The 30μm insulating alcohol-resistant black conductive cloth is made by coating the surface of polyester fibers with metals such as copper and nickel, followed by treating one surface with a black water-based graphene electromagnetic shielding coating. The black insulating surface has an insulation resistance of >10¹⁰Ω and a thickness of 38±3μm. The insulating layer presents a low-matte blue-black color with a glossiness of 0.5 and stable color difference (Lab value: 26.45/-0.17/-1.12). It adopts a purely water-based and environmentally friendly coating (free of VOCs) and features excellent wear resistance and alcohol resistance. It supports direct die-cutting or composite adhesive layer processing, and is suitable for electromagnetic shielding, anti-static protection of precision electronic components, and industrial corrosion-resistant scenarios.
Excellent electromagnetic shielding performance: Provides effective electromagnetic shielding in the wide frequency band from 10MHz to 3GHz.
Reliable insulating performance: The black coating has extremely high surface insulation resistance (> 10¹⁰ Ω), effectively preventing short circuits.
Outstanding physical and chemical protection: High alcohol resistance, high oxidation resistance and corrosion resistance, anti-fingerprint, and good light-shielding performance.
Ultra-thin and lightweight: The thickness of the material itself can be as thin as 26 microns, saving space and suitable for compact electronic devices.
Single-sided conductive design: One side (silver-gray) is conductive, and the other side (black) is insulated, providing design flexibility. It is used in scenarios where the conductive side needs to be in contact while the non-conductive side requires insulating isolation.
Superior processability:
Can be directly die-cut: Easy to process into various complex shapes.
Easy to attach to tape: Provides a convenient assembly method.
Environmental protection and safety: Uses pure water-based coating, free of volatile organic compounds (VOC), making the production process and use safer and more environmentally friendly.
Customizability: Can be customized and developed according to customers' specific needs.
Applications of 30μm Insulated Alcohol-Resistant Conductive Cloth
Electromagnetic Shielding (EMI Shielding):
Internal shielding of consumer electronic products such as smartphones, tablets, laptops, wearable devices, and digital cameras (e.g., camera module shielding, FPC/PCB partial shielding, battery shielding, interface shielding, etc.).
Shielding of sensitive circuits in automotive electronics, medical equipment, and industrial control equipment.
Prevention of electromagnetic interference inside precision instruments.
Prevention of circuit short circuits:
Used as an insulating isolation gasket when conductive materials (such as metal casings, heat sinks, FPC) need to be close to but not in contact with circuit boards or components. Its conductive side can be grounded to discharge static electricity or provide shielding, while the insulating side ensures safe isolation.
Insulation applications:
Medical equipment components that often need to be wiped and disinfected with alcohol.
Parts of consumer electronics that may come into contact with cleaning agents.
Special process environments or components requiring high surface insulation resistance.
Scenarios requiring resistance to cleaning and maintenance (alcohol resistance):
Light-shielding applications:
Light-shielding/light-leakage prevention materials around optical sensors and camera modules.
Structural components for lightweight electronic devices:
Utilizing its ultra-thin 特性,it is used inside modern electronic devices with extremely limited space.
Related Testing Equipment
► Precision electronic thickness gauge
► Density testing electronic balance
► High-precision image measuring instrument
► 60° gloss meter
► High-precision color difference meter
► DC low resistance tester
► Insulation resistance tester
► Four-probe resistance tester
► Optical microscope
► Solvent resistance tester
► Abrasion resistance tester


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The alcohol-resistant series of black conductive fabrics are made by coating the surface of polyester fibers with metals such as copper and nickel, followed by treating a single surface with a black water-based graphene electromagnetic shielding coating. (1) The combination of copper and nickel provides excellent conductivity. (2) The inherent conductive properties of the graphene electromagnetic shielding coating can greatly enhance the conductivity of the composite material, achieving good shielding effectiveness in the frequency range from 10MHz to 3GHz. (3) The polymer coating is resistant to some solvents like alcohol, which can meet special process requirements. (4) The blackening treatment also has properties such as light shielding, oxidation resistance, corrosion resistance, and fingerprint resistance.

The alcohol-resistant series of black conductive fabrics are made by coating the surface of polyester fibers with metals such as copper and nickel, followed by treating a single surface with a black water-based graphene electromagnetic shielding coating. (1) The combination of copper and nickel provides excellent conductivity. (2) The inherent conductive properties of the graphene electromagnetic shielding coating can greatly enhance the conductivity of the composite material, achieving good shielding effectiveness in the frequency range from 10MHz to 3GHz. (3) The polymer coating is resistant to some solvents like alcohol, which can meet special process requirements. (4) The blackening treatment also has properties such as light shielding, oxidation resistance, corrosion resistance, and fingerprint resistance.

The 30μm insulating alcohol-resistant black conductive cloth is made by coating the surface of polyester fibers with metals such as copper and nickel, followed by treating one surface with a black water-based graphene electromagnetic shielding coating. The black insulating surface has an insulation resistance of >10¹⁰Ω and a thickness of 38±3μm. The insulating layer presents a low-matte blue-black color with a glossiness of 0.5 and stable color difference (Lab value: 26.45/-0.17/-1.12). It adopts a purely water-based and environmentally friendly coating (free of VOCs) and features excellent wear resistance and alcohol resistance. It supports direct die-cutting or composite adhesive layer processing, and is suitable for electromagnetic shielding, anti-static protection of precision electronic components, and industrial corrosion-resistant scenarios.

The 30-micron wear-resistant black conductive fabric is a high-performance composite material. It uses polyester fiber as the base material, with copper-nickel alloy coated on both sides to provide basic conductivity (surface resistance ≤ 0.05Ω), and a black water-based graphene coating applied on one side. Its core structure consists of a black wear-resistant surface (matte black) paired with a silver-gray conductive surface, offering double-sided conductive functionality. The actually measured thickness of the product is 33-34μm, featuring excellent conductive performance. Its matte black surface presents a low-gloss effect (glossiness 3.2-3.4gs) with stable color (color difference values 25.74/0.05/0.12), and special emphasis is placed on its wear-resistant property. This conductive fabric is manufactured using a pure water-based environmental protection coating process, ensuring no VOC residues and meeting safety and environmental protection requirements. The product has a width of 1100±20mm, which can be directly die-cut or laminated with adhesive tape for easy integration and application. It is suitable for electronic application scenarios such as electromagnetic shielding and grounding that require high conductivity, wear resistance and environmental protection.
