Material Composition | Mass production of standard rubber parts | Industry: Basic materials (e.g., low-grade steel) ▶ Base: Silicone + Steel (▲) ▶ Advanced: High-grade silicone + Stainless Steel (▲▲) | Base ▲: Improved durability for medium-use molds; Advanced ▲▲: Medical-grade compliance (ISO 10993) | Industry: Limited to non-critical applications; Advanced ▲▲: Higher upfront cost |
Certification Compliance | EU-regulated manufacturing | Industry: CE only ▶ Base: CE + EPR France (▲) ▶ Advanced: CE + EPR France/Germany (▲▲) | Advanced ▲▲: Full compliance with EU packaging directives (2020/2184) | Industry: Risk of non-compliance fines; Base ▲: Lacks German EPR certification |
Mould Material Durability | High-volume industrial production | Industry: 500 cycles (ASTM D638) ▶ Base: 1,000 cycles (▲) ▶ Advanced: 2,000 cycles (▲▲) | Base ▲: 2x Industry lifespan; Advanced ▲▲: 4x Industry lifespan | Industry: Frequent replacements; Advanced ▲▲: Requires specialized maintenance |
Shaping Precision | Precision medical/automotive parts | Industry: ±0.5mm tolerance ▶ Base: ±0.3mm (▲) ▶ Advanced: ±0.1mm (▲▲) | Advanced ▲▲: Meets aerospace-grade tolerances (ISO 2768-m) | Industry: High defect rates; Base ▲: Limited to mid-tier applications |
Environmental Adaptability | Extreme-temperature manufacturing | Industry: -20°C to 80°C ▶ Base: -30°C to 100°C (▲) ▶ Advanced: -40°C to 120°C (▲▲) | Advanced ▲▲: Operates in Arctic/industrial heat environments | Industry: Restricted to temperate zones; Base ▲: Requires climate-controlled labs |
Customization Flexibility | Custom tooling for niche industries | Industry: 5 configurable parameters ▶ Base: 10 parameters (▲) ▶ Advanced: 15+ parameters (▲▲) | Advanced ▲▲: Supports complex geometries (e.g., 3D-printed molds) | Industry: Limited to standard shapes; Base ▲: Requires manual adjustments |