Overview
Electrostatic graphite is a modified graphite variant designed to control static electricity through tailored resistivity. Unlike standard graphite, it balances conductivity and resistance to safely dissipate electrostatic charges without creating short circuits. Industrial production involves treating natural or synthetic graphite with processes like intercalation or particle size optimization. This enhances its electrostatic discharge (ESD) properties while retaining graphite's inherent thermal stability and lubricity.
Physical and Chemical Properties
The material exhibits anisotropic conductivity, with higher conductivity parallel to its basal planes. Its resistivity can be precisely adjusted between 10-1000 Ω·cm to meet specific ESD requirements. Thermal conductivity ranges 100-400 W/(m·K), making it useful for heat management. Chemically, it maintains graphite's inertness to most acids and alkalis below 400°C. The layered structure provides low friction coefficients (0.1-0.3) and high compressive strength (up to 100 MPa in molded forms). Oxidation resistance depends on purity, typically degrading above 450°C in air.
Main Applications
In electronics manufacturing, electrostatic graphite prevents component damage during PCB handling and assembly. It's used in ESD-safe work surfaces, packaging materials, and tooling for semiconductor production. The aerospace industry employs it for fuel system components and satellite parts where static accumulation could cause ignition or signal interference. Other uses include brushes for conductive motors, furnace electrodes with controlled resistivity, and antistatic additives in composite materials.
Safety and Storage
While non-toxic, graphite dust poses inhalation risks (PEL 15 mg/m³ total dust). Use local exhaust ventilation during machining. NFPA rates it as health hazard 1, flammability 1, reactivity 0. Store away from strong oxidizers like chlorates or peroxides to prevent reactive dust explosions. Bulk material should be kept in sealed containers with desiccants to maintain dryness, as moisture can affect resistivity. Ground all equipment when handling to prevent sparking.
B2B Procurement Guide
Key specifications to request include volume resistivity (measured per ASTM D257), ash content (<0.5% for high purity), and particle size distribution (D50 typically 5-50μm). For molded parts, verify flexural strength (min. 50 MPa) and density tolerance (±0.05 g/cm³). Leading producers are in Germany, Japan, and China, with MOQs commonly 100kg for powders. Sample testing under actual working conditions is recommended, as environmental factors like humidity may affect performance. Annual contracts often secure 10-15% price advantages over spot purchases.
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