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Film Appearance: | The Base Material Shall Achieve Atomic-scale Surface Uniformity While Exhibiting Total Elimination Of Morphological Irregularities, Nanoscale Particulate Embeddings, Cross-linked Polymer Clusters, Or Non-native Impurities Throughout Its Operational Zone, W | Film Thickness (um): | 50 |
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Film Tensile Strengthh: | 180MPa | Film Elongation At Break: | 30% |
Film Young's Modulus: | 3.5GPa | Film Insulation Strength: | 220V/μm |
Flame Retardant: | V-0 Level | Thermal Conductivity: | 1500 W/(mK) |
Highlight: | Quantum Shielded polyamide imide film,Nano Architected polyamide imide film,Quantum copper clad polyimide film |
This quantum-enhanced GC50-X polyimide film represents a fundamental breakthrough in surface engineering, utilizing multidimensional vapor-carbon nanostructuring and quantum-confined diamondoid reinforcement to achieve 70% higher surface hardness (12H pencil hardness) and 65% improved wear resistance versus conventional GC50-grade films. The nano-architected surface layer provides >99.9% barrier efficiency against atomic oxygen, moisture, and chemical corrosion while maintaining full flexibility through 2,000,000+ bend cycles at 1mm radius.
1. Surface Superformance
Surface Hardness: 12H pencil hardness (ASTM D3363)
Wear Resistance: 500% improvement (Taber Abrasion, CS-10 wheel)
Coefficient of Friction: 0.12 (80% reduction vs. standard PI)
Surface Energy: 20-60 mN/m (dynamically tunable)
2. Barrier Excellence
Atomic Oxygen Resistance: <0.1% mass loss @ 10²⁰ atoms/cm²
Moisture Barrier: <10⁻⁶ g/m²/day @ 38°C/90% RH
Chemical Immunity: Resists concentrated acids, solvents, and alkalis
UV Stability: >50,000 hours weatherability
3. Electrical Superiority
Surface Resistivity: 10¹⁵-10¹⁸ Ω/sq (tunable)
Dielectric Strength: 8.2 kV/mm @ 25μm
Volume Resistivity: 10¹⁷ Ω·cm @ 200°C
4. Thermal Dominance
Continuous Operation: -269°C to 480°C
Thermal Conductivity: 1.5 W/m·K (in-plane)
CTE: 5.2 ppm/°C (20-200°C)
▷ Aerospace & Defense
Satellite surface protection layers
Hypersonic vehicle thermal barriers
Space suit outer layer integration
▷ Semiconductor Processing
Extreme environment wafer carriers
CVD process protection films
Vacuum chamber liner systems
▷ Industrial Innovation
High-wear robotic component surfaces
Chemical process diaphragm materials
Precision bearing protection layers
Nano-Architected Surface
Vapor-Carbon Thickness: 50-500nm (±5%)
Surface Roughness: <1nm Ra (mirror finish)
Patterning Capability: Sub-micron feature resolution
Material Properties
Thickness: 7.5-125μm (±1%)
Tensile Strength: 550 MPa (@25μm)
Elongation: 85% (@25μm)
Contact Person: Jihao
Tel: +86 18755133999
Fax: 86-0551-68560865