Wire twister for cable processing

By using a screw and connecting rod structure in the wire twisting machine to adjust the tension of the guide rollers and the spacing of the guide rings, the problem of poor material feeding before wire harness twisting was solved, and a high-quality twisting effect was achieved.

CN223679862UActive Publication Date: 2025-12-16GUANGXI JINLONGXING CABLE GROUP CO LTD
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Patent Information

Application Number
CN202520637481.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-07
Publication Date
2025-12-16
Estimated Expiration
2035-04-07

AI Technical Summary

Technical Problem

Existing stranding machines lack a good wire harness feeding structure before stranding, resulting in poor cable quality and gap issues after stranding.

Method used

By employing a combination of lead screw and connecting rod structures, and adjusting the tension of the guide rollers and the distance between the central guide plate and the cable guide ring, precise guidance of the branch wire harness is achieved, ensuring that the wire harness enters the winch at the appropriate angle.

Benefits of technology

It effectively improves the quality of stranded wire, reduces cable gaps, and enhances the overall performance of stranded wire.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a wire twisting machine for cable processing. The wire twisting machine comprises a housing and a wire twisting guide mechanism. A right side workbench is arranged on the right side of the machine shell, a wire twisting frame is arranged on the upper side of the right side workbench, a twisting cage is arranged in the wire twisting frame, and a cable avoiding opening is formed in the left side of the machine shell; the twisted wire guide mechanism comprises a rotating disc, a wire inlet cylinder, a right side cable guide assembly and an outer side cylinder, the wire inlet cylinder is rotationally connected to the left side wall of the machine shell, the rotating disc is arranged on the right side of the outer arc face of the wire inlet cylinder, the outer arc face of the rotating disc is rotationally connected with the right side wall of the machine shell, and the outer side cylinder is arranged on the right side face of the rotating disc; and the right side cable guide assembly comprises a middle guide disc, a middle cable guide opening, a first sliding groove, a first lead screw, a sliding seat, a first connecting rod, a right side cable guide ring, a right side cable guide opening and a rectangular groove, and according to the wire twisting machine for cable processing, the wire twisting quality is effectively improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to cable processing technical field, concretely is a cable processing is with wire stranding machine. BACKGROUND

[0002] Cable is a kind of commonly used power or signal transmission device, generally by single wire or several wires or several groups of wires. Since the softness of several wires is good after stranding, reliability is high, strength is big, stability is good and the like, all the multi-wire cables currently use wire stranding machine to form single conductor by stranding copper wire;

[0003] In the prior art: the patent with authorized publication number CN202223598198.7 discloses a kind of wire stranding machine for power cable processing, including side-by-side stranding mechanism and ply mechanism, the ply mechanism includes rack, ply barrel and condensation component, the ply barrel is welded to the left side of rack top, the condensation component is located at the top of rack and located at the right side of ply barrel, the condensation component includes long tube fixedly installed on rack along the length direction of rack by two tube clamps, two first notches are formed on the left side of the outer wall of long tube, and the first notches are distributed symmetrically along vertical direction, the utility model relates to cable processing technical field;

[0004] The above-mentioned wire stranding machine has some problems in actual use, for example, only after wire harness stranding, if wire harness stranding is not well divided, wire harness guiding structure is easy to make gap between divided wire harness and main wire harness after receiving stranding, this gap cannot be solved by pressing, thereby leading to the problem of poor quality of cable, therefore, we propose a kind of wire stranding machine for cable processing. Utility model content

[0005] The utility model solves the technical problems of overcoming the defects of the prior art, providing a kind of wire stranding machine for cable processing, effectively improve the stranding quality, can effectively solve the problems in the background art.

[0006] To achieve the above-mentioned purpose, the utility model provides the following technical scheme: a kind of wire stranding machine for cable processing, including shell and wire stranding guide mechanism;

[0007] Shell: its right side is equipped with right side workbench, the upper side of right side workbench is equipped with wire stranding frame, the inside of wire stranding frame is equipped with stranding cage, the left side of shell is equipped with cable avoiding mouth;

[0008] The twisting wire guide mechanism comprises a rotating disc, a wire inlet cylinder, a right cable guide assembly and an outer cylinder. The wire inlet cylinder is rotationally connected to the left side wall of the casing. The outer arc surface of the wire inlet cylinder is provided with the rotating disc. The outer arc surface of the rotating disc is rotationally connected to the right side wall of the casing. The right side surface of the rotating disc is provided with the outer cylinder. The outer arc surface of the outer cylinder is provided with uniformly distributed round corner avoiding openings. The right cable guide assembly is arranged on the right side of the wire inlet cylinder. The branch wire harness and the main wire harness can enter the twisting cage at a more appropriate angle, effectively improving the quality of the twisted wire.

[0009] Further, the right cable guide assembly comprises a middle guide disc, a middle cable guide opening, a first sliding groove, a first lead screw, a sliding seat, a first connecting rod, a right cable guide ring, a right cable guide opening and a rectangular groove. The middle guide disc is fixedly connected to the right side of the wire inlet cylinder. The side wall of the middle guide disc is provided with uniformly distributed middle cable guide openings. The right side wall of the middle guide disc is provided with uniformly distributed first sliding grooves. The inner parts of the three first sliding grooves are respectively slidably connected with sliding seats. The inner parts of the three sliding seats are respectively rotationally connected with first connecting rods. The right ends of the three first connecting rods are respectively rotationally connected with the inner parts of a right cable guide ring. The side wall of the right cable guide ring is provided with uniformly distributed right cable guide openings. The right side wall of the middle guide disc is provided with uniformly distributed rectangular grooves. The inner parts of the three first sliding grooves are respectively rotationally connected with first lead screws. The outer threaded surfaces of the three first lead screws are respectively threadedly connected with the middle parts of the sliding seats located in the same first sliding groove, realizing the function of two-stage line guide.

[0010] Further, the twisting wire guide mechanism further comprises a right drive assembly. The right drive assembly comprises a first bevel gear, a second bevel gear and a twist valve. One end of each of the three first lead screws towards the center of the casing is fixedly connected with a first bevel gear. The left side walls of the three rectangular grooves are respectively rotationally connected with second bevel gears. The left sides of the three second bevel gears are respectively fixedly connected with twist valves. The three first bevel gears are respectively meshingly connected with the second bevel gears located in the same rectangular groove, realizing the function of manually controlling the right guide assembly.

[0011] Further, the twisting wire guide mechanism further comprises a left cable guide assembly. The left cable guide assembly comprises a fixed frame body, a second connecting rod, a guide roller, a moving frame body and a third connecting rod. The fixed frame body is arranged on the outer arc surface of the right side of the wire inlet cylinder. The inner part of the fixed frame body is rotationally connected with uniformly distributed second connecting rods. The right ends of the eight second connecting rods are respectively rotationally connected with guide rollers. The outer arc surface of the right side of the wire inlet cylinder is slidably connected with a moving frame body. The inner part of the moving frame body is rotationally connected with uniformly distributed third connecting rods. The ends of the eight third connecting rods are respectively rotationally connected with the middle parts of the second connecting rods corresponding in transverse position, realizing the function of left one-stage guide.

[0012] Further, the wire twisting guide mechanism further comprises a left driving assembly, the left driving assembly comprises a second sliding groove, a sliding block, a second screw rod and a rotating handle, the second sliding groove is arranged on the outer arc surface of the wire inlet cylinder, the sliding block is slidably connected in the second sliding groove, the upper side of the sliding block is fixedly connected with the inner arc surface of the moving frame body, the second screw rod is rotatably connected in the second sliding groove, the outer thread surface of the second screw rod is threadedly connected with the middle part of the sliding block, and the rotating handle is fixedly connected with the right end of the second screw rod, so that the function of manually adjusting the left guide position is realized.

[0013] Further, the wire twisting guide mechanism further comprises a left driving assembly, the left driving assembly comprises a second sliding groove, a sliding block, a second screw rod and a rotating handle, the second sliding groove is arranged on the outer arc surface of the wire inlet cylinder, the sliding block is slidably connected in the second sliding groove, the upper side of the sliding block is fixedly connected with the inner arc surface of the moving frame body, the second screw rod is rotatably connected in the second sliding groove, the outer thread surface of the second screw rod is threadedly connected with the middle part of the sliding block, and the rotating handle is fixedly connected with the right end of the second screw rod, so that the function of manually adjusting the left guide position is realized.

[0014] Further, the wire twisting guide mechanism further comprises a left driving assembly, the left driving assembly comprises a second sliding groove, a sliding block, a second screw rod and a rotating handle, the second sliding groove is arranged on the outer arc surface of the wire inlet cylinder, the sliding block is slidably connected in the second sliding groove, the upper side of the sliding block is fixedly connected with the inner arc surface of the moving frame body, the second screw rod is rotatably connected in the second sliding groove, the outer thread surface of the second screw rod is threadedly connected with the middle part of the sliding block, and the rotating handle is fixedly connected with the right end of the second screw rod, so that the function of manually adjusting the left guide position is realized.

[0015] Further, the wire twisting guide mechanism further comprises a left driving assembly, the left driving assembly comprises a second sliding groove, a sliding block, a second screw rod and a rotating handle, the second sliding groove is arranged on the outer arc surface of the wire inlet cylinder, the sliding block is slidably connected in the second sliding groove, the upper side of the sliding block is fixedly connected with the inner arc surface of the moving frame body, the second screw rod is rotatably connected in the second sliding groove, the outer thread surface of the second screw rod is threadedly connected with the middle part of the sliding block, and the rotating handle is fixedly connected with the right end of the second screw rod, so that the function of manually adjusting the left guide position is realized.

[0016] Further, the wire twisting guide mechanism further comprises a left driving assembly, the left driving assembly comprises a second sliding groove, a sliding block, a second screw rod and a rotating handle, the second sliding groove is arranged on the outer arc surface of the wire inlet cylinder, the sliding block is slidably connected in the second sliding groove, the upper side of the sliding block is fixedly connected with the inner arc surface of the moving frame body, the second screw rod is rotatably connected in the second sliding groove, the outer thread surface of the second screw rod is threadedly connected with the middle part of the sliding block, and the rotating handle is fixedly connected with the right end of the second screw rod, so that the function of manually adjusting the left guide position is realized.

[0017] Further, the wire twisting guide mechanism further comprises a left driving assembly, the left driving assembly comprises a second sliding groove, a sliding block, a second screw rod and a rotating handle, the second sliding groove is arranged on the outer arc surface of the wire inlet cylinder, the sliding block is slidably connected in the second sliding groove, the upper side of the sliding block is fixedly connected with the inner arc surface of the moving frame body, the second screw rod is rotatably connected in the second sliding groove, the outer thread surface of the second screw rod is threadedly connected with the middle part of the sliding block, and the rotating handle is fixedly connected with the right end of the second screw rod, so that the function of manually adjusting the left guide position is realized.

[0018] Compared with the prior art, the wire twisting machine for cable processing has the following advantages:

[0019] The structure adopts the screw rod structure and the connecting rod structure to cooperate with each other, so that the tensioning degree of the eight guide rollers is changed to realize the line level adjustment of the wire harness, and the interval of the wire harness before receiving the twisted wire is adjusted by adjusting the interval between the middle guide disc and the right cable guide ring, so that the wire harness and the main wire harness can enter the twisting cage at a relatively appropriate angle, and the wire twisting quality is effectively improved. BRIEF DESCRIPTION OF DRAWINGS

[0020] Figure 1The utility model discloses a structure schematic diagram;

[0021] Figure 2 The utility model discloses a left side structure schematic diagram;

[0022] Figure 3 The utility model discloses a partial structure schematic diagram of the wire twisting guide mechanism;

[0023] Figure 4 The utility model discloses a structure schematic diagram of right side cable guide assembly and left side cable guide assembly;

[0024] Figure 5 The utility model discloses a structure schematic diagram of right side cable guide assembly.

[0025] In the drawing: 1 shell, 2 cable avoiding mouth, 3 wire twisting guide mechanism, 31 turntable, 32 wire inlet cylinder, 33 right side cable guide assembly, 331 middle part guide disc, 332 middle part cable guide mouth, 333 first sliding groove, 334 first screw rod, 335 sliding seat, 336 first connecting rod, 337 right side cable guide ring, 338 right side cable guide mouth, 339 rectangular groove, 34 outer side cylinder, 35 left side cable guide assembly, 351 fixed frame body, 352 second connecting rod, 353 guide roller, 354 movable frame body, 355 third connecting rod, 36 left side drive assembly, 361 second sliding groove, 362 sliding block, 363 second screw rod, 364 steering handle, 37 right side drive assembly, 371 first bevel gear, 372 second bevel gear, 373 twist valve, 38 pointer, 39 indication mark, 4 right side workbench, 5 wire twisting frame, 6 wire cage, 7 wire paying-off disc, 8 current collector ring, 9 wire twisting drive mechanism, 91 motor, 92 drive wheel, 93 drive belt, 94 driven wheel, 10 wire inlet frame, 11 wire inlet roller, 12 controller. DETAILED DESCRIPTION

[0026] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative work fall within the protection scope of the utility model.

[0027] Please refer to Figures 1-5 The embodiment provides a technical scheme: a wire twisting machine for cable processing, which comprises a shell 1 and a wire twisting guide mechanism 3.

[0028] The shell 1 is provided with a right workbench 4 on the right side, the upper side of the right workbench 4 is provided with a hank winding frame 5, the inside of the hank winding frame 5 is provided with a hank cage 6, the left side of the shell 1 is provided with a cable avoiding opening 2, the outside of the hank winding machine is provided with a controller 12, and the input end of the controller 12 is electrically connected with an external power supply;

[0029] The twisting wire guide mechanism 3 comprises a rotating disc 31, a wire inlet cylinder 32, a right cable guide assembly 33 and an outer cylinder 34. The wire inlet cylinder 32 is rotationally connected to the left side wall of the casing 1. The outer arc surface of the wire inlet cylinder 32 is provided with the rotating disc 31. The outer arc surface of the rotating disc 31 is rotationally connected to the right side wall of the casing 1. The right side surface of the rotating disc 31 is provided with the outer cylinder 34. The outer arc surface of the outer cylinder 34 is provided with uniformly distributed round corner avoiding openings. The right cable guide assembly 33 is arranged on the right side of the wire inlet cylinder 32. The right cable guide assembly 33 comprises a middle guide disc 331, middle cable guide openings 332, first sliding grooves 333, first lead screws 334, sliding seats 335, first connecting rods 336, right cable guide rings 337, right cable guide openings 338 and rectangular grooves 339. The middle guide disc 331 is fixedly connected to the right side of the wire inlet cylinder 32. The side wall of the middle guide disc 331 is provided with uniformly distributed middle cable guide openings 332. The right side wall of the middle guide disc 331 is provided with uniformly distributed first sliding grooves 333. The inner parts of the three first sliding grooves 333 are respectively slidingly connected with the sliding seats 335. The inner parts of the three sliding seats 335 are respectively rotationally connected with the first connecting rods 336. The right ends of the three first connecting rods 336 are respectively rotationally connected with the inner parts of the right cable guide rings 337. The side wall of the right cable guide ring 337 is provided with uniformly distributed right cable guide openings 338. The right side wall of the middle guide disc 331 is provided with uniformly distributed rectangular grooves 339. The inner parts of the three first sliding grooves 333 are respectively rotationally connected with the first lead screws 334. The outer threaded surfaces of the three first lead screws 334 are respectively threadedly connected with the middle parts of the sliding seats 335 located in the same first sliding groove 333. The twisting wire guide mechanism 3 further comprises a right drive assembly 37. The right drive assembly 37 comprises first bevel gears 371, second bevel gears 372 and twist valves 373. One end of each of the three first lead screws 334 towards the center of the casing 1 is fixedly connected with a first bevel gear 371. The left side walls of the three rectangular grooves 339 are respectively rotationally connected with second bevel gears 372. The left sides of the three second bevel gears 372 are respectively fixedly connected with twist valves 373. The three first bevel gears 371 are respectively meshingly connected with the second bevel gears 372 located in the same rectangular groove 339. The twisting wire guide mechanism 3 further comprises a left cable guide assembly 35. The left cable guide assembly 35 comprises a fixed frame body 351, second connecting rods 352, guide rollers 353, a moving frame body 354 and third connecting rods 355. The fixed frame body 351 is arranged on the outer arc surface of the right side of the wire inlet cylinder 32. The inner part of the fixed frame body 351 is rotationally connected with uniformly distributed second connecting rods 352. The right ends of the eight second connecting rods 352 are respectively rotationally connected with guide rollers 353. The outer arc surface of the right side of the wire inlet cylinder 32 is slidingly connected with the moving frame body 354. The inner part of the moving frame body 354 is rotationally connected with uniformly distributed third connecting rods 355. The ends of the eight third connecting rods 355 are respectively rotationally connected with the middle parts of the second connecting rods 352 corresponding in transverse position. The twisting wire guide mechanism 3 further comprises a left drive assembly 36.The left drive assembly 36 comprises a second sliding groove 361, a sliding block 362, a second screw rod 363 and a knob 364, the second sliding groove 361 is arranged on the outer arc surface of the inlet cylinder 32, the inner part of the second sliding groove 361 is slidably connected with the sliding block 362, the upper side of the sliding block 362 is fixedly connected with the inner arc surface of the moving frame body 354, the inner part of the second sliding groove 361 is rotatably connected with the second screw rod 363, the outer thread surface of the second screw rod 363 is threadedly connected with the middle part of the sliding block 362, the right end of the second screw rod 363 is fixedly connected with the knob 364, the twisting guide mechanism 3 further comprises a pointer 38 and an indicating mark 39, the pointer 38 is arranged on the left side of the three sliding seats 335, the left side of the middle guiding disc 331 is provided with the indicating mark 39 which is uniformly distributed, the indicating mark 39 corresponds to the position of the pointer 38, the twisting drive mechanism 9 further comprises a motor 91, a drive wheel 92, a drive belt 93 and a driven wheel 94, the motor 91 is arranged on the left lower side of the front side of the machine shell 1, the output shaft of the motor 91 is fixedly connected with the drive wheel 92, the outer arc surface of the inlet cylinder 32 is provided with the driven wheel 94, the drive wheel 92 is drivingly connected with the driven wheel 94 through the drive belt 93, the input end of the motor 91 is electrically connected with the output end of the controller 12, the outer arc surface of the inlet cylinder 32 is fixedly connected with the collector ring 8, the outer ring left side of the collector ring 8 is fixedly connected with the left side wall of the machine shell 1, the outer arc surface of the inlet cylinder 32 is provided with the wire disc 7 which is uniformly distributed, the input end of the eight wire discs 7 is electrically connected with the output end of the collector ring 8, the input end of the collector ring 8 is electrically connected with the output end of the controller 12, the left side of the machine shell 1 is provided with the inlet frame 10, the upper side of the inlet frame 10 is rotatably connected with the inlet roller 11, when the twisting machine is used, the wire disc which needs to be twisted is installed on the wire disc 7 through the cable avoiding port 2, the wire of the wire disc is guided to pass through the rotating disc 31 in turn, then the wire is guided on the guiding roller 353, then the wire passes through the middle cable guiding port 332 and the right cable guiding port 338, then the wire is connected to the inside of the twisting cage 6, at the same time, the main wire bundle is also guided to the inside of the twisting cage 6 through the inlet cylinder 32, and the primary winding operation is manually performed, then the wire bundle which is completed is guided out of the right side of the twisting cage 6, after that, the external wire disc is adjusted and controlled, the main wire bundle is wound, at the same time, the controller 12 is adjusted and controlled, the eight wire discs 7 are operated at the same time, the wire bundle is wound at the same time, the controller 12 is adjusted and controlled, the motor 91 is operated, the output shaft of the motor 91 is rotated, the drive wheel 92 is driven to rotate, the driven wheel 94 is driven to rotate through the drive belt 93, the inlet cylinder 32 is driven to rotate, at this time, the inlet cylinder 32 is rotated with the wire bundle which is wound, the wire bundle which is wound is rotated with the main wire bundle which is wound, the wire bundle which is wound passes through the twisting cage 6 in turn, the wire bundle which is wound is completed in the twisting cage 6, and the wire bundle which is completed is discharged from the right side, it is worth noting that the wire bundle needs to be adjusted and controlled according to the material of the wire bundle,The handle 364 can be manually turned in both directions, which in turn drives the second lead screw 363 to rotate in both directions, thereby causing the slider 362 to move left and right within the second slide groove 361. During this process, the second connecting rod 352 pushes the third connecting rod 355, causing each of the eight third connecting rods 355 to rotate around its left end, thereby driving the guide roller 353 to extend and retract, thus changing the route of the wire harness on the guide roller 353 and achieving the first-level wire harness guidance operation. Before these wire harnesses are about to undergo the stranding operation, the spacing between the branch wire harnesses also needs to be adjusted. At this time, the three torsion valves 373 can be turned in both directions, which in turn drives the first bevel gear 371 to rotate through the second bevel gear 372, thereby driving the first lead screw 334 to rotate, and thus causing the sliding seat 335 to change its left and right position within the first slide groove 333, thereby adjusting the spacing between the right cable guide ring 337 and the middle cable guide opening 332, so that it can enter the inside of the winding cage 6 with a more suitable wire gathering spacing, thus ensuring the quality of the stranding. ,

[0030] The working principle of the wire twisting machine for cable processing is as follows: when the wire twisting machine is used, the wire reels that need to be twisted are installed on the wire releasing disc 7 one by one through the cable avoiding opening 2, the wires of the wire reels are sequentially threaded through the rotating disc 31, and then the wires are guided on the guide rollers 353, and then the wires are threaded through the middle cable guide opening 332 and the right cable guide opening 338, and then connected to the inside of the twisting cage 6, at the same time, the external main wire bundle can be threaded through the wire inlet cylinder 32, and also guided to the inside of the twisting cage 6, and the primary winding operation is manually performed, then the wire bundle that completes the winding is guided out of the right side of the twisting cage 6, after that, the external wire releasing machine can be adjusted and controlled to perform the main wire bundle releasing operation, at the same time, the controller 12 can be adjusted and controlled, the eight wire releasing discs 7 are simultaneously operated, the wire bundle releasing operation is simultaneously performed, the controller 12 needs to be adjusted and controlled, the motor 91 is operated, the output shaft of the motor 91 rotates, and then drives the driving wheel 92 to rotate, and then drives the driven wheel 94 to rotate through the driving belt 93, and then drives the wire inlet cylinder 32 to rotate, at this time, the wire inlet cylinder 32 rotates with the wire bundle releasing for releasing operation, the wire bundle releasing for releasing operation rotates with the main wire bundle releasing operation, sequentially passes through the twisting cage 6, and completes the wire twisting operation in the twisting cage 6, and is discharged from the right side, it is worth noting that the wire bundle path needs to be determined according to the material of the wire bundle, when the wire bundle path needs to be adjusted, the handle 364 can be manually twisted forward and backward, and then the second lead screw 363 is driven to rotate forward and backward, and then the sliding block 362 moves left and right in the second sliding groove 361, and during this period, the third connecting rod 355 is driven by the second connecting rod 352, so that the eight third connecting rods 355 rotate around the left end as the center, and then the guide roller 353 is driven to stretch and contract, and then the wire bundle path on the guide roller 353 is changed, and the wire bundle guiding operation is realized, before these wire bundles are about to be subjected to the wire twisting operation, the distance between the wire bundles also needs to be adjusted, at this time, the three twist valves 373 can be twisted forward and backward, and then the first bevel gear 371 is driven to rotate by the second bevel gear 372, and then the first lead screw 334 is driven to rotate, and then the sliding seat 335 moves left and right in the first sliding groove 333, and then the distance between the right cable guide ring 337 and the middle cable guide opening 332 is adjusted, so that the wire bundle can enter the inside of the twisting cage 6 with a relatively appropriate wire collecting distance, and the quality of the wire twisting is sequentially guaranteed.

[0031] It is worth noting that the controller 12 core chip disclosed in the above embodiment is selected as a PLC single-chip microcomputer, and the specific model is stm32, and the pay-off reel 7, the slip ring 8 and the motor 91 can be freely configured according to the actual application scene, the pay-off reel 7 is recommended to be selected as a DJP330M2 type electric cable reel, the slip ring 8 is recommended to be selected as a JDH225 type slip ring, and the motor 91 is recommended to be selected as a YZP400L-10 220KW type variable frequency motor, and the controller 12 controls the pay-off reel 7, the slip ring 8 and the motor 91 to work by using the method commonly used in the prior art.

[0032] The above description is only an embodiment of the present application, and does not limit the patent range of the present application, and any equivalent structure or equivalent process transformation obtained by using the content of the present application specification and drawings, or direct or indirect application in other related technical fields, are also included in the patent protection range of the present application.

Claims

1. A stranding machine for processing of electric cables, characterized in that: Including shell (1) and twisted wire guide mechanism (3); The shell (1) is provided with a right workbench (4) on the right side, the upper side of the right workbench (4) is provided with a twisted wire rack (5), the inside of the twisted wire rack (5) is provided with a twisted cage (6), and the left side of the shell (1) is provided with a cable avoiding opening (2); The twisted wire guide mechanism (3) comprises a rotating disc (31), a wire inlet cylinder (32), a right cable guide assembly (33) and an outer cylinder (34), the wire inlet cylinder (32) is rotationally connected to the left side wall of the shell (1), the outer arc surface right side of the wire inlet cylinder (32) is provided with the rotating disc (31), the outer arc surface of the rotating disc (31) is rotationally connected with the right side wall of the shell (1), the right side surface of the rotating disc (31) is provided with the outer cylinder (34), the outer arc surface of the outer cylinder (34) is provided with uniformly distributed round corner avoiding openings, and the right cable guide assembly (33) is arranged on the right side of the wire inlet cylinder (32).

2. A stranding machine for processing a cable according to claim 1, characterized in that: The right cable guide assembly (33) comprises a middle guide disc (331), a middle cable guide opening (332), a first sliding groove (333), a first lead screw (334), a sliding seat (335), a first connecting rod (336), a right cable guide ring (337), a right cable guide opening (338) and a rectangular groove (339), the middle guide disc (331) is fixedly connected to the right side of the wire inlet cylinder (32), the side wall of the middle guide disc (331) is provided with uniformly distributed middle cable guide openings (332), the right side wall of the middle guide disc (331) is provided with uniformly distributed first sliding grooves (333), the interiors of the three first sliding grooves (333) are slidably connected with sliding seats (335), the interiors of the three sliding seats (335) are rotationally connected with first connecting rods (336), the right ends of the three first connecting rods (336) are rotationally connected with the interiors of a right cable guide ring (337), the side wall of the right cable guide ring (337) is provided with uniformly distributed right cable guide openings (338), the right side wall of the middle guide disc (331) is provided with uniformly distributed rectangular grooves (339), the interiors of the three first sliding grooves (333) are rotationally connected with first lead screws (334), and the outer threaded surfaces of the three first lead screws (334) are rotationally connected with the middle threaded surfaces of the sliding seats (335) located in the same first sliding groove (333).

3. A cable stranding machine for processing a cable according to claim 2, characterized in that: The twisted wire guide mechanism (3) further comprises a right drive assembly (37), the right drive assembly (37) comprises a first bevel gear (371), a second bevel gear (372) and a twist valve (373), one end of each of the three first lead screws (334) towards the center of the shell (1) is fixedly connected with a first bevel gear (371), the left side walls of the three rectangular grooves (339) are rotationally connected with second bevel gears (372) respectively, the left sides of the three second bevel gears (372) are fixedly connected with twist valves (373) respectively, and the three first bevel gears (371) are meshedly connected with the second bevel gears (372) located in the same rectangular groove (339).

4. The stranding machine for processing cable according to claim 1, characterized in that: The twisting wire guide mechanism (3) further comprises a left cable guide assembly (35), the left cable guide assembly (35) comprises a fixed frame body (351), a second connecting rod (352), a guide roller (353), a moving frame body (354) and a third connecting rod (355), the fixed frame body (351) is arranged on the outer arc surface right side of the wire inlet cylinder (32), the inner part of the fixed frame body (351) is rotatably connected with the second connecting rod (352) which is uniformly distributed, the right end of the eight second connecting rods (352) is rotatably connected with the guide roller (353) respectively, the moving frame body (354) is slidably connected with the outer arc surface right side of the wire inlet cylinder (32), the inner part of the moving frame body (354) is rotatably connected with the third connecting rod (355) which is uniformly distributed, the tail end of the eight third connecting rods (355) is rotatably connected with the middle part of the second connecting rod (352) corresponding to the horizontal position.

5. A cable stranding machine for processing a cable according to claim 4, characterized in that: The twisting wire guide mechanism (3) further comprises a left driving assembly (36), the left driving assembly (36) comprises a second sliding groove (361), a sliding block (362), a second lead screw (363) and a handle (364), the second sliding groove (361) is opened on the outer arc surface right upper side of the wire inlet cylinder (32), the inner part of the second sliding groove (361) is slidably connected with the sliding block (362), the upper side of the sliding block (362) is fixedly connected with the inner arc surface upper side of the moving frame body (354), the inner part of the second sliding groove (361) is rotatably connected with the second lead screw (363), the outer thread surface of the second lead screw (363) is threadedly connected with the middle part of the sliding block (362), the right end of the second lead screw (363) is fixedly connected with the handle (364).

6. A cable stranding machine for processing a cable according to claim 2, characterized in that: The twisting wire guide mechanism (3) further comprises a pointer (38) and an indicating mark (39), the pointer (38) is arranged on the left side of the three sliding seats (335) respectively, the left side of the middle guide disc (331) is provided with the indicating mark (39) which is uniformly distributed, the indicating mark (39) corresponds to the pointer (38) one by one in the left-right position.

7. The stranding machine for processing cable according to claim 1, characterized in that: The controller (12) is arranged outside the twisting wire machine, and the input end of the controller (12) is electrically connected with an external power supply.

8. A cable stranding machine for processing a cable according to claim 7, characterized in that: Further comprising a twisting wire driving mechanism (9), the twisting wire driving mechanism (9) comprises a motor (91), a driving wheel (92), a driving belt (93) and a driven wheel (94), the motor (91) is arranged on the left lower side of the front side of the machine shell (1), the output shaft of the motor (91) is fixedly connected with the driving wheel (92), the outer arc surface left side of the wire inlet cylinder (32) is provided with the driven wheel (94), the driving wheel (92) and the driven wheel (94) are drivingly connected through the driving belt (93), and the input end of the motor (91) is electrically connected with the output end of the controller (12).

9. A stranding machine for processing a cable according to claim 7, characterized in that: The outer arc surface left side of the wire inlet cylinder (32) is fixedly connected with a current collecting ring (8), the outer ring left side of the current collecting ring (8) is fixedly connected with the left side wall of the machine shell (1), the outer arc surface of the wire inlet cylinder (32) is provided with the wire release disc (7) which is uniformly distributed, the input end of the eight wire release discs (7) is electrically connected with the output end of the current collecting ring (8), and the input end of the current collecting ring (8) is electrically connected with the output end of the controller (12).

10. The stranding machine for processing cable according to claim 7, characterized in that: The left side of the machine shell (1) is provided with an incoming line rack (10), and the upper side of the incoming line rack (10) is rotationally connected with an incoming line roller (11).

Citation Information

Patent Citations

  • Wire twister for power cable processing

    CN219180283U