Optimal Laser Absorption
Specially formulated to absorb laser energy efficiently, maintaining stable performance during high-speed cutting.
This helps deliver ultra-sharp, clean edges in a single pass, without bubbling, burning, or edge melting.
Protective Films for Laser Cutting
Whether handling bare, brushed, or anodized aluminum, our specialized films ensure your surfaces survive extreme deep drawing, high-speed routing, and laser cutting.Prevent scratches, tool marks, and oxidation. Guarantee a flawless, zero-residue finish from the factory floor to final installation.
Share your substrate and processing conditions. Our technical team will recommend the optimal film grade and arrange free testing samples.
Laser Cutting Considerations
Fiber and CO2 lasers create extreme thermal and physical stress. Generic films will melt, shrink, or blow off—causing severe edge contamination, costly rework, and potential damage to your expensive laser optics.
Standard films instantly melt, shrink, or catch fire under 10kW+ laser heat. This leaves burnt adhesive and scorched edges that require expensive, labor-intensive secondary cleaning.
Modern fiber lasers use high-pressure nitrogen or oxygen assist gases. Films with weak cohesion will lift or blow completely off the metal sheet, instantly destroying surface protection.
Melted generic plastics mix with metal slag to ruin the cut. Worse, halogen-containing films release toxic, corrosive fumes that can permanently destroy expensive laser lenses.
Why Choose Our Laser Cutting Films
Advanced film technology delivers clean cuts, reliable adhesion, and residue-free protection through demanding laser processes.
Specially formulated to absorb laser energy efficiently, maintaining stable performance during high-speed cutting.
This helps deliver ultra-sharp, clean edges in a single pass, without bubbling, burning, or edge melting.
Engineered with exceptional cohesive strength to withstand the impact of high-pressure nitrogen assist gas.
The film stays firmly bonded to the surface, preventing lifting, tearing, or blow-off throughout the cutting process.
Designed to withstand up to 6 months of outdoor UV exposure while maintaining stable adhesion and surface protection.
After processing, the film peels away cleanly in one piece, leaving the surface flawless and completely residue-free.
Made with a 100% halogen-free formulation to reduce corrosive and harmful emissions during laser processing.
It provides a safer working environment while helping protect operators and sensitive laser equipment from contamination.
Laser Cutting Films Series
Explore our grey & black series, engineered for different materials, cutting conditions, and surface protection requirements.
| Model | Thickness | Adhesion (g/25mm) | Best For |
|---|---|---|---|
| PT8645TA | 65μm | 380–430 | Laser & bending for thin sheets (≤1mm) |
| PT8632TA-75 | 75μm | 430–480 | Laser & bending for standard sheets (1–2mm) |
| PT8632TA | 80μm | 450–500 | Versatile all-rounder for mass production |
| PT8633TA-95 | 95μm | 550–600 | High-power laser & heavy-duty bending for thick plates |
| PT8633TA | 100μm | 580–620 | High-pressure gas laser cutting & heavy bending |
Why Choose COFIFILM
Gentle Natural Rubber ensures zero residue or corrosion.
Flexible slitting tailored for all metal fabricators.
Sealed packaging ensures stable adhesion for 12 months.
Elevate your brand with custom logo or pattern printing.
Sustainability
Share your substrate and processing conditions. Our technical team will recommend the optimal film grade and arrange free testing samples.
Powered by plant-based natural rubber, significantly reducing reliance on fossil-fuel chemicals.
Zero-residue PE/PET carriers that seamlessly enter standard recycling streams. Zero landfill waste.
Emits no toxic gases during laser cutting. Safe for your operators, safe for your machines.
Request a free sample today and experience zero‑residue performance.
Share your substrate and processing conditions. Our technical team will recommend the optimal film grade and arrange free testing samples.