A cable processing machine
Through the coordination of the drive device and the adjustment device, the cable is adjusted by sliding and mounting mechanisms, which solves the problem of poor adjustment when the cable conveyor is mounted with cables of different lengths and short lengths, and improves the stability and efficiency of cable production.
Patent Information
- Application Number
- CN202311021248.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-08-15
- Publication Date
- 2025-08-26
- Estimated Expiration
- 2043-08-15
AI Technical Summary
The existing wire conveying frame equipment has poor regulation when installing cables of different lengths, resulting in low working efficiency and poor practicality.
Through the cooperation of the drive device and the adjustment device, the sliding and mounting mechanisms are used to adjust the size of the cable, including switching the displacement of the drive mounting mechanism and the clamping support state, thereby improving the adjustment of the equipment.
It realizes stable disk installation of cables of different sizes, improves the adjustment and stability of the equipment, and improves the efficiency of cable production.
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Figure CN116891157B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of cable processing equipment accessories, in particular to a cable processing machine. Background Art
[0002] As we all know, in the process of industrial production, the production of cables is divided into multiple steps, and the cables are produced, cut and reeled through a combination of multiple steps. Each step is indispensable, among which reeling is an important link in the production of cables. The most common cable reeling equipment currently available is the wire feeder rack; the wire feeder rack is a device used to transport and reel cables in the industrial production process, and it has been widely used in the field of industrial production; when using the existing wire feeder rack, the equipment is first placed in an appropriate position, and the cable is reeled by transporting it to the output end of the wire feeder rack; it was found in the use of the existing wire feeder rack that the volume of the wire feeder rack is relatively fixed, resulting in poor adjustability of the equipment when reeling cables of different lengths, thereby resulting in low working efficiency of the equipment, and thus poor practicality. Summary of the Invention
[0003] In order to solve the above technical problems, the present invention provides a cable processing machine that can drive an adjustment device to slide through a driving device, and adjust the production of cables of different sizes through sliding. In this process, the clamping mechanism is driven to make it move or switch the clamping support state according to different situations, thereby improving the adjustability of the equipment production.
[0004] A cable processing machine of the present invention includes a box body and a production device, which is evenly installed on the box body. The production device also includes a driving device, an adjusting device and a clamping mechanism. A working chamber is provided in the box body, and a slide groove is provided through the working chamber. The output end of the driving device passes through the slide groove and is slidably connected to the box body. A through hole is provided at the bottom end of the working chamber, and the output end of the clamping mechanism passes through the through hole and is slidably connected to the working chamber. A long groove is provided on the output end of the driving device, and the adjusting device passes through the long groove and is slidably connected to the driving device.
[0005] A cable processing machine of the present invention, the driving device also includes a fixed plate, a telescopic pole, a coupling, a tightening block and a support rod, the support rod passes through a slide groove and is slidably connected to the working chamber, the output end of the support rod passes through the slide groove and extends out of the working chamber, the top of the fixed plate is connected to the top of the working chamber, the telescopic pole is evenly installed on the fixed plate and fixedly fitted to the fixed plate, the connecting end and the output end of the coupling are respectively connected to the connecting end of the support rod and the output end of the telescopic pole, a tightening hole is provided on the coupling, and the tightening block passes through the tightening hole and is threadedly connected to the coupling.
[0006] A cable processing machine of the present invention, the adjusting device also includes a triangular plate, a hydraulic cylinder, an adjusting rod, a motor, a pulley, a belt, a driving wheel and a roller. The adjusting rod passes through the long slot and is slidably connected to the support rod. The output ends of multiple groups of hydraulic cylinders are connected to the bottom end of the adjusting rod, the output ends of multiple groups of triangular plates are connected to the bottom end of the hydraulic cylinder, and the connecting ends of multiple groups of triangular plates are respectively connected to the corresponding connecting ends of the support rod. A placement cavity is provided in the adjusting rod, and an axial hole is provided at the right end of the placement cavity. The roller passes through the axial hole and is rotatably connected to the adjusting rod. The connecting end of the driving wheel is connected to the connecting end of the roller, and the connecting end of the motor is connected to the left end of the adjusting rod. An organic hole is provided through the adjusting rod, and the output end of the motor passes through the machine hole and is connected to the connecting end of the pulley. The belt is evenly installed on the output ends of the pulley and the driving wheel.
[0007] A cable processing machine of the present invention, the clamping mechanism also includes a clamping plate, a tooth block, a micro-electric pole, a damper, a spring and a roller, multiple groups of dampers respectively pass through the corresponding through holes and are slidably connected to the box body, the connecting ends of multiple groups of rollers are all connected to the bottom ends of the corresponding dampers, multiple groups of springs are evenly installed on the corresponding dampers, the bottom ends of the clamping plate are all connected to the top ends of the multiple groups of dampers, the bottom ends of multiple groups of micro-electric poles are all connected to the bottom end of the working chamber, the output ends of multiple groups of micro-electric poles are all connected to the bottom end of the clamping plate, the bottom end of the tooth block is connected to the top end of the clamping plate, and multiple groups of teeth and grooves are matched with the support rod.
[0008] A cable processing machine of the present invention also includes an auxiliary block and a rotating knob. An auxiliary groove is provided on the box body. The auxiliary block is slidably connected to the box body through the auxiliary groove. The output end of the roller and the output end of the auxiliary block are rotatably connected. Multiple groups of rotating holes are provided on the auxiliary block. Multiple groups of rotating knobs are respectively passed through the corresponding rotating holes and are threadedly connected to the auxiliary block.
[0009] A cable processing machine of the present invention also includes a clip and a counterweight. A connecting seat is provided on the box body. The counterweight passes through the connecting seat and is rotatably connected to the box body. The connecting end of the clip is connected to the right end of the box body, and the output end of the counterweight passes through the output end of the clip and is movably clamped with it.
[0010] A cable processing machine of the present invention also includes a limit bar and a limit block. The top of the limit block is connected to the bottom end of the support rod. The limit block and the box body are penetrated by a limit hole. The limit bar passes through the limit hole and is slidably connected to the box body and the limit block. The connecting end of the limit bar is rotatably connected to the left end of the clamping plate.
[0011] Compared with the prior art, the beneficial effects of the present invention are: in the process of reeling the cable, the driving device is started to limit the reeling size of the cable. During this process, the adjusting device is started to cooperate with the driving device for adjustment. During this process, the position of the equipment is adjusted by rotating the clamping mechanism. After the adjustment is completed, the clamping mechanism is lifted and lowered, and the driving device is clamped by lifting to ensure the stability of the equipment. During this process, the cable is reeled by starting the adjusting device, thereby improving the adjustability of cable production. A cable processing machine. BRIEF DESCRIPTION OF THE DRAWINGS
[0012] Figure 1 It is a structural schematic diagram of the present invention;
[0013] Figure 2 It is a partial enlarged structural schematic diagram of A of the present invention;
[0014] Figure 3 It is a partial enlarged structural schematic diagram of B of the present invention;
[0015] Figure 4 It is a partial enlarged structural schematic diagram of C of the present invention;
[0016] The following are marked: 1, box; 2, production device; 3, driving device; 4, adjusting device; 5, clamping mechanism; 201, working chamber; 202, slide groove; 203, through hole; 204, long groove; 301, fixing plate; 302, telescopic pole; 303, coupling; 304, tightening block; 305, support rod; 306, tightening hole; 401, triangle plate; 402, hydraulic cylinder; 403, adjusting rod; 404, motor; 405, pulley; 406, tightening hole; 6. Belt; 407. Driving wheel; 408. Roller; 409. Placement cavity; 410. Axis hole; 411. Machine hole; 501. Card plate; 502. Tooth block; 503. Micro pole; 504. Damper; 505. Spring; 506. Roller; 507. Tooth groove; 6. Auxiliary block; 7. Knob; 8. Auxiliary slot; 9. Rotating hole; 10. Buckle; 11. Counterweight; 12. Connecting seat; 13. Limit strip; 14. Limit block; 15. Limit hole. DETAILED DESCRIPTION
[0017] The following embodiments of the present invention are described in further detail with reference to the accompanying drawings and examples. The following examples are used to illustrate the present invention but are not intended to limit the scope of the present invention.
[0018] like Figures 1 to 4As shown, a cable processing machine of the present invention includes a box body 1 and a production device 2, and the production device 2 is evenly installed on the box body 1. The production device also includes a driving device 3, an adjusting device 4 and a clamping mechanism 5. A working chamber 201 is provided in the box body 1, and a slide groove 202 is provided through the working chamber 201. The output end of the driving device 3 passes through the slide groove 202 and is slidably connected to the box body 1. A through hole 203 is provided at the bottom end of the working chamber 201, and the output end of the clamping mechanism 5 passes through the through hole 203 and is slidably connected to the working chamber 201. A long groove 204 is provided on the output end of the driving device 3, and the adjusting device 4 passes through the long groove 204 and is slidably connected to the driving device 3; in the process of coiling the cable, the driving device is started to limit the coiling size of the cable. In this process, the adjusting device is started to cooperate with the driving device for adjustment. In this process, the position of the equipment is adjusted by rotating the clamping mechanism. After the adjustment is completed, the clamping mechanism is lifted and lowered, and the driving device is clamped by lifting to ensure the stability of the equipment. In this process, the cable is coiled by starting the adjusting device, so as to improve the adjustability of cable production.
[0019] A cable processing machine of the present invention, the driving device also includes a fixed plate 301, a telescopic pole 302, a coupling 303, a tight block 304 and a support rod 305, the support rod 305 passes through the slide 202 and is slidably connected to the working chamber 201, the output end of the support rod 305 passes through the slide 202 and extends out of the working chamber 201, the top of the fixed plate 301 is connected to the top of the working chamber 201, the telescopic pole 302 is evenly installed on the fixed plate 301 and fixedly fitted with the fixed plate 301, the connection end of the coupling 303 and the output end are connected. The output ends are respectively connected to the connecting ends of the support rod 305 and the output ends of the telescopic pole 302. A tight hole 306 is provided on the coupling 303, and the tight block 304 passes through the tight hole 306 and is threadedly connected to the coupling 303. In the process of limiting the size of cable production, the telescopic pole on the fixed plate is started to drive the coupling to slide, and the support rod connected to it is driven by the coupling to slide on the slide groove, and the distance between the support rod and the box is adjusted by sliding, so as to improve the adjustability of the equipment during production.
[0020] A cable processing machine of the present invention, the adjustment device also includes a triangular plate 401, a hydraulic cylinder 402, an adjustment rod 403, a motor 404, a pulley 405, a belt 406, a driving wheel 407 and a roller 408, the adjustment rod 403 passes through the long slot 204 and is slidably connected to the support rod 305, the output ends of multiple groups of hydraulic cylinders 402 are connected to the bottom end of the adjustment rod 403, the output ends of multiple groups of triangular plates 401 are connected to the bottom end of the hydraulic cylinder 402, the connection ends of multiple groups of triangular plates 401 are respectively connected to the corresponding connection ends of the support rod 305, a placement cavity 409 is provided in the adjustment rod 403, the right end of the placement cavity 409 is provided with an axis hole 410, the roller 408 passes through the axis hole 410 and is rotatably connected to the adjustment rod 403, and the driving wheel 4 07 is connected to the connecting end of roller 408, the connecting end of motor 404 is connected to the left end of adjusting rod 403, the adjusting rod 403 is penetrated by machine hole 411, the output end of motor 404 passes through machine hole 411 and is connected to the connecting end of pulley 405, and belt 406 is evenly installed on the output end of pulley 405 and driving wheel 407; in the process of producing the cable, the hydraulic rod is started to drive the adjusting rod connected to it to slide, and the sliding of the adjusting rod adjusts the size of the cable reel produced. In this process, the motor is started to drive the pulley connected to it to rotate, and the belt is driven by the pulley to rotate to rotate the roller connected to it, so as to reel the cable, thereby improving the adjustability of the equipment.
[0021] A cable processing machine of the present invention, the clamping mechanism also includes a clamping plate 501, a tooth block 502, a micro-pole 503, a damper 504, a spring 505 and a roller 506, multiple groups of dampers 504 respectively pass through the corresponding through holes 203 and are slidably connected to the box 1, the connection ends of multiple groups of rollers 506 are all connected to the bottom ends of the corresponding dampers 504, multiple groups of springs 505 are evenly installed on the corresponding dampers 504, the bottom ends of the clamping plate 501 are all connected to the top ends of the multiple groups of dampers 504, the bottom ends of the multiple groups of micro-pole 503 are all connected to the bottom end of the working chamber 201, and the output ends of the multiple groups of micro-pole 503 are all connected to the bottom end of the clamping plate 501. Then, the bottom end of the tooth block 502 is connected to the top end of the card plate 501, and the support rod 305 is equipped with multiple sets of tooth grooves 507; in the process of displacing or supporting the equipment, the micro-pole is started to drive the card plate connected to it to lift and slide, and when the card plate is pressed, the roller is driven to contact the ground, and the damper is driven by the spring to support the roller, thereby driving the equipment to move. In this process, the micro-pole is started to drive the card plate to rise, and the rising card plate drives the tooth block and the tooth groove on the adjusted support rod to engage, and the drive device is stabilized by the card plate support and the tooth block limit, thereby improving the adjustability of the equipment.
[0022] A cable processing machine of the present invention also includes an auxiliary block 6 and a knob 7. An auxiliary groove 8 is provided on the box body 1. The auxiliary block 6 passes through the auxiliary groove 8 and is slidably connected to the box body 1. The output end of the roller 408 is rotatably connected to the output end of the auxiliary block 6. A plurality of groups of rotating holes 9 are provided on the auxiliary block 6. The plurality of groups of rotating knobs 7 pass through the corresponding rotating holes 9 and are threadedly connected to the auxiliary block 6. In the process of lifting and lowering by the roller, the auxiliary block connected to the roller slides at the same time, and the auxiliary block is fixed by rotating the tightening block, so as to improve the stability of the equipment processing.
[0023] A cable processing machine of the present invention also includes a buckle 10 and a counterweight 11. A connecting seat 12 is provided on the box body 1. The counterweight 11 passes through the connecting seat 12 and is rotatably connected to the box body 1. The connecting end of the buckle 10 is connected to the right end of the box body 1, and the output end of the counterweight 11 passes through the output end of the buckle 10 and is movably clamped with it. During the process of telescopic adjustment through the support rod, the counterweight is rotated to balance the weight of the extended support rod, and is stored through the buckle after use, thereby improving the stability of the equipment.
[0024] A cable processing machine of the present invention also includes a limit bar 13 and a limit block 14. The top of the limit block 14 is connected to the bottom end of the support rod 305. The limit block 14 and the box body 1 are penetrated by a limit hole 15. The limit bar 13 passes through the limit hole 15 and is slidably connected to the box body 1 and the limit block 14. The connecting end of the limit bar 13 is rotatably connected to the left end of the card plate 501. In the process of lifting and lowering through the card plate, the position between the card plate and the support rod is limited by the limit bar, thereby improving the stability of the equipment.
[0025] A cable processing machine of the present invention starts a driving device to limit the cable reel size during operation. During this process, the adjusting device is started to cooperate with the driving device for adjustment. During this process, the position of the equipment is adjusted by rotating the clamping mechanism. After the adjustment is completed, the clamping mechanism is lifted and lowered. The driving device is clamped by lifting to ensure the stability of the equipment. During this process, the cable is reeled by starting the adjusting device, the telescopic pole on the fixed plate is started to drive the coupling to slide, and the supporting rod connected to it is driven to slide on the slide groove through the coupling, and the distance between the supporting rod and the box is adjusted by sliding. The hydraulic rod is started to drive the adjusting rod connected to it to slide, and the adjusting rod slides to adjust the cable reel size. During this process, the motor is started to drive the connecting rod to it The pulley rotates, and the belt is driven by the pulley to rotate the roller connected to it, and the micro-pole is started to drive the connected card to lift and slide. When the card is pressed, the roller is driven to contact the ground, and the damper is driven by the spring to support the roller, thereby driving the equipment to move. In this process, the micro-pole is started to drive the card to rise, and the rising card drives the gear block and the adjusted tooth groove on the support rod to engage, and the driving device is stabilized by the card support and the gear block limit. The auxiliary block connected to the roller slides at the same time, and the auxiliary block is fixed by rotating the tightening block. The counterweight block is rotated to balance the weight of the extended support rod. After use, it is stored through the buckle, and the position between the card plate and the support rod is limited by the limit bar, thereby improving the stability of the equipment.
[0026] The terms "vertical," "horizontal," "left," "right," and the like are used herein for descriptive purposes only.
[0027] The "first", "second" and "third" in the present invention do not represent specific quantities and orders, but are only used to distinguish names.
[0028] The above is only a preferred embodiment of the present invention. It should be pointed out that for ordinary technicians in this technical field, several improvements and modifications can be made without departing from the technical principles of the present invention. These improvements and modifications should also be regarded as the scope of protection of the present invention.
Claims
1. A cable processing machine, comprising a box (1) and a production device (2), wherein the production device (2) is evenly mounted on the box (1); characterized in that: The production device further comprises a driving device (3), an adjusting device (4) and a clamping mechanism (5); a working chamber (201) is provided in the box body (1); a slide groove (202) is provided through the working chamber (201); an output end of the driving device (3) passes through the slide groove (202) and is slidably connected to the box body (1); a through hole (203) is provided at the bottom end of the working chamber (201); an output end of the clamping mechanism (5) passes through the through hole (203) and is slidably connected to the working chamber (201); a long groove (204) is provided on the output end of the driving device (3); and the adjusting device (4) passes through the long groove (204) and is slidably connected to the driving device (3); The driving device further comprises a fixed plate (301), a telescopic pole (302), a coupling (303), a tightening block (304) and a support rod (305), wherein the support rod (305) passes through the chute (202) and is slidably connected to the working chamber (201), an output end of the support rod (305) passes through the chute (202) and extends out of the working chamber (201), a top end of the fixed plate (301) is connected to a top end of the working chamber (201), the telescopic pole (302) is evenly mounted on the fixed plate (301) and fixedly fitted to the fixed plate (301), a connecting end and an output end of the coupling (303) are respectively connected to the connecting end of the support rod (305) and the output end of the telescopic pole (302), a tightening hole (306) is provided on the coupling (303), and the tightening block (304) passes through the tightening hole (306) and is threadedly connected to the coupling (303); The adjusting device further comprises a triangular plate (401), a hydraulic cylinder (402), an adjusting rod (403), a motor (404), a pulley (405), a belt (406), a driving wheel (407) and a roller (408). The adjusting rod (403) passes through the long slot (204) and is slidably connected to the support rod (305). The output ends of the plurality of hydraulic cylinders (402) are all connected to the bottom end of the adjusting rod (403). The output ends of the plurality of triangular plates (401) are all connected to the bottom end of the hydraulic cylinder (402). The connection ends of the plurality of triangular plates (401) are respectively connected to the corresponding connection ends of the support rod (305). The adjusting rod (403) A placement cavity (409) is provided inside, an axial hole (410) is provided at the right end of the placement cavity (409), a roller (408) passes through the axial hole (410) and is rotatably connected to the adjustment rod (403), a connecting end of the driving wheel (407) is connected to the connecting end of the roller (408), a connecting end of the motor (404) is connected to the left end of the adjustment rod (403), an organic hole (411) is provided through the adjustment rod (403), an output end of the motor (404) passes through the organic hole (411) and is connected to the connecting end of the pulley (405), and a belt (406) is evenly installed on the pulley (405) and the output end of the driving wheel (407); The clamping mechanism further includes a clamping plate (501), a tooth block (502), a micro pole (503), a damper (504), a spring (505) and a roller (506). The plurality of dampers (504) are respectively connected to the corresponding through holes (203) and the box (1) in a sliding manner. The connection ends of the plurality of rollers (506) are all connected to the bottom ends of the corresponding dampers (504). The plurality of springs (505) are evenly installed on the corresponding dampers. On the damper (504), the bottom ends of the card plate (501) are connected to the top ends of multiple groups of dampers (504), the bottom ends of multiple groups of micro-electric poles (503) are connected to the bottom end of the working chamber (201), the output ends of multiple groups of micro-electric poles (503) are connected to the bottom end of the card plate (501), the bottom end of the tooth block (502) is connected to the top end of the card plate (501), and the support rod (305) is equipped with multiple groups of tooth grooves (507).
2. A cable processing machine according to claim 1, characterized in that: The auxiliary block (6) and the rotary knob (7) are also included. The box body (1) is provided with an auxiliary groove (8). The auxiliary block (6) passes through the auxiliary groove (8) and is slidably connected to the box body (1). The output end of the roller (408) is rotatably connected to the output end of the auxiliary block (6). The auxiliary block (6) is provided with multiple groups of rotary holes (9). The multiple groups of rotary knobs (7) pass through the corresponding rotary holes (9) and are all threadedly connected to the auxiliary block (6).
3. A cable processing machine according to claim 1, characterized in that: It also includes a buckle (10) and a counterweight (11). A connecting seat (12) is provided on the box body (1). The counterweight (11) passes through the connecting seat (12) and is rotatably connected to the box body (1). The connecting end of the buckle (10) is connected to the right end of the box body (1), and the output end of the counterweight (11) passes through the output end of the buckle (10) and is movably clamped therewith.
4. A cable processing machine according to claim 1, characterized in that: The invention also includes a limit bar (13) and a limit block (14), wherein the top end of the limit block (14) is connected to the bottom end of the support rod (305), the limit block (14) and the box body (1) are provided with a limit hole (15), the limit bar (13) passes through the limit hole (15) and is slidably connected to the box body (1) and the limit block (14), and the connection end of the limit bar (13) is rotatably connected to the left end of the card plate (501).
Citation Information
Patent Citations
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