Anti-Static ESD Material Nylon Conductive Interlock Fabric for Industrial Wiping And Equipment Wrapping

Short Description:

Item No. T129
Knitting Structure Width (+3%-2%) Weight (+/-5%) Composition
Interlock Weft Knitted Fixed 80 cm diameter 200g/m2 97.2% Nylon 66,2.8% Coductive Yarn
Technical Features Anti-Pilling. Soft. Double-Sided Conductivity. High Tensile Strength. ESD Performance
Applications Robotic Arm Sleeves. ESD Wipers. Industrial Equipment Wrapping. Precision Instrument Shielding.


Product Detail

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Product Description:

Our Nylon Conductive Interlock Fabric is engineered for high-tech and demanding industrial environments where static control and durability are paramount. Crafted with 97.2% high-tenacity Nylon 66 and infused with 2.8% advanced Conductive Yarn, this fabric features distinctive built-in black anti-static carbon stripes.

Thanks to its double-sided interlock knit construction, this material offers outstanding soft handfeel while maintaining robust structural stability. As a premium professional-grade medium, it is ideal for wrapping industrial equipment and wiping delicate surfaces. The superior inherent properties of 66%Nylon ensure an ultra-smooth, lint-free performance, effectively avoiding snags and pilling. It fully protects high-value instruments against electrostatic discharge (ESD) and micro-scratches caused by fibers.

Features

1. ESD Protection: Integrated 2.8% conductive carbon filaments provide lifelong static defense that never washes out.

2. Instant Charge Grounding: Swiftly dissipates electrostatic buildup to protect sensitive microelectronics and PCBs.

3. Double-Sided Conductivity: Interlock knit architecture guarantees identical anti-static performance on both sides.

4. Spark Prevention Barrier: Eliminates triboelectric charging hazards in volatile industrial manufacturing environments.

5. High Tensile Strength: Built with premium Nylon 66, offering far greater pulling resistance than standard polyester.

6. Excellent Snag Resistance: Advanced filament cohesion minimizes catches, hooks, or punctures on hardware edges.


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