Ultra-high molecular weight polyethylene cable

By embedding a stainless steel ferrule inside an integrally formed collar at the end of the rope, and by using an adjustment structure and a protective sleeve to achieve detachable installation of the stainless steel ferrule, the problem of complex installation and irreplaceable rubber sleeve at the collar part is solved, thereby improving processing efficiency and service life.

CN224047790UActive Publication Date: 2026-03-27ZHEJIANG BEIYUE ROPE IND CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-20
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

In existing technologies, the rubber sleeves of the collar are complicated to install on the cable and cannot be replaced, which affects processing efficiency and service life.

Method used

The rope end collar is made of one piece and has an embedded stainless steel heart ring. The stainless steel heart ring can be detached and installed by adjusting the structure and the sheath, which simplifies the processing and makes it easy to replace.

Benefits of technology

It enables convenient installation and replacement of stainless steel heart-shaped rings, reduces processing complexity, and increases service life.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of mooring ropes, in particular to an ultra-high molecular weight polyethylene mooring rope which comprises a rope formed by weaving a plurality of strands of ropes, a lantern ring is integrally formed at the end of the rope, and a stainless steel heart-shaped ring is arranged on the lantern ring in a sleeving mode. The number of the braided ropes of the lantern ring is half of that of the braided ropes of the rope; an adjusting structure used for adjusting the size of the lantern ring is arranged at the end of the rope. The purposes of reducing the machining cost and facilitating replacement of the protective sleeve are achieved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of cables, in particular to an ultra-high molecular weight polyethylene cable. BACKGROUND

[0002] The ultra-high molecular weight polyethylene cable is a fiber rope made of high-strength, high-modulus and high-molecular fiber material, which has excellent tensile strength, impact resistance, wear resistance and flexibility, and is widely used in marine cables, winch cables, outdoor cables and other fields.

[0003] In actual application, the end of part of the winch cable and the outdoor cable is provided with a thimble to facilitate the user to connect and operate. However, the thimble part is easy to be rubbed and worn in the use process, which affects the service life and safety performance of the cable. In order to solve this problem, a protective sleeve is usually installed in the thimble in the prior art, such as the tool safety rope disclosed in the authorized announcement No. CN207469798U, the high-strength wear-resistant rock climbing mountaineering rope disclosed in the authorized announcement No. CN217149693U, etc., which all adopt the technical scheme of setting rubber sheath on the thimble part.

[0004] However, since the rubber sheath is sleeved on the cable, it needs to be sleeved on the cable first in the generation process, and then the cable is processed. Therefore, not only the processing is complex, but also the rubber sheath cannot be replaced after being damaged. CONTENT OF THE UTILITY MODEL

[0005] In order to reduce the processing cost and facilitate the replacement of the protective sleeve, the present application provides an ultra-high molecular weight polyethylene cable.

[0006] The ultra-high molecular weight polyethylene cable provided by the present application adopts the following technical scheme:

[0007] An ultra-high molecular weight polyethylene cable, comprising a rope made of a plurality of strands, an end of the rope being integrally formed with a thimble, a stainless steel grommet being sleeved on the thimble, the number of braided ropes of the thimble being half of the number of braided ropes of the rope; the end of the rope being provided with an adjusting structure for adjusting the size of the thimble.

[0008] In one of the embodiments, the adjusting structure comprises a penetrating segment connected with one end of the thimble, and an adjusting segment connected with the other end of the thimble, the penetrating segment being provided with a through hole for the adjusting segment to penetrate at the end connected with the thimble, and the other end of the penetrating segment and the adjusting segment being connected with the rope.

[0009] In one of the embodiments, the through hole and the adjusting segment are in interference fit to form a damping arrangement.

[0010] In one of the embodiments, the adjusting structure is sleeved with a sheath for limiting the adjusting segment to move on the through hole.

[0011] In one of the embodiments, the sheath is in interference fit with the adjusting structure.

[0012] In one of the embodiments, the sheath is formed by bonding two sides of a rectangular material.

[0013] In one of the embodiments, the sheath extends to the rope from one end of the sleeve ring.

[0014] In one of the embodiments, the cross section of the stainless steel grommet is in arc shape, and the opening of the arc shape is arranged to face away from the center of the stainless steel grommet.

[0015] In one of the embodiments, the intermediate portion between the two ends of the stainless steel grommet is provided with a contact portion, which is in circular arc shape and the inner side of which is in planar cross section.

[0016] In one of the embodiments, the inner side of each of the two ends of the stainless steel grommet is provided with an avoiding opening.

[0017] In summary, the present application has the following beneficial effects:

[0018] Through the cooperation of the adjusting structure and the stainless steel grommet, the stainless steel grommet does not need to be installed during the processing of the cable, but can be installed later, so that the stainless steel grommet can be freely replaced. BRIEF DESCRIPTION OF DRAWINGS

[0019] Figure 1 is a structural schematic diagram of the present embodiment;

[0020] Figure 2 is a structural schematic diagram of the sleeve ring, the adjusting structure and the rope in the present embodiment;

[0021] Figure 3 is a structural schematic diagram of the rope and the sheath in the present embodiment;

[0022] Figure 4 is a structural schematic diagram of the stainless steel grommet in the present embodiment.

[0023] In the drawings, 100, rope; 200, sleeve ring; 300, stainless steel grommet; 310, contact portion; 320, avoiding opening; 400, adjusting structure; 410, through hole; 411, through hole; 420, adjusting segment; 500, sheath. DETAILED DESCRIPTION

[0024] The present application will be further described in detail below with reference to the drawings.

[0025] In the description of the present application, it should be understood that the terms "upper", "lower", "left", "right", etc. indicate the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application.

[0026] An ultra-high molecular weight polyethylene cable, as shown in Figure 1 and Figure 3 includes a rope 100 woven by a plurality of strands, and the number of strands woven to form the rope 100 is determined according to different use scenarios.

[0027] The end of the rope 100 is integrally formed with a thimble 200, and a stainless steel thimble 300 is sleeved on the thimble 200, and the stainless steel thimble 300 is located on the inner side of the thimble 200.

[0028] As shown in Figure 4 , the cross section of the stainless steel thimble 300 is arc-shaped, and the opening of the arc-shaped is arranged away from the center of the stainless steel thimble 300. The thimble 200 is arranged around the arc-shaped opening of the stainless steel thimble 300 to fix it on the thimble 200.

[0029] The middle part between the two ends of the stainless steel thimble 300 is provided with a contact part 310, which is arc-shaped and has a planar cross section on the inner side. The planar structure formed by the contact part 310 makes the thimble 200 not easy to rotate in the arc-shaped opening, thereby improving the appearance and making the stainless steel thimble 300 not easy to come out of the thimble 200.

[0030] In addition, the inner side of the two ends of the stainless steel thimble 300 is provided with a avoiding port 320, which is triangular in structure. The avoiding port 320 allows the two ends of the thimble 200 to smoothly intersect, and at the same time makes the stainless steel thimble 300 more stable in installation.

[0031] As shown in Figure 2 , the end of the rope 100 is provided with an adjusting structure 400 for adjusting the size of the thimble 200, and the adjusting structure 400 includes a penetrating section 410 connected with one end of the thimble 200, and an adjusting section 420 connected with the other end of the thimble 200. The end of the penetrating section 410 connected with the thimble 200 is provided with a perforation 411 for the adjusting section 420 to penetrate, and the other end of the penetrating section 410 and the adjusting section 420 is connected with the rope 100.

[0032] Wherein, when the ring 200 is pulled to pull the threading section 410 out of the through hole 411, the length of the threading section 410 is smaller than the length of the adjusting section 420, the size of the ring 200 is increased, so that the stainless steel grommet 300 can be installed and removed. Conversely, when the threading section 410 and the adjusting section 420 are pulled to be the same length, the ring 200 is smaller and the stainless steel grommet 300 is fixed.

[0033] Wherein, the number of braided ropes of the ring 200, the threading section 410 and the adjusting section 420 is the same, and is half of the number of braided ropes of the rope 100, and the ends of the threading section 410 and the adjusting section 420 are braided with each other to form the rope 100.

[0034] In order to make the adjusting section 420 move in the threading section 410 without human operation, the through hole 411 is provided with an interference fit with the adjusting section 420 in the embodiment to form a damping arrangement.

[0035] And, a sheath 500 for limiting the movement of the adjusting section 420 in the through hole 411 is sleeved on the adjusting structure 400, the sheath 500 is interference fit with the adjusting structure 400, and the end of the sheath 500 away from the ring 200 extends to the rope 100 to improve the damping of the sheath 500, so that it is not easy to be slid. After the stainless steel grommet 300 is fixed and installed on the ring 200, the sheath 500 covers the adjusting structure 400, so that the adjusting structure 400 cannot be adjusted, thereby further ensuring the installation stability of the stainless steel grommet 300.

[0036] Wherein, the sheath 500 can be integrally woven, or integrally processed by rubber, or formed by bonding rectangular materials on both sides. Wherein, when formed by bonding, it is preferred to use woven materials, and the bonding structure is a magic tape.

[0037] The embodiments of the specific implementation are the preferred embodiments of the application, and are not limited to the protection scope of the application, so that: any equivalent changes made according to the structure, shape, principle of the application should be covered within the protection scope of the application.

Claims

1. An ultra-high molecular weight polyethylene cable, characterized by: The application relates to a rope (100) composed of a plurality of braided ropes, the end of the rope (100) is integrally formed with a thimble (200), a stainless steel thimble ring (300) is sleeved on the thimble (200), the number of braided ropes of the thimble (200) is half of that of the rope (100); the end of the rope (100) is provided with an adjusting structure (400) for adjusting the size of the thimble (200). The adjusting structure (400) comprises a penetrating section (410) connected with one end of the thimble (200) and an adjusting section (420) connected with the other end of the thimble (200), one end of the penetrating section (410) connected with the thimble (200) is provided with a perforation (411) for the penetrating of the adjusting section (420), the other end of the penetrating section (410) and the adjusting section (420) is connected with the rope (100).

2. The ultra-high molecular weight polyethylene cable of claim 1, characterized by: The perforation (411) and the adjusting section (420) are in interference fit to form a damping setting.

3. The UHMW-PE cable of claim 2, characterized by: A sheath (500) is sleeved on the adjusting structure (400) for limiting the movement of the adjusting section (420) on the perforation (411).

4. The UHMW-PE cable of claim 3, characterized by: The sheath (500) and the adjusting structure (400) are in interference fit.

5. The ultra-high molecular weight polyethylene cable of claim 4, characterized by: The sheath (500) is formed by bonding two sides of a rectangular material.

6. The UHMW-PE cable of claim 5, characterized by: The end of the sheath (500) away from the thimble (200) extends to the rope (100).

7. The UHMW-PE cable of claim 1, characterized by: The cross section of the stainless steel thimble ring (300) is arc-shaped, and the opening of the arc-shaped is arranged to face away from the center of the stainless steel thimble ring (300).

8. The UHMW-PE cable of claim 7, characterized by: The middle part between the two ends of the stainless steel thimble ring (300) is provided with a contact part (310), the contact part (310) is arc-shaped, and the inner side of the cross section is arranged in a plane.

9. The UHMW-PE cable of claim 7 or 8, characterized by: The inner side of the two ends of the stainless steel thimble ring (300) is provided with an avoiding opening (320).

Citation Information

Patent Citations

  • Instrument safety rope

    CN207469798U

  • High-strength wear-resistant rock-climbing mountaineering rope

    CN217149693U