Multi-strand lay rope machine for high breaking force steel wire rope lay

By installing wire rope limiting and stabilizing components and rotation adjustment components on the rope twisting machine, the problem that existing rope twisting machines cannot limit and stabilize wire ropes with different numbers of strands has been solved, thus achieving stable twisting and high-quality production of wire ropes.

CN122190049APending Publication Date: 2026-06-12JIANGSU SHENWANG GRP STEEL CABLE CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
JIANGSU SHENWANG GRP STEEL CABLE CO LTD
Filing Date
2026-04-17
Publication Date
2026-06-12

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Abstract

The application relates to the technical field of rope combining machines, in particular to a multi-strand twisting and combining rope machine for twisting high-breaking-strength steel wire ropes, which comprises a rope combining machine body, a twisting disc is installed on the rope combining machine body, a twisting hole is formed in the twisting disc, and the twisting and forming of the steel wire rope is realized through the twisting hole; a steel wire rope limiting and stabilizing assembly is matched with the steel wire rope to limit the steel wire rope; a rotary adjusting assembly is symmetrical and installed on the twisting disc, the steel wire rope limiting and stabilizing assembly is installed on the rotary adjusting assembly, the rotary adjusting assembly drives the steel wire rope limiting and stabilizing assembly to rotate, the adjustment of the steel wire rope limiting and stabilizing assembly is realized; a rope limiting sleeve is installed on the twisting disc, a twisted and formed part of the steel wire rope passes through the rope limiting sleeve, the inner diameter of the rope limiting sleeve is matched with the diameter of the steel wire rope, so that the steel wire rope can be limited, the jumping of the steel wire rope is reduced, and the production quality is ensured.
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Description

Technical Field

[0001] This invention relates to the field of rope twisting machine technology, specifically to a multi-strand twisting rope twisting machine for twisting high breaking strength steel wire ropes. Background Technology

[0002] During the production of high breaking strength steel wire rope, multiple strands of steel wire need to be twisted together using a twisting and rope-forming machine to form a steel wire rope that meets the requirements. The size of the twisting holes on existing rope-forming machines is fixed and cannot be adjusted. The number of steel wire strands required for steel wire rope production varies depending on the application requirements. This results in steel wire ropes with different numbers of strands having different diameters. When the number of steel wire strands is small, resulting in a smaller steel wire rope diameter, the gap between the steel wire rope and the twisting hole is larger. This causes the steel wire rope to bounce more violently and collide more violently with the twisting hole, which can easily damage the steel wires and thus affect the production quality of the steel wire rope. Summary of the Invention

[0003] The purpose of this invention is to provide a multi-strand twisting and rope-forming machine for twisting high breaking strength steel wire ropes, so as to solve the problem mentioned in the background art that existing rope-forming machines cannot limit and stabilize the twisted steel wire ropes.

[0004] To achieve the above objectives, the present invention provides the following technical solution: A multi-strand twisting and rope-forming machine for twisting high breaking strength steel wire rope includes: a rope-forming machine body, on which a twisting disc is installed, and twisting holes are opened on the twisting disc for twisting and forming steel wire rope through the twisting holes; A wire rope limiting and stabilizing component, which cooperates with the wire rope to limit the movement of the wire rope; The rotating adjustment assembly consists of two components, symmetrically mounted on the twisting disc. The wire rope limiting and stabilizing assembly is mounted on the rotating adjustment assembly. The rotating adjustment assembly drives the wire rope limiting and stabilizing assembly to rotate, thereby adjusting the wire rope limiting and stabilizing assembly. The limiting and stabilizing component locking mechanism is also installed on the rotating adjustment component. The limiting and stabilizing component locking mechanism locks the wire rope limiting and stabilizing component to ensure its stability when limiting the wire rope.

[0005] Furthermore, the wire rope limiting and stabilizing component is a rope limiting sleeve, and when the rope limiting sleeve limits and stabilizes the wire rope, the wire rope passes through the rope limiting sleeve. A movable support plate is fixedly installed on the rope-limiting sleeve.

[0006] Furthermore, the rotation adjustment assembly includes: two rotating sleeves, which are symmetrically and movably mounted on the twisting disc; Release the support rod, which is movably mounted on the swivel bearing sleeve.

[0007] Furthermore, a connecting bracket is fixedly provided on the rotating sleeve, and a cross-shaped support plate is fixedly provided on the connecting bracket. The rope-limiting sleeve is movably installed on the cross-shaped support plate by cooperating with the movable support plate.

[0008] Furthermore, when the rope limiting sleeve limits the wire rope, the two opposing rope limiting sleeves close together; When the rotating bearing sleeve rotates, it drives the rope limiting sleeve to rotate, thereby adjusting the position of different rope limiting sleeves.

[0009] Furthermore, a support base is fixedly installed on the release support rod, and a first support plate is fixedly installed on the support base; A second bearing plate is fixedly mounted on the first bearing plate, and a locking pin is fixedly mounted on the second bearing plate. The rotating bearing sleeve is locked by the cooperation of the locking pin and the twisting disc.

[0010] Furthermore, the limiting and stabilizing component locking mechanism includes: a first movable bar, which is movably mounted on the cross bearing plate bar; The locking support is also movably mounted on the cross support plate, and the locking support is movably connected to the release support rod, which drives the locking support to move.

[0011] Furthermore, the first movable bar is movably connected to the rope-limiting sleeve, and the rope-limiting sleeve moves relative to the cross-shaped support plate bar through the first movable bar.

[0012] Furthermore, the first moving bar cooperates with the locking bracket, and the locking bracket locks the first moving bar, thereby locking the rope limiting sleeve and ensuring the stability of the rope limiting sleeve when limiting the wire rope.

[0013] Furthermore, when the release support rod moves toward the twisting disc, it drives the first moving bar to move, which in turn drives the rope limiting loop to move.

[0014] Compared with the prior art, the beneficial effects of the present invention are: the present invention has a reasonable structural design and strong functionality, and has the following advantages: 1. Install a limiting rope sleeve on the twisting reel. The twisted and shaped part of the wire rope passes through the limiting rope sleeve. The inner diameter of the limiting rope sleeve is adapted to the diameter of the wire rope. This can limit the wire rope, reduce the wire rope's bounce, and ensure its production quality.

[0015] 2. Multiple rope limiting sleeves are installed on the twisting disc. Different rope limiting sleeves restrict different wire ropes. When it is necessary to adjust the rope limiting sleeve, push the release rod to unlock the rotating sleeve. Rotating the rotating sleeve can adjust the rope limiting sleeve. The operation is simple, convenient and quick.

[0016] 3. In addition, pushing the release rod can move the rope limiting sleeve, so that the two rope limiting sleeves in a set are in a more distant position, making it easier to pass the wire rope between the two rope limiting sleeves. After the rope limiting sleeve is adjusted, the release rod can be released, which can realize the automatic locking of the rotating bearing sleeve and the rope limiting sleeve, ensuring the stability of the rope limiting sleeve. Attached Figure Description

[0017] Figure 1 This is an assembly diagram of a rope-making machine.

[0018] Figure 2 This is a schematic diagram of the assembly of the twisting disc.

[0019] Figure 3 This is a schematic diagram of the assembly inside the assembly cavity.

[0020] Figure 4 This is a schematic diagram of the twisting disc structure.

[0021] Figure 5 This is a schematic diagram of the internal structure of the assembly cavity.

[0022] Figure 6 A first-person perspective diagram of the assembly of a rotating bearing.

[0023] Figure 7 A second-view schematic diagram of the rotating bearing assembly.

[0024] Figure 8 This is a first-person view diagram of the engagement between the rotating bearing sleeve and the release bearing rod.

[0025] Figure 9 This is a second-view schematic diagram of the cooperation between the rotating bearing sleeve and the release bearing rod.

[0026] Figure 10 This is a half-sectional schematic diagram of a rotating bearing sleeve.

[0027] Figure 11 A schematic diagram showing the coordination of the limiting rope loop, release support rod, first moving bar, and locking support frame.

[0028] Figure 12 A schematic diagram of the structure for releasing the support rod.

[0029] Figure 13 for Figure 12 A schematic diagram of a local structure.

[0030] Figure 14 A schematic diagram of the cooperation between the first moving bar and the locking bracket.

[0031] In the diagram: 1. Rope-making machine body; 2. Twisting disc; 21. Twisting hole; 22. Assembly cavity; 23. Assembly column; 24. Assembly plate; 25. Locking sleeve; 26. Limiting ring plate; 27. Mounting column; 3. Rope limiting sleeve; 31. Moving support plate; 32. Drive hinge rod; 4. Rotating bearing sleeve; 41. Limiting protrusion; 42. Bearing; 43. Connecting support frame; 44. Cross support plate strip; 45. Movable insertion hole; 46. Moving cavity; 47. Support slide; 48. Support protrusion; 481. Moving... 49. Through hole; 5. Support insertion hole; 6. Release support rod; 7. Support base; 8. Connecting spring; 9. First support plate; 10. Second support plate; 11. Locking pin; 12. Support bar frame; 13. First limit slot; 14. Adjustment slot; 15. Second limit slot; 16. First moving bar; 17. Movable insertion rod; 18. Elastic reset piece; 19. Locking insertion hole; 10. Second moving bar; 11. Connecting frame; 12. Locking support frame; 13. Locking pin; 14. Matching pin block. Detailed Implementation

[0032] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0033] This invention provides a technical solution: like Figure 1 , Figure 2 and Figure 3 As shown, a multi-strand twisting and rope-forming machine for twisting high breaking strength steel wire rope includes: a rope-forming machine body 1, a steel wire rope limiting and stabilizing component, a rotation adjustment component, and a limiting and stabilizing component locking mechanism. A twisting disc 2 is installed on the rope-forming machine body 1, and twisting holes 21 are opened on the twisting disc 2. The steel wire rope is twisted and formed through the twisting holes 21, and the twisting disc 2 is driven to rotate by a motor in the prior art.

[0034] The wire rope limiting and stabilizing component works in conjunction with the wire rope to limit its movement, ensuring the stability of the formed wire rope and preventing it from colliding violently with the strand hole 21, thereby ensuring the production quality of the wire rope.

[0035] There are two rotary adjustment components, symmetrically installed on the twisting disc 2. The wire rope limit and stabilizing component is installed on the rotary adjustment components. The rotary adjustment components drive the wire rope limit and stabilizing component to rotate, thereby adjusting the wire rope limit and stabilizing component. This allows the wire rope limit and stabilizing component to limit wire ropes of different diameters, making it highly adaptable.

[0036] The limit stabilization component locking mechanism is also installed on the rotary adjustment component. The limit stabilization component locking mechanism locks the wire rope limit stabilization component to ensure its stability when limiting the wire rope.

[0037] like Figure 4 and Figure 5 As shown, assembly cavities 22 are symmetrically provided on both sides of the twisting hole 21 on the twisting disc 2. Assembly columns 23 are welded and fixed in the assembly cavities 22. Assembly disc 24 is welded and fixed on the upper end of the assembly column 23. The assembly disc 24 protrudes outside the assembly cavity 22. Locking sleeve 25 is welded and fixed on the end face of the assembly disc 24 near the assembly cavity 22. The inner wall of the locking sleeve 25 is smooth and burr-free. Furthermore, a limiting ring plate 26 is welded and fixed on the end face of the assembly disc 24 away from the assembly cavity 22. The end face of the limiting ring plate 26 near the assembly disc 24 is smooth and burr-free. In addition, a mounting column 27 is welded and fixed on the end face of the assembly disc 24 away from the assembly cavity 22.

[0038] like Figure 6 and Figure 11 As shown, the wire rope limiting and stabilizing component is a wire rope limiting sleeve 3. When the wire rope is limited and stabilized by the wire rope limiting sleeve 3, the wire rope passes through the wire rope limiting sleeve 3. The inner wall of the wire rope limiting sleeve 3 is smooth and burr-free. The inner diameter of the wire rope limiting sleeve 3 matches the diameter of the wire rope. In addition, when the wire rope is limited, the wire rope limiting sleeves 3 facing the twist hole 21 are closed together. The wire rope is limited by the two closed wire rope limiting sleeves 3. A movable support plate 31 is welded and fixed on the wire rope limiting sleeve 3 by welding process. A drive hinge rod 32 is hinged on the movable support plate 31. The surface of the movable support plate 31 is smooth and burr-free.

[0039] like Figure 6 , Figure 7 , Figure 8 , Figure 9 , Figure 10 , Figure 11 , Figure 12 and Figure 13As shown, the rotary adjustment assembly includes a rotary bearing sleeve 4 and a release rod 5. There are two rotary bearing sleeves 4, which are symmetrically and movably installed on the twisting disc 2. Specifically, a bearing 42 is inserted into the inside of the rotary bearing sleeve 4. The bearing 42 is sleeved on the mounting post 27 on the assembly disc 24. The rotary bearing sleeve 4 is movably installed on the mounting post 27 through the cooperation between the bearing 42 and the mounting post 27. In addition, a limiting protrusion 41 is also circumferentially welded and fixed on the rotary bearing sleeve 4 by welding process. The surface of the limiting protrusion 41 is smooth and burr-free. The limiting protrusion 41 is inserted into the lower side of the limiting ring plate 26 and contacts the inner end face of the limiting ring plate 26 and the assembly disc 24. The cooperation between the limiting ring plate 26 and the limiting protrusion 41 limits the rotary bearing sleeve 4, ensuring that it can be stably installed on the mounting post 27.

[0040] A connecting support frame 43 is welded and fixed on the rotating bearing sleeve 4. A cross support strip 44 is welded and fixed on the connecting support frame 43. The rope limiting sleeve 3 is movably installed on the cross support strip 44 through the cooperation of the cross support strip 44 and the movable support plate 31. Specifically, a movable cavity 46 is opened on the cross support strip 44. The inner wall of the movable cavity 46 is smooth and burr-free. Support slides 47 are symmetrically opened on both sides of the inside of the movable cavity 46. The inner wall of the support slides 47 is also smooth and burr-free. The movable support plate 31 is inserted into the support slides 47. The rope limiting sleeve 3 is movably installed on the cross support strip 44 through the cooperation of the support slides 47 and the movable support plate 31. The inner diameter of each rope limiting sleeve 3 on the cross support strip 44 is different so as to accommodate steel wire ropes of different diameters. In addition, the cross support strip 44 can also support multiple rope limiting sleeves 3.

[0041] A support protrusion 48 is welded and fixed on the cross-shaped support plate strip 44 by welding process. A support insertion hole 49 and a movable through hole 481 are provided on the support protrusion 48, and the support insertion hole 49 and the movable through hole 481 are connected. A movable insertion hole 45 is provided at the center of the cross-shaped support plate strip 44.

[0042] The release rod 5 is movably mounted on the rotating bearing sleeve 4. Specifically, the release rod 5 is inserted into the movable insertion hole 45 on the cross bearing plate 44. The cooperation between the release rod 5 and the movable insertion hole 45 plays a role in limiting and guiding the release rod 5, and the cooperation between the two allows the release rod 5 to be movably mounted on the rotating bearing sleeve 4.

[0043] A support base 51 is welded and fixed to one end of the release rod 5 near the twisting disc 2. A first support plate 53 is welded and fixed to the support base 51 around its circumference. The first support plate 53 is inserted into the connecting bracket 43 and contacts the inner wall of the connecting bracket 43. A second support plate 54 is welded and fixed to the first support plate 53. The second support plate 54 is partially inserted into the assembly cavity 22. A locking pin 55 is welded and fixed to the second support plate 54. The surface of the locking pin 55 is smooth and burr-free. When the rotating bearing sleeve 4 is locked by the cooperation of the locking pin 55 and the twisting disc 2, the locking pin 55 is inserted into the locking sleeve 25. The cooperation of the locking pin 55 and the locking sleeve 25 locks the rotating bearing sleeve 4, preventing the rotating bearing sleeve 4 from rotating, thereby preventing the rope limiting sleeve 3 from rotating.

[0044] A connecting spring 52 is sleeved on the release support rod 5. One end of the connecting spring 52 is welded to the cross support plate 44, and the other end is welded to the support base 51. The release support rod 5 can be reset by the connecting spring 52.

[0045] In addition, support strips 56 are welded and fixed on both sides of the second support plate 54 by welding process. First limiting slots 57 are symmetrically opened on the support strips 56. The first limiting slots 57 are connected to the adjustment slots 58, and the adjustment slots 58 are connected to the second limiting slots 59. The internal widths of the first limiting slots 57, the adjustment slots 58, and the second limiting slots 59 are equal, and the inner walls of the three are smooth and burr-free.

[0046] When the rope limiting sleeve 3 limits the wire rope, the two opposite rope limiting sleeves 3 close together and match the diameter of the wire rope. When the rotating bearing sleeve 4 rotates, it drives the rope limiting sleeve 3 to rotate, thereby adjusting the position of different rope limiting sleeves 3 so that the rope limiting sleeve 3 that is compatible with the wire rope faces the twist hole 21.

[0047] like Figure 6 , Figure 11 and Figure 14As shown, the locking mechanism of the limiting and stabilizing component includes: a first moving bar 6 and a locking bracket 7. The first moving bar 6 is movably mounted on the cross bearing plate 44. Specifically, a movable insert rod 61 is symmetrically welded to the first moving bar 6 by welding. The movable insert rod 61 is inserted into the movable through hole 481. The cooperation between the movable insert rod 61 and the movable through hole 481 plays a limiting and guiding role for the movable insert rod 61, thereby limiting the first moving bar 6 so that the movable insert rod 61 can only move along the movable through hole 481. In addition, an elastic reset piece 62 is welded to the first moving bar 6 by welding. The other end of the elastic reset piece 62 is welded to the cross bearing plate 44. The elastic reset piece 62 can realize the reset movement of the first moving bar 6.

[0048] The movable insert rod 61 has a locking hole 63, and a second moving strip 64 is welded and fixed to the lower end of the movable insert rod 61 by welding process. A connecting frame 65 is welded and fixed to the second moving strip 64 by welding process, and the second support plate 54 is inserted into the connecting frame 65.

[0049] The locking bracket 7 is also movably mounted on the cross-shaped support plate 44, and the locking bracket 7 is movably connected to the release rod 5. The release rod 5 drives the locking bracket 7 to move. Specifically, a locking pin 71 is welded and fixed to the locking bracket 7 by welding. The locking pin 71 is inserted into the support socket 49. The cooperation between the locking pin 71 and the support socket 49 provides support and limitation for the locking pin 71, thereby allowing the locking bracket 7 to be movably mounted on the cross-shaped support plate 44. In addition, there is also a passage on the inner side of the locking bracket 7. The mating block 72 is welded and fixed by welding process. The surface of the mating block 72 is smooth and burr-free. When the two rope-limiting sleeves 3 facing the twist hole 21 are closed together, the mating block 72 is inserted into the first limiting slot 57. The surface of the mating block 72 is smooth and burr-free. Through the cooperation between the mating block 72 and the first limiting slot 57, the movable connection between the locking support frame 7 and the release support rod 5 is realized. When the release support rod 5 moves, the locking support frame 7 can be moved by adjusting the cooperation between the slot 58 and the mating block 72.

[0050] The first moving bar 6 is movably connected to the rope-limiting sleeve 3. The rope-limiting sleeve 3 moves relative to the cross support plate 44 via the first moving bar 6. Furthermore, the connecting frame 65 is hinged to the other end of the driving hinge rod 32. The movable connection between the first moving bar 6 and the rope-limiting sleeve 3 is realized through the driving hinge rod 32.

[0051] The first moving bar 6 cooperates with the locking bracket 7 to lock the first moving bar 6, thereby locking the rope limiting sleeve 3 and ensuring the stability of the rope limiting sleeve 3 when limiting the wire rope. Specifically, when the locking bracket 7 locks the first moving bar 6, the locking pin 71 on the locking bracket 7 is inserted into the locking hole 63 on the movable plug rod 61. In this way, the first moving bar 6 can be locked by the cooperation of the locking pin 71 and the locking hole 63, so that the movable plug rod 61 cannot move along the moving through hole 481.

[0052] When the release support rod 5 moves towards the twisting disc 2, the first support plate 53 will come into contact with the first moving bar 6. In this way, the first moving bar 6 can be moved under the action of the first support plate 53, which in turn drives the rope limiting loop 3 to move.

[0053] When twisting the wire rope, the wire rope is passed through the twisting hole 21, and then the release support rod 5 is pushed towards the twisting disc 2. As the release support rod 5 moves, the locking pin 55 will disengage from the locking sleeve 25, thus making the rotating sleeve 4 in the unlocked state.

[0054] During the process of the release support rod 5 moving towards the twisting disc 2, the release support rod 5 will drive the mating block 72 to move under the action of the adjustment slot 58, thereby causing the locking pin 71 on the locking support 7 to exit the locking socket 63. This will allow the first moving bar 6 to be in the unlocked state, and at the same time, the rope limiting sleeve 3 will be in the unlocked state. At this time, the mating block 72 is in the second limiting slot 59.

[0055] Then, with the cooperation of the column block 72 and the second limiting slot 59, it maintains a stable state. As the release support rod 5 continues to move, the first support plate 53 will come into contact with the first moving bar 6. Under the action of the first support plate 53, the first moving bar 6 will be pushed to move. As the first moving bar 6 moves, it will drive the rope limiting sleeve 3 to move under the action of the drive hinge rod 32, thereby allowing the two closed rope limiting sleeves 3 to separate, which makes it convenient for the wire rope to be put into the rope limiting sleeve 3.

[0056] After the wire rope is placed, the release support rod 5 can be released, allowing the release support rod 5 to reset under the action of the connecting spring 52. This, in turn, allows the first moving bar 6 to reset under the action of the elastic reset plate 62. This, in turn, will cause the rope limiting sleeve 3 to reset under the action of the drive hinge rod 32. This will cause the two rope limiting sleeves 3 facing the twist hole 21 to close together, thus effectively limiting the wire rope through the rope limiting sleeves 3 and preventing it from colliding strongly with the twist hole 21 due to excessive gap between them.

[0057] When the two rope limiting sleeves 3 limit the wire rope, the cooperating block 72 is inserted into the first limiting slot 57. In this way, the cooperation between the cooperating block 72 and the first limiting slot 57 can lock the locking bracket 7. At this time, the locking pin 71 is inserted into the locking hole 63. In this way, the cooperation between the locking pin 71 and the locking hole 63 can lock the first moving bar 6, thereby locking the rope limiting sleeve 3 and ensuring the stability of the rope limiting sleeve 3 when limiting the wire rope.

[0058] In addition, when the inner diameter of the wire rope and the rope limiting sleeve 3 do not match, the release support rod 5 is pushed towards the stranding disc 2, causing the locking pin 55 to disengage from the locking sleeve 25. This unlocks the rotating sleeve 4. Then, the release support rod 5 can be rotated to rotate the rotating sleeve 4. As the rotating sleeve 4 rotates, the rope limiting sleeve 3 rotates, thus rotating the rope limiting sleeve 3, which matches the diameter of the wire rope, towards the stranding hole 21. The wire rope can be limited by the matching rope limiting sleeve 3. The operation is simple, convenient, and quick, and it can adapt to the processing of wires of various diameters, making it very practical.

[0059] Once the rope limiting sleeve 3, which is compatible with the diameter of the wire rope, is adjusted, the release support rod 5 can be released. At this time, the connecting spring 52 is under tension and rotation. Under the action of the connecting spring 52, the release support rod 5 can be reset, allowing the locking pin 55 to be inserted into the locking sleeve 25 again. Through the cooperation of the locking pin 55 and the locking sleeve 25, the rotating bearing sleeve 4 can be locked again, preventing the rope limiting sleeve 3 from rotating when limiting the wire rope. In addition, as the release support rod 5 resets, it will also drive the second bearing plate 54 to reset. As the second bearing plate 54 resets, the first bearing plate 53 will also move in the opposite direction to reset. Thus, the first moving bar 6 will also move in the opposite direction to reset under the action of the elastic reset piece 62, until the elastic reset piece 62 returns to its original deformation. At this time, the first moving bar 6 has also completed its reset.

[0060] The locking hole 63 on the movable rod is aligned with the support hole 49. Then, as the second support plate 54 continues to move and reset, the mating block 72 on the locking support 7 will enter the adjustment slot 58. Under the action of the adjustment slot 58, the mating block 72 will move, which in turn will move the locking support 7. As the locking support 7 moves, the locking pin 71 on the locking support 7 will be inserted into the locking hole 63 on the movable rod 61 again. In this way, the engagement of the locking pin 71 and the locking hole 63 can lock the first moving bar 6, which in turn can lock the rope sleeve 3, preventing the rope sleeve 3 from moving along the cross support plate 44. At this time, the mating block 72 is inserted into the first limiting slot 57.

[0061] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A multi-strand twisting and rope-making machine for twisting high breaking strength steel wire ropes, characterized in that: include: The main body of the rope forming machine is equipped with a twisting disc, which has twisting holes for twisting the wire rope. A wire rope limiting and stabilizing component, which cooperates with the wire rope to limit the movement of the wire rope; The rotating adjustment assembly consists of two components, symmetrically mounted on the twisting disc. The wire rope limiting and stabilizing assembly is mounted on the rotating adjustment assembly. The rotating adjustment assembly drives the wire rope limiting and stabilizing assembly to rotate, thereby adjusting the wire rope limiting and stabilizing assembly. The limiting and stabilizing component locking mechanism is also installed on the rotating adjustment component. The limiting and stabilizing component locking mechanism locks the wire rope limiting and stabilizing component to ensure its stability when limiting the wire rope.

2. The multi-strand twisting and rope-making machine for twisting high breaking strength steel wire ropes according to claim 1, characterized in that: The wire rope limiting and stabilizing component is a rope limiting sleeve. When the wire rope is limited and stabilized, the wire rope passes through the rope limiting sleeve. A movable support plate is fixedly installed on the rope-limiting sleeve.

3. The multi-strand twisting and rope-making machine for twisting high breaking strength steel wire ropes according to claim 2, characterized in that: The rotation adjustment assembly includes: two rotating sleeves, which are symmetrically and movably mounted on the twisting disc; Release the support rod, which is movably mounted on the swivel bearing sleeve.

4. The multi-strand twisting and rope-making machine for twisting high breaking strength steel wire ropes according to claim 3, characterized in that: A connecting bracket is fixedly installed on the rotating sleeve, and a cross-shaped support plate is fixedly installed on the connecting bracket. The rope-limiting sleeve is movably installed on the cross-shaped support plate by cooperating with the movable support plate.

5. The multi-strand twisting and rope-making machine for twisting high breaking strength steel wire rope according to claim 4, characterized in that: When the rope limiting sleeve limits the wire rope, the two opposing rope limiting sleeves close together. When the rotating bearing sleeve rotates, it drives the rope limiting sleeve to rotate, thereby adjusting the position of different rope limiting sleeves.

6. The multi-strand twisting and rope-making machine for twisting high breaking strength steel wire rope according to claim 5, characterized in that: A support base is fixedly installed on the release support rod, and a first support plate is fixedly installed on the support base; A second bearing plate is fixedly mounted on the first bearing plate, and a locking pin is fixedly mounted on the second bearing plate. The rotating bearing sleeve is locked by the cooperation of the locking pin and the twisting disc.

7. The multi-strand twisting and rope-making machine for twisting high breaking strength steel wire ropes according to claim 6, characterized in that: The limiting and stabilizing component locking mechanism includes: a first movable bar, which is movably mounted on the cross bearing plate bar; The locking support is also movably mounted on the cross support plate, and the locking support is movably connected to the release support rod, which drives the locking support to move.

8. The multi-strand twisting and rope-making machine for twisting high breaking strength steel wire rope according to claim 7, characterized in that: The first movable bar is movably connected to the rope limiting sleeve, and the rope limiting sleeve moves relative to the cross support plate bar through the first movable bar.

9. The multi-strand twisting and rope-making machine for twisting high breaking strength steel wire ropes according to claim 8, characterized in that: The first moving bar cooperates with the locking bracket, and the locking bracket locks the first moving bar, thereby locking the rope limiting sleeve and ensuring the stability of the rope limiting sleeve when limiting the wire rope.

10. The multi-strand twisting and rope-making machine for twisting high breaking strength steel wire ropes according to claim 9, characterized in that: When the release support rod moves toward the twisting disc, it drives the first moving bar to move, which in turn drives the rope limiting loop to move.