Antistatic pipeline
Introduction
- Product Description
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• Core principle: Conductive fillers (conductive carbon black, carbon fibers, graphene, metal powders) are incorporated into a PTFE matrix, or the surface is subjected to conductive modification, to establish a continuous conductive pathway that rapidly dissipates static electricity.
• Performance specifications: Surface resistivity of 10⁴–10⁹ Ω (antistatic grade) or 10⁰–10³ Ω (conductive grade), compliant with explosion-proof standards such as GB/T 10542.
• Typical advantages: Combines corrosion resistance with antistatic properties, eliminating the risk of static‑induced ignition and explosions, making it suitable for flammable and explosive environments.
• Application scenarios: high-risk environments such as oil and gas transportation in the petrochemical industry, powder and solvent conveyance in the pharmaceutical sector, and ultra‑pure fluid handling in the semiconductor industry.
• Key selection considerations: Carbon‑fiber fillers offer both antistatic protection and wear resistance, while metallic fillers provide superior conductivity but at a higher cost; flanges must be equipped with antistatic bonding to ensure continuous electrical conductivity throughout the system.
Our company offers custom-designed, non‑standard steel‑lined PTFE pipe fittings, manufactured to order based on customer‑specific parameters and application requirements.
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Antistatic pipeline
Service Support
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