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High-Strength Plastic Eyebolt

This high-strength plastic eyebolt is designed for wiring, cable guidance, and light-duty fastening applications. The eye can serve as a routing ring, allowing cable bundles or wires to pass through and be guided securely. The threaded end can be fastened to a base to form a reliable anchoring and support point.
This series can be used together with cable ties or cable management solutions to keep wiring neatly arranged and to reduce cable displacement and wear in vibrating equipment or long-term operating environments.
 

High-Strength Plastic Eyebolt | Engineering Plastic Fastener for Cable Bundling, Wire Guiding, and Insulated Fixing

This high-strength plastic eyebolt is designed for wiring, cable guidance, and light-duty fastening applications. The eye can serve as a routing ring, allowing cable bundles or wires to pass through and be guided securely; the threaded end can be fastened to a base to form a reliable anchoring and support point.
Made from glass-fiber-reinforced nylon engineering plastic, this product offers good rigidity, mechanical strength, electrical insulation, and corrosion resistance. Compared with metal parts, plastic eyebolts help reduce weight and lower the risks of electrical conductivity, rust, and damage to cable insulation caused by metal contact.
This series can be used together with cable ties or cable management solutions to keep wiring neatly arranged and to reduce cable displacement and wear in vibrating equipment or long-term operating environments.

Anchor & Guide Design Cable Management / Wire Fixing Electrical Insulation / Corrosion Resistance Engineering Plastic Fastener Manufacturer / Supplier

Advantages and Typical Applications of High-Strength Plastic Eyebolts

Anchor & Guide design, combining cable management, positioning support, electrical insulation, and corrosion resistance. Suitable for electrical equipment, communication wiring, industrial equipment, and lightweight metal-replacement applications.

  • *Anchor & Guide design
  • Combines wire guiding, positioning, and fastening functions.
  • *Engineering plastic material
  • Provides electrical insulation, corrosion resistance, and lightweight advantages.
  • *Glass-fiber-reinforced structure
  • Enhances rigidity and mechanical strength, making it suitable for industrial equipment applications.
  • *Reduced cable wear
  • The smooth eye design helps reduce friction between the cable bundle and the fixing point.

Compared with metal parts, plastic eyebolts help reduce weight and lower the risks of electrical conductivity, rust, and damage to cable insulation caused by metal contact. They are especially suitable for electrical equipment, communication devices, industrial control equipment, and lightweight metal-replacement applications.

Common Material Selection Scenarios: Cable Management, Insulated Fixing, and Metal Replacement

Applications

•    Cable bundle fixing and routing in electrical equipment
•    Cable management for communication and network wiring
•    Internal wiring and light-duty fixing in industrial equipment
•    Fastening locations requiring electrical insulation, corrosion resistance, or metal replacement
•    Cable positioning and support in equipment exposed to vibration

※ Actual material selection should be evaluated based on product structure, thread specification, mounting substrate, load condition, ambient temperature, and electrical insulation requirements.

Plastic Eyebolt Material Selection Guide | PA+GF and RENY Application Overview

Material selection: choose the appropriate engineering plastic material according to equipment environment, cable fixing requirements, strength requirements, and insulation needs.

PA+GF | Glass-fiber-reinforced nylon with high rigidity and cost advantages

PA+GF provides good rigidity, mechanical strength, electrical insulation, and corrosion resistance. It is suitable for general wiring, cable bundling, light-duty fixing, and industrial applications requiring insulation.

When used for plastic eyebolts, PA+GF provides stable anchoring support and wire guiding functions, making it suitable for electrical equipment, communication wiring management, and internal wiring in industrial equipment.

RENY | High-performance nylon with high strength, low moisture absorption, and good dimensional stability

RENY offers high strength, low moisture absorption, and good dimensional stability. It is suitable for precision assembly, higher-strength requirements, humid or high-temperature environments, or applications requiring higher dielectric stability.

When used for plastic eyebolts, RENY can provide stable fixing, wire support, and long-term dimensional reliability in more demanding industrial environments, making it suitable as a metal-replacement solution.

Looking for more information about high-strength plastic eyebolt dimensions, materials, custom specifications, or engineering plastic fastener manufacturing and supply?

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Eyebolt Specifications / Dimensions / Features

The table below lists the available Eyebolt specifications, dimensions, material options, tensile strength, tightening torque, recommended cable diameter, and product features. Custom specifications are available upon request.

SPEC Eyebolt Size Material Tensile Strength (N) Torque (kg-cm) Cable Dia. (Suggestion) Features
M8 Eye Inner Diameter: 16 mm
Total Length: 82 mm (ref.)
PA+GF 5,200 10.2 10–12 mm Suitable for larger power cable bundles requiring a wider cable routing space.
M8 Eye Inner Diameter: 16 mm
Total Length: 82 mm (ref.)
RENY 4,800 13.4 10–12 mm Ideal for heavy-duty cable bundles requiring higher mechanical strength.
1/4-20 UNC Eye Inner Diameter: 0.5 in.
(12.7 mm)
Total Length: 76 mm (ref.)
PA+GF 3,800 4.3 7–9 mm Designed for general cable management and routing applications.
1/4-20 UNC Eye Inner Diameter: 0.5 in.
(12.7 mm)
Total Length: 76 mm (ref.)
RENY 3,400 6.4 7–9 mm Provides higher strength for secure cable fastening and routing.

Note: The above values are based on laboratory test results and product specifications. Actual performance may vary depending on the application environment.

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