Home > Electrical & Electronics > Optical Fiber, Cable & Wire > Cable Tools > Two-Head Steel Wire Mesh Cable Pulling Grip (50–63 mm), Galvanized Steel Grip & Changyun Tech High-Strength Cable Pulling Sock

Two-Head Steel Wire Mesh Cable Pulling Grip (50–63 mm), Galvanized Steel Grip & Changyun Tech High-Strength Cable Pulling Sock

Two-Head Steel Wire Mesh Cable Pulling Grip (50–63 mm), Galvanized Steel Grip & Changyun Tech High-Strength Cable Pulling Sock photo-1
Two-Head Steel Wire Mesh Cable Pulling Grip (50–63 mm), Galvanized Steel Grip & Changyun Tech High-Strength Cable Pulling Sock photo-2
Two-Head Steel Wire Mesh Cable Pulling Grip (50–63 mm), Galvanized Steel Grip & Changyun Tech High-Strength Cable Pulling Sock photo-3
Two-Head Steel Wire Mesh Cable Pulling Grip (50–63 mm), Galvanized Steel Grip & Changyun Tech High-Strength Cable Pulling Sock photo-4
US$ 20 - 100 MOQ: 1 Combo
Key Specifications
Get Latest Price
Type:
Other, Cable Pulling Sock
Certification:
CE, ISO
Feature:
Moistureproof, Insulation
Payment & Shipping
Payment Methods:
Port of Shipment:
Tianjin/shanghai/qingdao/shenzhen/shanghai
Delivery Detail:
3 days
Type Other, Cable Pulling Sock
Certification CE, ISO
Feature Moistureproof, Insulation
Condition New
Customized Customized
Color Silver-white
weight 4kg
Transport Package Wooden box packaging
Specification 50-63mm
Trademark Changyun Technology
Origin China

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Cable sock, also known as a pulling sock or conductor sock, is a specialized traction tool installed at the end of a cable. It is woven from high-strength steel wire rope or stainless steel wire into a sock-like structure that tightens further under tension, thereby firmly gripping the cable and enabling safe pulling.


🔧 Structure and Principle


• Material: Typically woven from double-layer galvanized or stainless steel high-strength steel wire rope, with an openable sock mouth for easy insertion of the cable.  


• Structure: One or both ends are pressed into rings, double ears, or other connection loops for attaching the pulling rope or pulling equipment.  


• Principle: Relies on the radial elasticity of the mesh structure; when force is applied, it automatically contracts and tightens around the cable, providing reliable pulling force and anti-slip capability.



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🎯 Main Applications


1. Power Line Stringing: Used in overhead line construction to pull ACSR (aluminum conductor steel reinforced), insulated conductors, ground wires, etc.  

2. Communication Installation: Used to pull optical fibers, optical cables, and other communication lines, and can smoothly pass through stringing blocks.  

3. Equipment Maintenance: Used for replacing and laying cables inside power plants and substations.  

4. Special Applications: As a hanging net or protective sleeve for suspending or protecting streetlight feeder cables, drainage pump cables, high-pressure oil pipes, etc., preventing wear and excessive stress.



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✨ Key Features


• High Safety: Made of high-strength steel wire rope with breaking loads reaching tens of tons, far exceeding ordinary hemp ropes or iron wires.  


• Strong Anti-Slip: The mesh structure automatically tightens under force, effectively preventing slippage.  


• Cable Protection: The contact surface is relatively soft, significantly reducing damage to the cable’s outer sheath compared to direct pulling with steel wire rope.  


• Easy Operation: Light weight, good radial flexibility, easy to install and remove, and reusable.  


• Strong Adaptability: Can smoothly pass through various pulleys and curved conduits, suitable for medium- and short-distance pulling operations.


📏 How to Select


1. Match Cable Diameter: Choose based on the outer diameter of the cable or optical cable. Sock specifications usually cover a range (e.g., 38–60 mm); ensure the cable’s outer diameter falls within this range—too large causes slipping, too small prevents proper fitting or damages the cable.  

2. Match Pulling Force: Select according to the maximum pulling force required. Ensure the sock’s rated breaking load is much greater than the maximum pulling force during construction, leaving sufficient safety margin.  

3. Match Usage Environment:  

   • Outdoor/Moist Environments: Prefer stainless steel material for corrosion resistance.  


   • Long-Term Submersion: Must use all-stainless steel socks.  


   • Special Media: For protecting high-pressure oil pipes, use dedicated oil pipe socks.


📝 Usage Methods


1. Traction End Installation (Standard Method)


   1. Inspection: Confirm the sock specification matches the cable and check for broken wires, rust, or other defects.  

   2. Insertion: Place one end of the cable into the sock through the open mouth, ensuring the sock covers the section of cable that will bear the load.  

   3. Connection: Connect the pulling rope or pulling equipment to the connection loop at the sock’s end.  

   4. Pre-Tightening: Gently pull the rope to initially tighten the sock and confirm correct positioning.  

   5. Pulling: During pulling, keep the cable, sock, and pulling rope as straight as possible; avoid sudden stops, rapid acceleration, or lateral forces.


2. Semi-Open Sock Installation (Wrap Method)


   1. Wrapping: Wrap the semi-open sock around the cable like a piece of cloth.  

   2. Threading: Pull the pulling rope out from one end of the sock, then thread it in and out sequentially across the sock like tying shoelaces, gradually tightening it.  

   3. Fixing: After the rope exits, wrap the remaining rope around the cable tail several times and tie a knot to secure it.  

   4. Completion: Keep the mesh even while tightening to ensure uniform force distribution.


3. Steel Wire Rope Connection Method


   1. Insertion: Insert the two steel wire ropes to be connected into opposite ends of the hollow sock.  

   2. Pulling: Through pulling, the sock contracts and tightly clamps the steel wire ropes, achieving flexible connection.  

   3. Removal: Push the sock in reverse to easily disassemble it for reuse.


⚠️ Safety Precautions


• No Overloading: Ensure the pulling force remains within the sock’s rated load capacity; overloading is strictly prohibited.  


• Condition Check: Before each use, inspect the sock for damage; immediately discard if broken wires, severe rust, or cracks at crimp joints are found.  


• Standard Operation: During pulling, personnel must not stay or walk under the pulling rope or cable.  


• Avoid Damage: Prevent the sock from rubbing against sharp objects to avoid damaging the cable’s outer sheath.  


• Environmental Adaptation: In moist or corrosive environments, select socks with appropriate protection levels (e.g., stainless steel).  


• Professional Construction: For high-voltage, large-section cables, or complex environments, work should be carried out by professionals with a specific plan.



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Product Description 


Maximize safety and efficiency in cable installation with our professional-grade cable handling toolkit, combining robust materials, precise engineering, and versatile designs for construction, electrical, mining, and utility projects worldwide.


Two‑Head Steel Wire Mesh Cable Pulling Grip (50–63 mm)


Crafted from a braided steel wire mesh in metallic gray, this dual‑head grip securely handles cables with an outer diameter of 50–63 mm. The U‑shaped main body features two metal loops at one end for reliable attachment points.


  • Outer circumference: 27 cm

  • Total length: 143 cm

  • Manual measurement tolerance: ±5%

    Compatible cable types and cross‑sections:

    • 2‑core: 180–300 mm²

    • 3‑core: 180–300 mm² / 185–240 mm²

    • 4‑core: 150–185 mm²

    • 5‑core: 120–150 mm²

    • 3‑core high‑voltage 10 kV: 25–50 mm²

      Ideal for secure and efficient cable pulling across diverse cable configurations.


High‑Strength Galvanized Steel Cable Pulling Grip


Engineered for maximum reliability, this grip is made from high‑strength galvanized steel using a three‑strand steel wire weaving dense mesh eyes design. The upgraded aluminum protective piece at the top locks the cable head firmly, preventing slippage. The imported press machine component provides strong resistance to pressure and tension, automatically tightening when force is applied. The thicker pull ring, made of multi‑strand steel wire, ensures a powerful pulling force for heavy‑duty rigging tasks.


Changyun Tech High‑Strength Cable Pulling Sock


Constructed from a metallic mesh material, this sock is lightweight yet firm, with wear‑resistant, tensile‑resistant, and strong toughness properties. Two loops at one end allow quick, secure attachment.

Key features (highlighted in blue text):

  • Lightweight and firm

  • Wear‑resistant and tensile‑resistant

  • Strong toughness

    Additional callouts in red: Support customization and Complete specifications.

    Designed for high‑strength applications in cable‑related projects, ensuring safe, damage‑free handling in harsh environments.


Durable Braided Wire Rope Grips – Style Selection


Featuring a braided wire mesh structure that tapers toward the end, each grip includes a metal thimble at the tip for added durability and protection. Designed for applications requiring a tight and reliable hold on cables or ropes. Background is plain white to emphasize clarity. As part of a range offering style selection, these grips meet different usage and construction needs, making them suitable for various site conditions and cable diameters.


All products are engineered for global industrial use, delivering secure grip, abrasion protection, and customizable options trusted by professionals in electrical, construction, and offshore sectors.


Product Tags: Steel Wire Mesh Cable Pulling Grip , Galvanized Steel Grip , Cable Pulling Sock

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Gold Verified Supplier
1Yr
Verified Business License
Business Type
Manufacturer
Year Established
2014
Factory Size
5,000-10,000 square meters
Annual Export Value
US$1.5 Million - US$2.5 Million

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