Material Composition | PEM fuel cells, aerospace components | Industry: 99% Ti (ASTM E1408) Our Base: 99.6% Ti (▲) Advanced: 99.9% Ti (▲▲) | ▲ Reduces impurities by 0.6% for enhanced durability; ▲▲ Achieves near-pure Ti for extreme applications | Base may incur higher costs than standard materials; Advanced requires specialized handling |
Certification Standards | High-temperature industrial equipment | Industry: ASTM G1-11 (basic corrosion) Base: ASTM G3-14 (▲) Advanced: ASTM G3-14 + ISO 12345 (▲▲) | ▲ Complies with high-temperature corrosion tests; ▲▲ Adds mechanical stress certification | Advanced may need additional testing for compliance |
Processing Capabilities | Customized machinery parts | Industry: Basic cutting Base: Cutting + Bending (▲) Advanced: +Welding/Machining (▲▲) | ▲ Enables complex shapes; ▲▲ Supports precision engineering for intricate designs | Advanced requires skilled labor and specialized equipment |
Corrosion Resistance | Marine, chemical plants | Industry: 100-hour salt spray (ASTM B117) Base: 200 hours (▲) Advanced: 300 hours (▲▲) | ▲ Doubles protection in corrosive environments; ▲▲ Triple durability for extreme conditions | Higher costs may not justify for low-corrosion use cases |
Application Suitability | Extreme thermal environments | Industry: General industrial Base: PEM fuel cells (▲) Advanced: Aerospace/marine (▲▲) | ▲ Optimized for fuel cell efficiency; ▲▲ Endures high-temperature and marine stress | Base may underperform in ultra-harsh scenarios; Advanced has limited applicability |
Cost Efficiency | Budget-sensitive projects | Industry: Moderate cost Base: +15% cost (▲) Advanced: +30% cost (▲▲) | ▲ Base balances performance and affordability; ▲▲ Advanced offers premium reliability | Base may lack for critical applications; Advanced risks exceeding project budgets |