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Workwear Conductive Staple FiberSpecification: N32-3D-38、N32-3D-51、N92-3D-38、N92-3D-51. Substrate: Polyester/nylon. Conductive Particle: Carbon. Color: Black. Strength cN/dtex: >3.3.
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Polyester Conductive Fibers Short StrandSubstrate:polyester Conductive Particle: carbon Structure:threeleaf conduction/concentric circular conduction Color: black/grey/white Resistivity: 10^5/10^8/10^9Ω/cm Dimension:3D*38-51mm
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Polyester Conductive StapleSpecification: N32-3D-38、N32-3D-51、N92-3D-38、N92-3D-51. Substrate: Polyester. Conductive Particle: Carbon. Color: Black. Strength cN/dtex: 2.0.
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Fabric Conductive Staple FibersSpecification: N32-3D-38、N32-3D-51、N92-3D-38、N92-3D-51. Substrate: Polyester. Conductive Particle: Carbon. Color: Black、Grey. Strength cN/dtex: 2.0~3.0.
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Polyester Conductive Staple FibersSpecification: N32-3D-38、N32-3D-51、N92-3D-38、N92-3D-51. Substrate: Polyester. Conductive Particle: Carbon. Color: Black、Grey. Strength cN/dtex: ≥2.0.
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Anti Static Polyester Staple FiberSpecification: N32-3D-38、N32-3D-51、N92-3D-38、N92-3D-51. Substrate: Polyester. Conductive Particle: Carbon. Color: Black、Grey. Strength cN/dtex: 2.0.
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Anti Static Staple FiberSpecification: N32-3D-38、N32-3D-51、N92-3D-38、N92-3D-51. Substrate: Polyester. Conductive Particle: Carbon. Color: Black. Strength cN/dtex: ≥2.0.
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Anti Static Nylon Black Staple FiberSpecification: N32-3D-38、N32-3D-51、N92-3D-38、N92-3D-51. Substrate: Polyester. Conductive Particle: Carbon. Color: Black、Grey. Strength cN/dtex: ≥2.0.
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Anti Static Conductive Staple FibersSpecification: N32-3D-38、N32-3D-51、N92-3D-38、N92-3D-51. Substrate: Polyester. Conductive Particle: Carbon. Color: Black. Strength cN/dtex: ≥2.0.
Dec 01, 2016 · Conductive networks were formed in the fibrous scaffolds after the inoculation of over 3% CNTs, and the increase in the conductivity could maintain the cell viabilities, induce the...
Conductive Fibers Conductive Fibers Nylon and polyester conductive products that deliver electrostatic dissipative performance, superior quality and reliability. Competitive Edge Our...
May 03, 2021 · The purpose of designing the buckling structure inside the elastic conductive fiber or on the surface is to increase the stretchability of the fiber conductor while maintain the...
Mar 03, 2021 · The insert is the cross-section view of the liquid metal core fiber with the inner diameter of 600 μm. This technique is not only applicable to the incorporation of liquid metal into...
Sep 04, 2015 · We report the fabrication of graphene fibers with high thermal and electrical conductivity and enhanced mechanical strength. The inner fiber structure consists of large-sized graphene...
Jan 01, 2015 · The first conducting polymer fibers used as artificial muscles were short hollow PPy fibers prepared by electrochemical polymerization on a wire electrode with subsequent...