1.Enhanced PET Formulations: Developing PET resins with improved thermal stability, mechanical strength, and chemical resistance.
2.Bio-Based PET: Exploring sustainable alternatives using bio-based or recycled PET materials.
3.Hybrid Films: Combining PET with other polymers (e.g., PEN, PI) to achieve superior properties.
1.Advanced Release Coatings: Developing silicone, fluoropolymer, or non-silicone coatings with tailored release properties.
2.Low-Migration Coatings: Ensuring minimal transfer of coating materials to adhered surfaces.
3.Functional Coatings: Adding anti-static, UV-resistant, or anti-fog properties to the film.
1.High-Temperature Resistance: Developing films that can withstand extreme temperatures (e.g., >200°C) for use in composites or electronics.
2.Dimensional Stability: Reducing shrinkage or expansion under varying temperature and humidity conditions.
3.Chemical Resistance: Improving resistance to solvents, acids, and bases for harsh environments.
1.Recyclable Films: Designing PET release films that are easier to recycle or reuse.
2.Biodegradable Options: Exploring biodegradable coatings or additives to reduce environmental impact.
3.Waste Reduction: Developing manufacturing processes that minimize material waste and energy consumption.