Material Composition | General plastic manufacturing | Industry: PE/PP blends (ASTM D790) Base: 100% PE/PP (ISO 1183) Advanced: 100% PE/PP + 5% bio-based additives (EN 13432) | Base ensures material purity for compatibility; Advanced reduces environmental impact (▲▲) | Industry blends may cause inconsistent performance due to additive variability |
Particle Size Uniformity | Injection molding, extrusion | Industry: 500–800 µm (ISO 13320) Base: 400–600 µm (▲) Advanced: 300–500 µm (▲▲) | Smoother mixing, reduced clogging (Base: +15% flow efficiency; Advanced: +30%) | Industry particles may cause uneven distribution in final products |
Filler Content | Cost-sensitive packaging, automotive parts | Industry: 20–30% filler (ISO 10990) Base: 40% filler (▲) Advanced: 50% filler (▲▲) | Base lowers raw material costs by 20%; Advanced achieves 25% cost reduction (▲▲) | Over-filling may compromise structural integrity in high-stress applications |
Melting Temperature | High-temperature processing | Industry: 160–180°C (ASTM D3418) Base: 140–160°C (▲) Advanced: 120–140°C (▲▲) | Lower energy consumption (Base: -10%; Advanced: -20%); Faster cycle times | Industry requires specialized equipment for high-temperature processing |
Chemical Resistance | Chemical-resistant containers | Industry: Withstands 20+ chemicals (ASTM D543) Base: 50+ chemicals (▲) Advanced: 100+ chemicals (▲▲) | Base resists common solvents; Advanced withstands harsh industrial chemicals (▲▲) | Industry products degrade in prolonged exposure to aggressive chemicals |
Environmental Compliance | Sustainable packaging, eco-certified products | Industry: Non-compliant Base: RoHS-certified (▲) Advanced: RoHS + recyclable (EN 13432) (▲▲) | Base meets EU regulations; Advanced achieves circular economy goals (▲▲) | Industry products may face regulatory restrictions in eco-conscious markets |