Metallocene PP layers enable low-temperature sealing, seal strength, clarity, and recyclability.
Metallocene PP skin layers improve blown-film stability, strength, and optics.
A multilayer polyurethane film uses silicone PSA and corona treatment for durable adhesion and environmental resistance.
This case uses maleic anhydride-grafted polypropylene to strengthen fiber adhesion and improve sonic velocity for ballistic resistance.
This case combines aramid layers, varied foam densities, and shield layers to dissipate impact forces while preserving mobility.
A PLA fiber layer with a controlled polarized Raman ratio supports biodegradability, pleat retention, and filter efficiency.
Positioned attachment areas on the plate inner faces help straps follow body contours, reducing shoulder pressure, gaps, and discomfort.
A repositionable polyethylene inner layer and shock-absorbing PVC or polyurethane outer layer protect screens without adhesive residue.
Twin-screw resin alloy dispersion improves polyester film heat and bending resistance.
Specific glycol and diacid proportions deliver tough, recyclable polyester films with controlled shrinkage for packaging.
A 0.01–1.00 WEM-to-adhesive thickness ratio keeps protective film bonded and preserves writing feel film quality.
Ether- or ester-based layers and protective outer layers preserve flexibility, impact resistance, and optical clarity over time.
A segmented polymer film balances surface hardness, flexibility, impact resistance, and optical performance across temperatures.
This case combines carbon fiber skins with a polyurethane core to improve shielding rigidity, reduce cost, and limit imaging impact.
This case layers UHMWPE, basalt fibers, porous sheets, and fill materials to protect against projectiles, explosions, and fire.
A tin oxide base layer protects metallic solar-control coatings from scattering centers, preserving absorption and color after heating.
A multilayer IPN film combines thermoplastic flexibility with scratch and stain resistance.