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Artificial Graphite Export Customs Declaration

Updated: 2026-08-02

Overview

Artificial graphite is a manufactured carbon material produced through high-temperature treatment (2500-3000°C) of carbon-rich precursors like petroleum coke or coal tar pitch. Unlike natural graphite, it offers more consistent properties and can be engineered for specific applications through controlled production processes. Industrial production involves graphitization furnaces where amorphous carbon transforms into crystalline graphite structures. The material is valued for its anisotropic properties, with thermal conductivity reaching 100-400 W/mK parallel to the crystal planes, making it indispensable for high-performance applications.

Physical and Chemical Properties

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Artificial graphite exhibits superior thermal stability compared to most metals, maintaining structural integrity up to 3000°C in inert atmospheres. Its electrical resistivity ranges from 5-10 μΩ·m, about four times higher than copper but with better high-temperature performance. The material's layered crystal structure provides natural lubricity (coefficient of friction 0.1-0.2) and chemical resistance to most acids, alkalis, and solvents. However, it oxidizes in air above 450°C, requiring protective atmospheres for high-temperature applications. Density and porosity can be precisely controlled during manufacturing, typically achieving 1.7-1.9 g/cm³ for battery-grade materials.

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Main Applications

Over 60% of artificial graphite is consumed by the lithium-ion battery industry as anode material, where its reversible lithium intercalation capacity (372 mAh/g theoretical) and cycling stability outperform alternatives. The steel industry uses 25-30% for refractory linings and conductive components in electric arc furnaces. Emerging applications include thermal management in electronics (heat spreaders), semiconductor manufacturing (crucibles), and nuclear reactors (moderator blocks). High-purity grades (>99.99%) are essential for photovoltaic silicon production, where metallic impurities must be below 10 ppm to maintain wafer quality.

Safety and Storage

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As a combustible dust (autoignition temperature ~750°C), artificial graphite requires storage away from open flames and strong oxidizers. NFPA-rated Class D fire extinguishers should be available in storage areas, as water may be ineffective for graphite fires. Workplace exposure limits for respirable dust are typically set at 5 mg/m³ (8-hour TWA). Packaging should prevent dust generation during handling - common options include 25kg multilayer paper bags with plastic liners or 1-ton super sacks for bulk shipments. Moisture absorption is minimal (<0.5% at 50% RH), but humidity-controlled storage preserves flowability.

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B2B Procurement Guide

For export declarations, artificial graphite falls under HS code 380110 (natural or artificial graphite in powder or flake form). Key documentation includes the Material Safety Data Sheet (MSDS), Certificate of Analysis (specifying ash content, particle size distribution, and trace metals), and origin certification. Quality benchmarks vary by application: battery anode materials require D50 particle sizes of 10-25μm with tight distribution (span <1.0), while metallurgical grades may use coarser particles (100-500μm). Pricing tiers reflect purity levels - 99.9% pure material commands approximately 30% premium over 99% grade. Container loading averages 20-22 tons per 40ft HQ container.

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