizing groove; 403. stabilizing frame; 404. push plate; 405. clamping plate; 406. connecting frame. DETAILED DESCRIPTION

[0022] In order to make the purpose, scheme and advantages of the technical solutions of the present application clearer, the technical solutions of the embodiments of the present application will be described clearly and completely in the following with reference to the drawings of the specific embodiments of the present application. Unless otherwise specified, the terms used herein have the meanings commonly used in the art. The same reference signs in the drawings represent the same parts.

[0023] Embodiment: please refer to Figures 1 to 10 : ​The application provides a forming device for non-rolled cylindrical copper electrical parts, which comprises a loading part 1, the loading part 1 comprises a base frame 101 and a buffer frame 103, the base frame 101 is in a rectangular frame structure, four round table-shaped support blocks are arranged on the bottom of the base frame 101, and four rectangular rods are arranged on the top of the base frame 101; the base frame 101 is used for installing and fixing other structures of the device, so that the overall stability of the device is maintained, and the device is convenient for stamping manufacturing; the buffer frame 103 is in a rectangular frame structure, four rectangular through holes are arranged on the top of the buffer frame 103, a cylindrical sliding rod is arranged on the bottom of the buffer frame 103, buffer springs are arranged on the cylindrical rod of the buffer frame 103, the buffer frame 103 is slidably connected to the rectangular rods of the base frame 101, and the buffer frame 103 is slidably connected to the top of the top pressing plate 102 of the loading part 1; the buffer frame 103 is used for buffering the loading plate 104 through the buffer springs on the bottom, so that the finished parts are prevented from colliding under the action of gravity difference; a forming part 2 is arranged on the top of the loading part 1, a mounting plate 201 of the forming part 2 is fixed to the top of the base frame 101, and the forming part 2 comprises a push block 205, the push block 205 is in a T-shaped rod structure, a trapezoidal protrusion is arranged on the right side of the push block 205, and the push block 205 is fixed to the left side rectangular protrusion of the mounting plate 201 through screws; the push block 205 is used for tightly pressing the clamping block 303 through the right side inclined surface, so that the clamping block 303 is separated from the traction plate 304, and the baffle 302 is conveniently reset; a control part 3 is arranged in the forming part 2, a fixed plate 301 of the control part 3 is fixed to the top of the mounting plate 201 through screws, a traction plate 304 of the control part 3 is fixed to the moving frame 202 of the forming part 2 through screws, and the control part 3 comprises the traction plate 304, the traction plate 304 is in an L-shaped structure, a trapezoidal groove is arranged on the bottom of the traction plate 304, the clamping block 303 of the control part 3 is inserted into the trapezoidal groove of the traction plate 304, and the traction plate 304 is arranged above the baffle 302 of the control part 3; the traction plate 304 is used for moving the baffle 302 by cooperating with the clamping block 303, so that the finished workpiece is conveniently recycled; a feeding part 4 is arranged on the top of the forming part 2, an outer cover 401 of the feeding part 4 is fixed to the protective cover 204 of the forming part 2 through screws, and a connecting frame 406 of the feeding part 4 is threadedly connected to the threaded rod of the mounting plate 201; the feeding part 4 comprises the connecting frame 406, the connecting frame 406 is in a U-shaped structure, two groups of rectangular protrusions are arranged on the top of the connecting frame 406, a threaded through hole is arranged at the middle position of the connecting frame 406, and the connecting frame 406 is fixed to the bottom of the two groups of push plates 404 through screws; the connecting frame 406 is used for connecting the two groups of push plates 404, so that the two groups of push plates 404 are conveniently driven to move synchronously under the action of the threaded rod.

[0024] In addition, according to the embodiment of the application, Figure 7As shown, the top plate 102 is a rectangular frame structure, and four rectangular through holes are arranged on the top plate 102. The bottom of the top plate 102 is provided with four rectangular frame structures, and a circular through hole is arranged on the top plate 102. The top plate 102 is fixed on the top of the chassis 101 by screws. The top plate 102 is used for auxiliary fixing of the buffer frame 103, so as to facilitate the adjustment. The loading part 1 further comprises a loading plate 104. The loading plate 104 is a cuboid structure, and a rectangular protrusion is arranged on the top of the loading plate 104. An inner inclined surface is arranged on the loading plate 104, and a roller is arranged on the inclined surface of the loading plate 104. The loading plate 104 is fixed on the top of the buffer frame 103 by screws, and is slidably connected to the rectangular rod of the chassis 101. The loading plate 104 is used for loading finished parts, and the gap of the finished parts is alleviated by the roller on the inner inclined surface, so as to avoid collision.

[0025] In addition, according to the embodiment of the present application, as Figure 8 As shown, the mounting plate 201 is a square plate structure, and a rectangular through hole is arranged on the right side of the mounting plate 201. Rectangular protrusions are arranged on the top left and right sides of the mounting plate 201. A hydraulic cylinder is arranged on the left rectangular protrusion of the mounting plate 201. Four cylindrical sliding rods are arranged between the two groups of rectangular protrusions of the mounting plate 201. A control motor is arranged on the mounting plate 201, and a threaded rod is connected to the control motor. The mounting plate 201 is used for fixing other structures of the forming part 2, and fixing the hydraulic cylinder and the control motor, so as to facilitate the adjustment of the device, and stamping treatment of the columnar copper material. The moving frame 202 is a square plate structure, and rectangular protrusions are arranged on the front and rear sides of the moving frame 202. The moving frame 202 is connected to the hydraulic cylinder of the mounting plate 201, and is slidably connected to the four sliding rods of the mounting plate 201. The moving frame 202 is used for fixing the die plate 203, and driving the die plate 203 to move under the action of the hydraulic cylinder, so as to facilitate the stamping treatment. The forming part 2 further comprises a die plate 203. Two groups of die plates 203 are fixed on the right rectangular protrusions of the mounting plate 201 and the moving frame 202 by screws. The die plate 203 is used for facilitating the stamping treatment of the material. The protective cover 204 is an inverted U-shaped plate, and a T-shaped through hole is arranged on the top of the protective cover 204. The protective cover 204 is fixed on the two groups of rectangular protrusions of the mounting plate 201 by screws. The protective cover 204 is used for protecting the internal structure of the forming part 2, so as to facilitate the stamping treatment.

[0026] In addition, according to the embodiment of the present application, as Figure 9As shown, the fixed plate 301 is a rectangular frame structure, the outer wall of the fixed plate 301 is provided with a rectangular frame-shaped groove, the inner wall of the fixed plate 301 is connected with a rectangular groove, the rectangular groove of the fixed plate 301 is provided with a cylindrical rod, and the left side of the inner wall of the fixed plate 301 is connected with a rectangular through hole; the fixed plate 301 is used for mounting and fixing other structures of the control part 3; the baffle 302 is a square plate structure, the front and back of the baffle 302 are provided with rectangular protrusions, the rectangular protrusions of the baffle 302 are provided with return springs, the left side of the baffle 302 is provided with a trapezoidal protrusion, the trapezoidal protrusion of the baffle 302 is provided with a rectangular groove, and the baffle 302 is slidingly connected to the fixed plate 301; the baffle 302 is used for supporting the columnar raw material, thereby facilitating the stamping treatment; the clamping block 303 is a trapezoidal structure, the bottom of the clamping block 303 is provided with a return spring, and the clamping block 303 is slidingly connected to the rectangular groove of the baffle 302; the clamping block 303 is used for cooperating with the traction plate 304, thereby facilitating the movement of the baffle 302, so as to facilitate the control of the state of the baffle 302.

[0027] In addition, according to the embodiment of the present application, as Figure 10As shown, the outer cover 401 is a hollow rectangular structure, the front and rear two sides of the outer cover 401 are provided with a rectangular hole, the front and rear two sides of the outer cover 401 are provided with a rectangular protrusion, the rectangular protrusion of the outer cover 401 is provided with a rectangular groove, the inside of the outer cover 401 is provided with two cylindrical sliding rods, the top of the outer cover 401 is provided with a circular hole, the inner wall of the bottom of the outer cover 401 is provided with a rectangular protrusion, the bottom of the outer cover 401 is provided with an inclined roller frame; the outer cover 401 is used to fix other structures of the feeding part 4, and the inside of the roller frame is used to assist the movement of the columnar raw material; the feeding part 4 further comprises: a stabilizing groove 402, the stabilizing groove 402 is a inverted T-shaped hole, the stabilizing groove 402 is provided with two groups, and the two groups of stabilizing grooves 402 are arranged on the two groups of rectangular protrusions in the outer cover 401; the stabilizing groove 402 is used to assist the adjustment of the connecting frame 406, so as to facilitate the pushing of the raw material; the feeding part 4 further comprises: a stabilizing frame 403, the stabilizing frame 403 is a cylindrical rod structure, the left and right sides of the stabilizing frame 403 are respectively provided with an L-shaped frame, the stabilizing frame 403 is provided with four groups, and the four groups of stabilizing frames 403 are fixed on the rectangular hole position of the outer cover 401 through screws; the stabilizing frame 403 is used to assist the movement of the pushing plate 404, so as to facilitate the stability; the pushing plate 404 is a rectangular structure, the pushing plate 404 is provided with a rectangular groove, the pushing plate 404 is provided with a T-shaped protrusion, the top of the pushing plate 404 is provided with a rectangular protrusion, the pushing plate 404 is provided with two groups, and the two groups of pushing plates 404 are slidingly connected to the rectangular hole and the sliding rod in the outer cover 401, the two groups of pushing plates 404 are slidingly connected to the stabilizing frame 403; the pushing plate 404 is used to move under the action of the connecting frame 406, so as to push the columnar raw material to move, so as to facilitate the pushing of the raw material; the feeding part 4 further comprises: a clamping plate 405, the clamping plate 405 is a trapezoidal structure, the clamping plate 405 is provided with a reset spring, the clamping plate 405 is provided with four groups, and the two groups of clamping plates 405 are slidingly connected in the rectangular groove of the outer cover 401; the clamping plate 405 is used to stretch and contract on the pushing plate 404 and the outer cover 401, so as to facilitate the pushing and blocking of the raw material, so as to facilitate the pushing of the raw material.

[0028] The specific use and role of the embodiment are as follows: in the application, before use, the device needs to be carried to the designated position by manpower, and the push plate 404 is adjusted to the initial position under the action of the control motor on the mounting plate 201, the columnar copper material is added through the circular hole at the top of the outer cover 401, and the columnar copper material is moved through the rollers on the inclined roller frame in the outer cover 401, so that it is in contact with the two sets of clamping plates 405 on the right side, thereby facilitating the accumulation of the columnar copper material in the outer cover 401, in use, the control motor is started, the threaded rod control connecting frame 406 is moved, and the two sets of push plates 404 are moved, so that the columnar copper material is moved through the two sets of clamping plates 405 on the left side, and the columnar copper material is constrained through the two cylindrical rods in the outer cover 401, thereby avoiding the misalignment of the materials, under the action of the push plate 404, the right side material pushes the two sets of clamping plates 405 on the right side, so that they are retracted into the outer cover 401, thereby making the rightmost material fall between the moving frame 202 and the die plate 203, and the right clamping plate 405 clamps the remaining material under the action of the reset spring, then the hydraulic cylinder is started, the moving frame 202 is pushed, and the material is punched in cooperation with the die plate 203, when the moving frame 202 is punched, the clamping block 303 is clamped into the trapezoidal groove at the bottom of the traction plate 304, so that the baffle 302 is moved by the clamping block 303 and the traction plate 304 during the movement of the moving frame 202, the baffle 302 slides on the fixed plate 301, so that the finished accessory is moved downward under the action of gravity, so that it is in contact with the rollers on the bottom of the loading plate 104, thereby reducing the drop of the finished accessory, reducing the collision, and the loading plate 104 is moved downward under the action of gravity as the finished accessory accumulates in the inside, so that it is buffered under the action of the buffer plate, thereby facilitating the protection of the finished accessory in the inside, and after the baffle 302 moves a distance under the action of the traction plate 304 and the clamping block 303, the clamping block 303 in the traction plate 304 is in contact with the push block 205, so that the clamping block 303 is separated from the traction plate 304 under the action of the push block 205, thereby resetting the baffle 302 under the action of the reset spring, thereby facilitating the support of the new columnar material, and then the hydraulic cylinder and the control motor are repeatedly operated, thereby facilitating the continuous operation of the device.

[0029] Finally, it should be noted that, in the description of the positions of various components and their cooperation, etc., one component / pair of components is usually taken as an example, but those skilled in the art should understand that such positions, cooperation, etc. are also applicable to other components / other pairs of components.

[0030] The above description is only an exemplary embodiment of the application, not for limiting the protection scope of the application, and the protection scope of the application is determined by the appended claims.

Claims

1. A forming device for non-rolled cylindrical copper electrical parts, characterized in that, include: Loading section (1); the loading section (1) includes: a base frame (101), a buffer frame (103), the base frame (101) has four frustum-shaped support blocks at its bottom, and four rectangular rods at its top; the buffer frame (103) has four rectangular through holes at its top, and cylindrical sliding rods at its bottom, with buffer springs on the cylindrical rods of the buffer frame (103), and the buffer frame (103) is slidably connected to the rectangular rods of the base frame (101). At the top of the top plate (102) of the loading part (1); forming part (2), the forming part (2) is set at the top of the loading part (1), the mounting plate (201) of the forming part (2) is fixed at the top of the base frame (101), the forming part (2) includes: a push block (205), the right side of the push block (205) is provided with a trapezoidal protrusion, the push block (205) is fixed to the left rectangular protrusion of the mounting plate (201) by screws; a control part (3), the control part (3) is set inside the forming part (2), the control part (3) The fixing plate (301) is fixed to the top of the mounting plate (201) by screws, and the traction plate (304) of the control unit (3) is fixed to the moving frame (202) of the forming unit (2) by screws. The control unit (3) includes: a traction plate (304), the bottom of which is provided with a trapezoidal groove, and a locking block (303) of the control unit (3) is inserted into the trapezoidal groove of the traction plate (304). The traction plate (304) is positioned above the baffle (302) of the control unit (3); and a feeding unit (4). The outer cover (401) of the feeding part (4) is fixed to the protective cover (204) of the forming part (2) by screws, and the connecting frame (406) of the feeding part (4) is threadedly connected to the threaded rod of the mounting plate (201). The feeding part (4) includes: a connecting frame (406), the top of the connecting frame (406) is provided with two sets of rectangular protrusions, the middle position of the connecting frame (406) is provided with a threaded through hole, and the connecting frame (406) is fixed to the bottom of the push plate (404) of the two sets of feeding parts (4) by screws.

2. The forming equipment for non-rolled cylindrical copper electrical parts as described in claim 1, characterized in that: The top plate (102) has four rectangular through holes, and the bottom of the top plate (102) has four rectangular frame-like structures. The top plate (102) has circular through holes and is fixed to the top of the base frame (101) by screws.

3. The forming equipment for non-rolled cylindrical copper electrical parts as described in claim 1, characterized in that: The loading part (1) further includes: a loading plate (104), the top of the loading plate (104) is provided with a rectangular protrusion, the interior of the loading plate (104) is provided with an inclined surface, the inclined surface of the loading plate (104) is provided with rollers, the loading plate (104) is fixed to the top of the buffer frame (103) by screws, and the loading plate (104) is slidably connected to the rectangular rod of the base frame (101).

4. The forming equipment for non-rolled cylindrical copper electrical parts as described in claim 1, characterized in that: The mounting plate (201) has a rectangular through hole on the right side, and rectangular protrusions on the top left and right sides of the mounting plate (201). A hydraulic cylinder is provided on the rectangular protrusion on the left side of the mounting plate (201). Four cylindrical sliding rods are provided between the two sets of rectangular protrusions of the mounting plate (201). A control motor is provided on the mounting plate (201), and the control motor of the mounting plate (201) is connected to a threaded rod. The movable frame (202) has rectangular protrusions on the front and rear sides respectively. The movable frame (202) is connected to the hydraulic cylinder of the mounting plate (201), and the movable frame (202) is slidably connected to the four sliding rods of the mounting plate (201).

5. The forming equipment for non-rolled cylindrical copper electrical parts as described in claim 1, characterized in that: The forming part (2) further includes: template (203), two sets of templates (203) are respectively fixed to the right rectangular protrusion of the mounting plate (201) and the movable frame (202) by screws; the top of the protective cover (204) is provided with a T-shaped through hole, and the protective cover (204) is fixed to the two sets of rectangular protrusions of the mounting plate (201) by screws.

6. The forming equipment for non-rolled cylindrical copper electrical parts as described in claim 1, characterized in that: The outer wall of the fixing plate (301) is provided with a rectangular frame-shaped groove, the inner wall of the fixing plate (301) is connected with a rectangular groove, a cylindrical rod is provided in the rectangular groove of the fixing plate (301), and a rectangular through hole is connected to the left side of the inner wall of the fixing plate (301); the front and rear sides of the baffle (302) are provided with rectangular protrusions, a return spring is provided on the rectangular protrusion of the baffle (302), a trapezoidal protrusion is provided on the left side of the baffle (302), a rectangular groove is provided on the trapezoidal protrusion of the baffle (302), and the baffle (302) is slidably connected to the fixing plate (301).

7. The forming equipment for non-rolled cylindrical copper electrical parts as described in claim 1, characterized in that: The bottom of the card block (303) is provided with a reset spring, and the card block (303) is slidably connected in the rectangular groove of the baffle (302).

8. The forming equipment for non-rolled cylindrical copper electrical parts as described in claim 1, characterized in that: The outer cover (401) has rectangular through holes on the inner walls of the front and rear sides, rectangular protrusions on the inner walls of the front and rear sides, rectangular grooves on the rectangular protrusions of the outer cover (401), two cylindrical sliding rods inside the outer cover (401), a circular through hole on the top of the outer cover (401), rectangular protrusions on the front and rear sides of the bottom of the inner wall of the outer cover (401), and an inclined roller frame at the bottom of the outer cover (401); the feeding part (4) also includes: a stabilizing groove (402), two sets of stabilizing grooves (402) are provided, and the two sets of stabilizing grooves (402) are respectively set on the two sets of rectangular protrusions inside the outer cover (401).

9. The forming equipment for non-rolled cylindrical copper electrical parts as described in claim 1, characterized in that: The feeding part (4) further includes: a stabilizing frame (403), with L-shaped frames on the left and right sides of the stabilizing frame (403), and four sets of stabilizing frames (403) in total. The four sets of stabilizing frames (403) are fixed to the rectangular through holes of the outer cover (401) by screws. The push plate (404) has a rectangular groove, a T-shaped protrusion, and a rectangular protrusion on the top of the push plate (404). There are two sets of push plates (404), and the two sets of push plates (404) are slidably connected to the rectangular through holes of the outer cover (401) and the sliding rod inside. The two sets of push plates (404) are slidably connected to the stabilizing frame (403) in total.

10. The forming equipment for non-rolled cylindrical copper electrical parts as described in claim 1, characterized in that: The feeding part (4) further includes: a card plate (405), a reset spring is provided on the card plate (405), and a total of four sets of card plates (405). Two sets of card plates (405) are slidably connected in the rectangular groove of the outer cover (401), and two sets of card plates (405) are slidably connected in the rectangular groove of the push plate (404).

Citation Information

Patent Citations

  • Automatic feeding device for automobile part stamping part production

    CN118847854A

  • Material returning structure of precision stamping die

    CN212042392U

  • Stamping mechanism for physiotherapy electrode slice production

    CN218487061U

  • Metal part stamping die

    CN220717383U

  • Tube forming machine

    KR1020100043672A