Conductive Flame Retardant Nylon Compound

Conductive Flame Retardant Nylon Compound
Details:
Conductive Flame Retardant Nylon Compound is a functional engineering plastic based on reinforced PA6. The typical grade is PA 134ACF FR.

Material / Typical Grade: Conductive Flame Retardant Reinforced PA6, PA 134ACF FR
Molding Shrinkage: 0.30%–0.40%
Tensile Strength at Break: 153 MPa
Flame / Heat Performance: UL-94 V-0; Heat Deflection Temperature 250°C
Surface Resistance: 10³Ω
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Description
Technical Parameters

Conductivity, Flame Resistance and Reinforcement in One PA6 Grade

 

Conductive Flame Retardant Nylon Compound is a functional engineering plastic based on reinforced PA6. The typical grade is PA 134ACF FR.

 

The material combines electrical conductivity, flame-retardant performance, and mechanical reinforcement within one material system. It reaches a UL-94 V-0 flame-retardant rating while also providing high mechanical strength.

 

Applications listed in the product information include automotive, electronics, electrical equipment, and medical-device-related components. Typical molded parts include conductive insulating sheets and mining nylon ground rollers.

 

Material selection can be adjusted according to the required electrical function, structural load, and injection molding conditions of the finished component.

 

Defined Electrical and Thermal Performance

 

PA 134ACF FR has a typical density of 1.39 g/cm³ and a molding shrinkage range of 0.30%–0.40%.

 

Its tensile strength at break is 153 MPa, flexural strength is 189 MPa, and flexural modulus reaches 8650 MPa. The notched Izod impact strength is 14 kJ/m².

 

Under a load of 1.82 MPa, the heat deflection temperature is 250°C. The material reaches UL-94 V-0.

 

Its surface resistance is 10³Ω according to IEC 60093 as stated in the supplied product data.

 

This combination allows Conductive Flame Retardant Nylon Compound to provide conductivity together with high rigidity, flame resistance, and elevated-temperature structural performance.

 

Purchasing Should Start with the Required Electrical Function

 

The main difference between this material and ordinary reinforced nylon is that it can provide a conductive path while maintaining flame resistance and mechanical support.

 

For electronic and electrical structural parts, buyers should define the target surface resistance, part wall thickness, flame-retardant requirement, and operating temperature.

 

For automotive or mining components, load, friction, assembly, and environmental conditions should also be considered.

 

For medical-device-related components, the available information only identifies this as an application field. Specific material requirements should therefore be confirmed according to the actual use and project requirements rather than assumed from the material name.

 

Before volume purchasing, it is useful to confirm the exact grade, 10³Ω surface resistance, V-0 rating, heat deflection temperature, and molding shrinkage.

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Functional Material Development and Quality Control

 

Diyou New Material develops modified materials based on PA, PC, PP, PPS, and TPE, including conductive, antistatic, flame-retardant, and reinforced material systems.

 

For conductive flame-retardant reinforced PA6, the company can use formulation design, process optimization, and performance testing to evaluate conductivity, flame-retardant performance, and mechanical properties together.

 

Technical support can cover material selection and injection molding applications.

 

Production and quality teams manage raw material receiving, manufacturing processes, inspection, and finished-product release under an ISO 9001 quality management system. This provides a traceable quality-control basis for customized requirements, batch purchasing, and later technical communication involving Conductive Flame Retardant Nylon Compound.

 

Product Specifications

 

Parameter

Specification

Material / Typical Grade

Conductive Flame Retardant Reinforced PA6, PA 134ACF FR

Molding Shrinkage

0.30%–0.40%

Tensile Strength at Break

153 MPa

Flame / Heat Performance

UL-94 V-0; Heat Deflection Temperature 250°C

Surface Resistance

10³Ω

 

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