A dual-station cable cutting, stripping and punching integrated machine and its cable forming process
By designing a cable dual-station cutting and peeling machine, the problem of combining multiple equipment in the existing technology is solved, and the one-time processing and forming of terminal wires of different specifications is realized, which improves production efficiency and reduces costs.
Patent Information
- Application Number
- CN202411249080.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-06
- Publication Date
- 2025-05-27
- Estimated Expiration
- 2044-09-06
AI Technical Summary
When processing terminal wires containing terminals of different specifications, multiple equipment is required to be used in combination, resulting in complex processing methods, large equipment space and low production efficiency.
A cable double-station cutting and peeling machine is designed, including a machine base, cutting and peeling mechanism, end-pulling mechanism and wire transport mechanism, which can realize the cutting, peeling and terminal crimping of wires in one device, simplifying the molding process.
The one-time processing and forming of end wires of terminals of different specifications is realized, which simplifies the forming process, reduces production costs, improves forming efficiency, and shortens the forming time of a single group of end wires.
Smart Images

Figure CN118943854B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of end wire processing equipment, and particularly relates to a cable double-station cutting, stripping and crimping integrated machine and a cable forming process thereof. Background Art
[0002] An end wire refers to a conductive cable with a conductive terminal crimped at the end of the cable, which is mainly a fitting product for realizing electrical connection. End wires are widely used in electrical components such as new energy charging guns, wireless routers, and transformers.
[0003] In the prior art, when processing a group of end wires with different specifications of terminals, it is often necessary to process and assemble them separately according to the terminal specifications, and finally combine and arrange them into a group before proceeding to the next step of processing. However, this processing method requires the combined use of multiple devices, and it is impossible to achieve one-time connection and forming of terminals with different specifications. The forming process is relatively complex, and the space occupied by the used equipment is too large, which is not conducive to production. On the other hand, it will also lead to low production efficiency of end wires. To solve the above problems, the inventor has made a new invention. Summary of the Invention
[0004] The purpose of the present invention is to provide a cable double-station cutting, stripping and crimping integrated machine and a cable forming process thereof for the deficiencies of the prior art, which have the characteristics of connection processing and high efficiency.
[0005] To achieve the above purpose, the present invention is a cable double-station cutting, stripping and crimping integrated machine, including a machine base. The machine base includes a machine table and a protective cover connected to the machine table, and the protective cover is provided with a control device. At both ends of the machine base, a first cutting and stripping mechanism and a second cutting and stripping mechanism are respectively arranged. Between the first cutting and stripping mechanism and the second cutting and stripping mechanism, a first terminal crimping mechanism and a second terminal crimping mechanism are arranged in sequence. It also includes a wire transporting mechanism for transporting wires. The wire transporting mechanism includes a wire transporting driving device and a first wire transporter and a second wire transporter. The wire transporting driving device drives the first wire transporter and the second wire transporter to displace. The first wire transporter cooperates with the first cutting and stripping mechanism to process wires. The second wire transporter cooperates with the second cutting and stripping mechanism to process wires. The wires are transported by the first wire transporter and the second wire transporter to the first terminal crimping mechanism and the second terminal crimping mechanism to crimp terminals.
[0006] Preferably, both the first cutting and stripping mechanism and the second cutting and stripping mechanism include a lifting driving device and an upper cutting knife device and a lower cutting knife device. The lifting driving device drives the upper cutting knife device and the lower cutting knife device to move relative to each other to cut the wires.
[0007] Preferably, both the first cutting and stripping mechanism and the second cutting and stripping mechanism include a waste collection box.
[0008] Preferably, a wire arranging mechanism for arranging wires is provided at the front ends of the first cutting and peeling mechanism and the second cutting and peeling mechanism.
[0009] Preferably, the wire arranging mechanism includes a wire arranging cylinder and a wire arranging plate. A plurality of semi-circular grooves are provided at the top of the wire arranging plate, and the wire arranging cylinder drives the wire arranging plate to displace.
[0010] Preferably, both the first wire transporter and the second wire transporter include a wire transporting seat and a movable seat. The wire transporting seat is slidably connected to a wire transporting driving device, and a slide rail and an adjusting cylinder are provided on the wire transporting seat; the movable seat is slidably connected to the slide rail, and the adjusting cylinder drives the movable seat to displace along the direction of the slide rail; a plurality of wire clamping devices are provided at the front end of the movable seat.
[0011] Preferably, a length determining mechanism is further provided at the top of the wire transporting seat. The length determining mechanism includes a length determining cylinder and an arc-shaped limiting plate, and the length determining cylinder drives the arc-shaped limiting plate to displace to position the wire.
[0012] Preferably, both the first terminal crimping mechanism and the second terminal crimping mechanism include a terminal feeding device, a fixed seat, a pushing device, and a crimping device; the terminal feeding device includes a vibrating plate and a conveying track communicated with the vibrating plate; a pressing table is provided on the fixed seat, and the pushing device at least includes a pushing track and a pushing cylinder; the pushing track extends to the pressing table and can be used to receive the terminals transported by the conveying track, the pushing cylinder is connected with a pushing plate, and the pushing cylinder drives the pushing plate to push the terminals along the pushing track to the end of the pushing track; the crimping device includes a pressing driving device and a crimping head, and the pressing driving device drives the crimping head to crimp the terminals.
[0013] Preferably, a wire guiding device for guiding wires is provided at the front end of the pressing table; the wire guiding device includes a wire guiding cylinder, a first wire guiding plate, and a second wire guiding plate. The first wire guiding plate and the second wire guiding plate are oppositely arranged and can form a tapered wire guiding hole, and the wire guiding cylinder drives the first wire guiding plate and the second wire guiding plate to swing relatively.
[0014] The present invention further includes a cable forming process containing different terminals, including the above-mentioned cable double-station cutting, peeling, and crimping integrated machine, and further including the following steps:
[0015] (1) Wire feeding step: Manually place a group of wires in the first wire transporter and the second wire transporter respectively.
[0016] (2) First cutting and peeling step: The first wire transporter transports a single group of wires to the first cutting and peeling mechanism, and the first cutting and peeling mechanism sequentially cuts off the redundant leather at the end of the wire and peels off the redundant leather from the end of the wire.
[0017] (3) First terminal crimping step: The wire after cutting and stripping is transported by the first wire conveyor to the first terminal crimping mechanism, and the first terminal crimping mechanism crimps the first terminal to the end of the wire. The number of wires with the first terminal crimped is determined according to the pre-set data.
[0018] (4) Second terminal crimping step: After the first terminal is crimped, the wire continues to be transported by the first wire conveyor to the second terminal crimping mechanism, and the second terminal crimping mechanism crimps the second terminal to each remaining wire one by one; in this step, the second wire conveyor transports the wire to the second cutting and stripping mechanism for cutting and stripping the end of the wire.
[0019] (5) Wire taking step: After the single group of wires of the first wire conveyor completes the terminal crimping process, the first wire conveyor returns to its original wire loading position, and the wire is taken off by manual and new wire is loaded; in this step, the second wire conveyor transports the wire through the second terminal crimping mechanism and the first terminal crimping mechanism in sequence.
[0020] Beneficial effects: Compared with the prior art, the present invention is a cable double-station cutting, stripping, and crimping integrated machine and its cable forming process. The present invention has the following advantages: 1. It can realize the one-time processing and forming of the end wire containing different specifications of terminals, simplify the forming process of the end wire, and there is no need to combine multiple devices for processing, effectively reducing the production cost of the end wire; 2. Wire conveyor mechanisms are provided at both ends of the device, and the two wire conveyor mechanisms cooperate to feed the wire successively, enabling the device to continuously process the wire and greatly improving the forming efficiency of the end wire; 3. The cable forming process of the present invention can greatly shorten the forming time of a single group of end wires, with high forming efficiency and a simple forming process. Brief Description of the Drawings
[0021] Figure 1 It is a schematic diagram of the overall structure of the present invention.
[0022] Figure 2 It is a schematic diagram of the structures of the first terminal crimping mechanism and the second terminal crimping mechanism of the present invention.
[0023] Figure 3 It is a schematic diagram of the structure of the pressure device of the present invention.
[0024] Figure 4 It is a schematic diagram of the structure of the pusher device of the present invention.
[0025] Figure 5 It is a schematic diagram of the structure of the wire conveyor mechanism of the present invention.
[0026] Figure 6 It is a schematic diagram of the structure of the wire conveyor of the present invention.
[0027] Figure 7 It is a schematic diagram of the structure of the cutting and stripping mechanism of the present invention.
[0028] Figure 8 It is a schematic diagram of the structure of the wire aligning device of the present invention.
[0029] Figure 9 Schematic structural diagram of the wire device of the present invention.
[0030] Figure 10 Partial enlarged structural diagram of the terminal crimping mechanism of the present invention.
[0031] Figure 11 Partial enlarged structural diagram of the material pushing device of the present invention.
[0032] Reference numerals include:
[0033] Machine base - 1, machine table - 11, protective cover - 12, control device - 13, first cutting and peeling mechanism - 2, lifting drive device - 21, upper cutting tool device - 22, lower cutting tool device - 23, waste collection box - 24, wire aligning mechanism - 25, wire aligning cylinder - 251, wire aligning plate - 252, semi-circular groove - 253, second cutting and peeling mechanism - 3, first terminal crimping mechanism - 4, terminal feeding device - 41, vibrating bowl - 411, conveying track - 412, vibrator - 413, fixed seat - 42, pressure feeding table - 421, limit seat - 422, material pushing device - 43, material pushing track - 431, material pushing cylinder - 432, material pushing plate - 433, terminal pressing device - 44, pressure feeding drive device - 441, pressure head - 442, second terminal crimping mechanism - 5, wire transporting mechanism - 6, wire transporting drive device - 61, first wire transporter - 62, wire transporting seat - 621, movable seat - 622, slide rail - 623, position adjusting cylinder - 624, wire clamping device - 625, fixed length mechanism - 626, fixed length cylinder - 627, arc-shaped limiting plate - 628, second wire transporter - 63, wire pay-off reel - 64, wire device - 7, wire cylinder - 71, first wire plate - 72, second wire plate - 73, tapered wire hole - 74. Detailed implementation manners
[0034] The following will be combined with the attached Figures 1 to 11 The present invention will be described in detail.
[0035] The present invention relates to a wire double-station cutting, stripping and terminal crimping integrated machine, which includes a machine base 1. The machine base 1 includes a machine table 11 and a protective cover 12 connected to the machine table 11. The protective cover 12 functions to protect the equipment, and a control device 13 is provided on the protective cover 12. At both ends of the machine base 1, a first cutting and stripping mechanism 2 and a second cutting and stripping mechanism 3 are respectively provided. Between the first cutting and stripping mechanism 2 and the second cutting and stripping mechanism 3, a first terminal crimping mechanism 4 and a second terminal crimping mechanism 5 are sequentially arranged. It also includes a wire transporting mechanism 6 for transporting wire materials. The wire transporting mechanism 6 includes a wire transporting driving device 61, a first wire transporter 62, and a second wire transporter 63. When the equipment is started, the first wire transporter 62 and the second wire transporter 63 respectively transport a group of wire materials to sequentially and alternately cooperate for terminal crimping at both ends of the machine table 11.
[0036] Compared with traditional terminal crimping devices, the present invention has the following advantages: 1. It can realize the one-time processing and forming of end wires containing terminals of different specifications, simplify the forming process of end wires, and there is no need to combine multiple devices for processing, effectively reducing the production cost of end wires; 2. Wire transporting mechanisms are provided at both ends of the equipment, and the two wire transporting mechanisms cooperate to feed wires successively, enabling the equipment to continuously process wire materials and greatly improving the forming efficiency of end wires.
[0037] In this technical solution, both the first cutting and stripping mechanism 2 and the second cutting and stripping mechanism 3 include a lifting driving device 21, an upper cutting knife device 22, and a lower cutting knife device 23. The lifting driving device 21 drives the upper cutting knife device 22 and the lower cutting knife device 23 to move relative to each other to cut the wire material, and when the wire material is drawn out of the upper and lower cutting knife devices 23, the leather material is stripped together. This device can realize the one-time forming of wire end cutting and stripping.
[0038] Preferably, both the first cutting and stripping mechanism 2 and the second cutting and stripping mechanism 3 include a waste collection box 24. The peeled leather materials are timely collected through the waste collection box 24 to prevent pollution of the working environment.
[0039] To further improve the stability of wire material processing, wire aligning mechanisms 25 for aligning wire materials are provided at the front ends of both the first cutting and stripping mechanism 2 and the second cutting and stripping mechanism 3.
[0040] Preferably, the wire aligning mechanism 25 includes a wire aligning cylinder 251 and a wire aligning plate 252. Multiple semi-circular grooves 253 are provided at the top of the wire aligning plate 252. After each wire material is placed in the semi-circular groove 253, the wire aligning cylinder 251 drives the wire aligning plate 252 to move backward to straighten the wire materials. This embodiment has a simple structure and low cost.
[0041] In this technical solution, both the first wire conveyor 62 and the second wire conveyor 63 include a wire conveyor base 621 and a movable base 622. The wire conveyor base 621 is slidably connected to the wire conveyor driving device 61. The wire conveyor base 621 is provided with a slide rail 623 and an adjustment cylinder 624. The movable base 622 is slidably connected to the slide rail 623, and the adjustment cylinder 624 drives the movable base 622 to displace along the direction of the slide rail 623. A plurality of wire clamping devices 625 are provided at the front end of the movable base 622. The wire clamping devices 625 at the front end of the movable base 622 are used to clamp the wire. The wire conveyor driving device 61 drives the wire clamping devices 625 to displace along the X-axis direction, and the adjustment cylinder 624 drives the wire clamping devices 625 to displace along the Y-axis direction, realizing flexible adjustment of the wire clamping devices 625. A wire pay-off reel 64 is further provided at the top of the wire conveyor base 621, and the tail of the wire is received by the wire pay-off reel 64 so as not to affect the wire conveying operation of the wire conveyor.
[0042] Preferably, a length fixing mechanism 626 is further provided at the top end of the wire conveyor base 621. The length fixing mechanism 626 includes a length fixing cylinder 627 and an arc-shaped limiting plate 628. The length fixing cylinder 627 drives the arc-shaped limiting plate 628 to displace and position the wire. A single charging gun cable contains multiple conductive wires. The conductive wire that needs to be crimped with a terminal is pulled out from the main cable. When the pulled-out length of the wire reaches the specified length, the length fixing cylinder 627 is started to drive the arc-shaped groove of the arc-shaped limiting plate 628 to abut and clamp the main cable, ensuring that the initial processing lengths of the wires are consistent.
[0043] As an embodiment, both the first terminal crimping mechanism 4 and the second terminal crimping mechanism 5 include a terminal feeding device 41, a fixed seat 42, a pushing device 43, and a terminal pressing device 44. The terminal feeding device 41 includes a vibrating bowl 411 and a conveying track 412 communicated with the vibrating bowl 411. The fixed seat 42 is provided with a pressing table 421. The pushing device 43 at least includes a pushing track 431 and a pushing cylinder 432. The pushing track 431 extends to the pressing table 421 and can be used to receive the terminals conveyed by the conveying track 412. The pushing cylinder 432 is connected with a pushing plate 433. The pushing cylinder 432 drives the pushing plate 433 to push the terminal to the end of the pushing track 431 along the direction of the pushing track 431. The terminal pressing device 44 includes a pressing driving device 441 and a pressing head 442. The pressing driving device 441 drives the pressing head 442 to crimp the terminal.
[0044] The working principles of the first terminal crimping mechanism 4 and the second terminal crimping mechanism 5 are the same, and the working principle is as follows: The vibrating disk 411 vibrates to gradually convey the terminals along the conveying track 412. When the terminals reach the end of the conveying track 412, they fall into the middle of the pushing track 431. The pushing cylinder 432 drives the pushing plate 433 to push the terminals to the end of the pushing track 431. At this time, the wire is inserted into the terminals from the other side, and the pressing drive device 441 is activated to drive the pressing head 442 to move downward to crimp the terminals, completing the terminal crimping process.
[0045] As Figure 3 shown, the terminal feeding device 41 further includes a vibrator 413, which is arranged below the conveying track 412 and is used to assist in conveying the terminals.
[0046] Preferably, a limit seat 422 is further arranged at the top of the fixed table. The limit seat 422 is movably connected to the pressing head 442, so that the displacement process of the pressing head 442 always proceeds along the limit seat 422, and the pressing head 442 will not shake during the crimping process, reducing the terminal crimping error.
[0047] As Figure 3 shown, a wire guiding device 7 for guiding the wire is arranged at the front end of the pressing table 421; the wire guiding device 7 includes a wire guiding cylinder 71, a first wire guiding plate 72 and a second wire guiding plate 73. The first wire guiding plate 72 and the second wire guiding plate 73 are arranged opposite to each other and can form a tapered wire guiding hole 74. Before the wire is placed at the end of the pushing track 431, the wire guiding cylinder 71 drives the first wire guiding plate 72 and the second wire guiding plate 73 to move relative to each other to form the tapered wire guiding hole 74. After the wire passes through the tapered wire guiding hole 74, it is further straightened and positioned; after crimping the terminals, the first wire guiding plate 72 and the second wire guiding plate 73 swing in the up and down directions to facilitate the wire to exit the terminal crimping mechanism. The wire guiding device 7 of the present technical solution is used to improve the stability of the wire terminal crimping process, and gradually realizes the positioning and fixing of the end of the wire through the tapered positioning groove with a gradually decreasing radius.
[0048] The present invention further includes a cable forming process containing different terminals, including the above-mentioned cable double-station cutting, stripping and crimping integrated machine, and further includes the following steps:
[0049] (1) Wire feeding step: Manually place a group of wires in the first wire transporting device and the second wire transporting device respectively; this step further includes a cable length fixing step: The wire is pulled out from the main cable. When the wire is pulled out to a certain length, the fixed-length cylinder drives the arc-shaped limit plate to move forward to clamp the main cable, indicating that the cable length has reached the specified length; this step is used to limit the wire length, ensure that the processing lengths of the wires are consistent, and guarantee the wire processing quality.
[0050] (2) First cutting and peeling step: The first wire conveyor transports a single group of wire to the first cutting and peeling mechanism. The first cutting and peeling mechanism successively cuts off the excess leather at the end of the wire and peels off the excess leather from the end of the wire. The peeled leather is centrally collected by the waste collection box to prevent environmental pollution.
[0051] Before this step, a wire aligning step will be carried out: The first wire conveyor puts each wire to be transported into the corresponding semi-circular groove of the wire aligning plate. The wire aligning cylinder drives the wire aligning plate to move backward to align the wire smoothly to ensure stable processing of the wire in the later stage.
[0052] (3) First terminal crimping step: The wire after cutting and peeling is transported by the first wire conveyor to the first terminal crimping mechanism. The first terminal crimping mechanism crimps the first terminal at the end of the wire. The number of wires crimping the first terminal is determined according to the preset data.
[0053] (4) Second terminal crimping step: After crimping the first terminal, the wire continues to be conveyed by the first wire conveyor to the second terminal crimping mechanism. The second terminal crimping mechanism crimps the second terminal to each remaining wire one by one. At the same time, the second wire conveyor transports the wire to the second cutting and peeling mechanism for cutting and peeling the end of the wire.
[0054] (5) Wire taking step: After the single group of wire of the first wire conveyor completes the terminal crimping process, the first wire conveyor retreats to the original wire loading position. The wire is taken off by the operator and new wire is loaded; this step includes the second wire conveyor transporting the wire through the second terminal crimping mechanism and the first terminal crimping mechanism in sequence.
[0055] The wire forming process of the present invention can realize the connection processing and crimping of different specifications of terminals for a single group of wire. The forming process of the wire does not need to be carried out separately. The forming process is simple and can effectively improve the forming efficiency; on the other hand, the forming process of the present invention also makes the terminal crimping processes of the two groups of wire staggered through the mutual cooperation of the first wire conveyor 62 and the second wire conveyor 63. That is, when one group of wire proceeds to the first terminal crimping step, the second group of wire starts cutting and peeling. Without interference between the forming processes of the two groups of wire, the forming time of the two groups of wire is greatly shortened, thereby doubling the wire forming efficiency.
[0056] The above content is only the preferred embodiment of the present invention. For those of ordinary skill in the art, according to the idea of the present invention, there will be changes in the specific implementation manner and application scope. The content of this specification should not be construed as a limitation to the present invention.
Claims
1. A cable double-station cutting, stripping and punching machine, comprising a machine base (1), characterized in that: The machine base (1) comprises a machine platform (11) and a protective cover (12) connected to the machine platform (11), wherein the protective cover (12) is provided with a control device (13); a first cutting and peeling mechanism (2) and a second cutting and peeling mechanism (3) are respectively provided at both ends of the machine base (1), and a first end-attaching mechanism (4) and a second end-attaching mechanism (5) are sequentially provided between the first cutting and peeling mechanism (2) and the second cutting and peeling mechanism (3); and a wire transport mechanism (6) for transporting wires is also included, wherein the wire transport mechanism (6) comprises a transport mechanism (13) and a wire transport mechanism (14). A wire driving device (61) and a first wire transporter (62) and a second wire transporter (63), wherein the wire transport driving device (61) drives the first wire transporter (62) and the second wire transporter (63) to move, wherein the first wire transporter (62) cooperates with the first cutting and stripping mechanism (2) to process the wire; the second wire transporter (63) cooperates with the second cutting and stripping mechanism (3) to process the wire; the wire is transported by the first wire transporter (62) and the second wire transporter (63) to the first terminal crimping mechanism (4) and the second terminal crimping mechanism (5) for crimping terminals; The first cutting and peeling mechanism (2) and the second cutting and peeling mechanism (3) both comprise a lifting drive device (21) and an upper cutting knife device (22) and a lower cutting knife device (23); the lifting drive device (21) drives the upper cutting knife device (22) and the lower cutting knife device (23) to move relative to each other to cut the wire material; The first wire transporter (62) and the second wire transporter (63) both include a wire transport seat (621) and a movable seat (622); the wire transport seat (621) is slidably connected to the wire transport driving device (61); the wire transport seat (621) is provided with a slide rail (623) and a positioning cylinder (624); the movable seat (622) is slidably connected to the slide rail (623), and the positioning cylinder (624) drives the movable seat (622) to move along the slide rail (623); a plurality of wire clamping devices (625) are provided at the front end of the movable seat (622); The first terminal beating mechanism (4) and the second terminal beating mechanism (5) both comprise a terminal feeding device (41), a fixing seat (42), a material pushing device (43) and a terminal pressing device (44); The terminal feeding device (41) comprises a vibration disk (411) and a conveying track (412) connected to the vibration disk (411); the fixed seat (42) is provided with a pressing table (421); the pushing device (43) comprises at least a pushing track (431) and a pushing cylinder (432); the pushing track (431) extends to the pressing table (421) and is used to receive the terminal transported by the conveying track (412); the pushing cylinder (432) is connected to a pushing plate (433); the pushing cylinder (432) drives the pushing plate (433) to push the terminal to the end of the pushing track (431) along the direction of the pushing track (431); The terminal pressing device (44) comprises a material pressing driving device (441) and a pressing head (442), and the material pressing driving device (441) drives the pressing head (442) to press the terminal.
2. The cable double-station cutting, stripping and punching machine according to claim 1, characterized in that: The first cutting and peeling mechanism (2) and the second cutting and peeling mechanism (3) both comprise a waste collection box (24).
3. The cable double-station cutting, stripping and punching machine according to claim 1, characterized in that: The front ends of the first cutting and peeling mechanism (2) and the second cutting and peeling mechanism (3) are both provided with a wire-winding mechanism (25) for arranging the wires.
4. The cable double-station cutting, stripping and punching machine according to claim 3, characterized in that: The wire-winding mechanism (25) comprises a wire-winding cylinder (251) and a wire-winding plate (252). A plurality of semicircular grooves (253) are arranged at the top of the wire-winding plate (252). The wire-winding cylinder (251) drives the wire-winding plate (252) to move.
5. The cable double-station cutting, stripping and punching machine according to claim 1, characterized in that: The top of the wire transport seat (621) is also provided with a fixed length mechanism (626), and the fixed length mechanism (626) includes a fixed length cylinder (627) and an arc-shaped limiting plate (628), and the fixed length cylinder (627) drives the arc-shaped limiting plate (628) to displace and locate the position of the wire.
6. The cable double-station cutting, stripping and punching machine according to claim 1, characterized in that: A wire guide device (7) for guiding the wire is arranged at the front end of the pressing table (421); the wire guide device (7) comprises a wire cylinder (71) and a first wire plate (72) and a second wire plate (73); the first wire plate (72) and the second wire plate (73) are arranged opposite to each other and can form a tapered wire hole (74); the wire cylinder (71) drives the first wire plate (72) and the second wire plate (73) to swing relative to each other.
7. A process for forming cables with different terminals, characterized in that: The cable double-station cutting, stripping and punching machine according to any one of claims 1 to 6 further comprises the following steps: (1) Wire laying step: manually placing a group of wires into the first wire transporter and the second wire transporter respectively; (2) First cutting and stripping step: The first wire transporter transports the single group of wires to the first cutting and stripping mechanism, and the first cutting and stripping mechanism sequentially cuts the excess leather at the ends of the wires and strips the excess leather from the ends of the wires; (3) First terminal-bending step: the cut and stripped wire is transported by the first wire transporter to the first terminal-bending mechanism, and the first terminal-bending mechanism crimps the first terminal to the end of the wire. The number of wires crimped to the first terminal is determined according to pre-set data; (4) a second termination step: after crimping the first terminal, the wire is continuously conveyed by the first wire transporter (62) to the second termination mechanism, and the second termination mechanism crimps the remaining wires one by one with the second terminal; this step includes the second wire transporter conveying the wire to the second cutting and stripping mechanism for cutting and stripping the wire ends; (5) Wire removal step: After the single group of wires of the first wire transporter completes the termination process, the first wire transporter returns to the original wire loading position, and the wires are manually removed and replaced with new wires. This step includes the second wire transporter transporting the wires through the second termination mechanism and the first termination mechanism in sequence.
Citation Information
Patent Citations
Residual wire clamping mechanism capable of automatically and stably clamping
CN113451042A
Automatic wire cutting and peeling device
CN218946222U