Material Composition | High-stress printing environments | ▲Industry: Carbon Steel (ASTM A36) ▲Base: Stainless Steel 304 (ASTM A276) ▲Advanced: Custom Alloy X (ASTM A182) | Base resists rust; Advanced offers 20% higher tensile strength (▲1400 MPa) | Advanced variants may incur 30-50% higher costs due to specialized alloys |
Thread Design | Preventing loosening during high-speed printing | ▲Industry: Standard thread (ISO 261) ▲Base: Modified thread profile (▲20% grip) ▲Advanced: Self-locking threads (▲20% torque retention) | Advanced eliminates need for lock washers; Base reduces stripping risk | Base may require periodic torque checks; Advanced is harder to disassemble |
Corrosion Resistance | Chemical exposure from inks/cleaners | ▲Industry: 500 hours salt spray (ASTM B117) ▲Base: 1000 hours (▲100%) ▲Advanced: 2000 hours (▲300%) | Advanced withstands 20+ years in industrial settings; Base resists mild acids | Advanced coatings add complexity to recycling processes |
Load Capacity | Heavy printing plates | ▲Industry: 3000N ▲Base: 5000N (▲67%) ▲Advanced: 7000N (▲233%) | Advanced supports 2-ton presses; Base handles mid-range industrial printers | Base may deform under extreme loads; Advanced requires precise installation |
Surface Finish | Automated plate mounting systems | ▲Industry: Ra 2.0 μm ▲Base: Ra 0.8 μm (▲60% smoother) ▲Advanced: Ra 0.4 μm (▲80%) | Advanced reduces friction by 40%, extending tool life | Polished surfaces may attract contaminants in dusty environments |
Size Variations | Compatibility with Komori models | ▲Industry: 3 sizes ▲Base: 5 sizes (▲67%) ▲Advanced: 8 sizes (▲267%) | Advanced fits 90% of Komori models; Base covers standard configurations | Base may lack compatibility with newer high-speed presses |