Material Composition | Mountain Biking, Competitive Racing | Industry Standard: Aluminum 6061 (ASTM F1621) Our Base: Magnesium AZ91D (ISO 630) Our Advanced: Mg-Zn Alloy (ASTM B866) | ▲▲ Lighter than aluminum (20% reduction) ▲▲ 30% stronger than industry standard | Higher cost due to specialized alloy processing (Base: +15%, Advanced: +30%) |
Weight Efficiency | Lightweight E-Bikes, Trail Riding | Industry: 250g/m (Aluminum) Base: 200g/m (Magnesium) Advanced: 180g/m (Mg-Zn) | ▲▲▲ 28% lighter than industry standard Enhances acceleration and rider stamina | Requires precision engineering for structural integrity (Base: ▲, Advanced: ▲▲) |
Durability | Daily Commuting, Off-Road Adventures | Industry: 10,000 fatigue cycles (ASTM E466) Base: 15,000 cycles Advanced: 20,000 cycles | ▲▲▲ 2x longer lifespan than industry standard Withstands extreme vibrations | Base: Moderate corrosion resistance (needs coating) Advanced: Corrosion-free (▲▲) |
Compatibility | Rental Services, Hybrid Bike Builds | Industry: Single-use design (e.g., road-only) Base: Universal fit (road/BMX/mountain) Advanced: Modular joints (ISO 529) | ▲▲▲ Adapts to 3+ bike types Reduces inventory costs for retailers | Base: Limited customization options Advanced: Requires专业 assembly tools (▲) |
Manufacturing Process | Custom Bike Builds, Prototyping | Industry: Extrusion (Aluminum) Base: Die-casting (ISO 9001) Advanced: 3D-printed lattice (ASTM F2924) | ▲▲▲ Complex geometries achievable (Advanced) Lightweight yet rigid structures | Base: Longer lead times than extrusion Advanced: High R&D costs (▲▲▲) |
Customization | Premium Brands, Specialty Bikes | Industry: Color/size adjustments only Base: Shape + material thickness (ISO 3801) Advanced: Full geometry redesign (ASTM F2716) | ▲▲▲ Unique designs for niche markets Meets ASTM safety standards | Base: Limited to 20% shape modifications Advanced: 6–8 week production delay (▲▲) |