Material Composition | Industrial hoses, automotive parts | Industry Standard: 50% NBR/50% PVC blend (ASTM D2000) Our Base: 70% NBR/30% PVC (NV7030-2) Our Advanced: 80% NBR/20% PVC (▲) | ▲ Advanced: 80% NBR enhances oil resistance (ASTM D543, 100+ chemicals) Base: Balances flexibility and durability | Industry Standard: Lower chemical resistance (only 30 chemicals) Advanced: Higher cost due to premium NBR ratio |
Pressure Resistance | High-pressure hydraulic systems | Industry Standard: 200 bar (ISO 10304) Our Base: 250 bar (▲) Our Advanced: 300 bar (▲▲) | ▲▲ Advanced: Withstands extreme pressures (e.g., heavy machinery) Base: Suitable for most industrial applications | Industry Standard: Risk of rupture in high-pressure scenarios |
Temperature Range | Cryogenic/High-Temperature Environments | Industry Standard: -20°C to +100°C (ISO 1817) Our Base: -30°C to +120°C (▲) Our Advanced: -40°C to +150°C (▲▲) | ▲▲ Advanced: Operates in extreme cold/hot conditions (e.g., Arctic drilling) Base: Handles most industrial temps | Industry Standard: Limited use in extreme climates |
Chemical Resistance | Chemical processing plants | Industry Standard: Resists 30+ chemicals (ASTM D2000) Our Base: 50+ chemicals (ASTM D543) Our Advanced: 100+ chemicals (▲▲) | ▲▲ Advanced: Safe for aggressive chemicals (e.g., solvents, acids) Base: Outperforms standards in oil/fuel resistance | Industry Standard: Fails in harsh chemical exposure |
Flexibility | Flexible hose applications | Industry Standard: -20°C flexibility (ISO 1817) Our Base: -30°C flexibility (▲) Our Advanced: -40°C flexibility (▲▲) | ▲▲ Advanced: Maintains flexibility in freezing environments (e.g., winter construction) Base: Reduces kinking risks | Industry Standard: Stiffens in cold, risking leaks |
Processability | Manufacturing & Custom Hose Production | Industry Standard: Requires 180°C molding (ISO 2631) Our Base: 160°C (▲) Our Advanced: 140°C (▲▲) | ▲▲ Advanced: Lowers energy costs and production time (▲) Base: Easier to shape into custom hose profiles | Industry Standard: High energy consumption during processing |