Advanced Non-Woven Solutions for the New Energy Sector
1. Lithium-Ion Batteries Our high-performance non-woven fabrics are essential components for battery safety and manufacturing.
Separator & Coating Substrates: They provide exceptional thermal stability, mechanical reinforcement, and rapid electrolyte wetting. As ideal substrates for ceramic and solid-state coatings, they prevent layer peeling and significantly reduce thermal runaway risks.
Slurry Filtration Media: Featuring a highly clean, 3D fiber network, they efficiently intercept metal contaminants and gels in high-viscosity slurries, ensuring consistent quality control and high flow rates during production.
2. Hydrogen Energy We provide critical auxiliary and filtration materials for fuel cells and the hydrogen supply chain.
Gas Diffusion Layer (GDL) Support: Our lightweight, porous structures ensure uniform gas distribution, optimize moisture regulation (preventing flooding or drying), and provide reliable mechanical support for the Membrane Electrode Assembly (MEA).
High-Efficiency Filtration: Delivering superior particle capture with minimal pressure drop, these materials protect core fuel cell catalysts from contamination and extend the system's operational lifespan.
3. New Energy Vehicles (NEVs) Our solutions drive safety and lightweight upgrades across the automotive industry.
Battery Pack Protection: They act as multi-functional safety barriers, integrating physical cushioning, electrical insulation, and thermal diffusion resistance to protect cells from vibration and expansion damage.
Cabin Lightweighting: Replacing traditional heavy foams and fiberglass, our eco-friendly, low-VOC materials offer outstanding acoustic absorption while reducing vehicle weight to extend driving range.
4. Photovoltaic (PV) Systems Designed to support the structural integrity of high-power solar modules.
Backsheet Reinforcement: Our materials endow PV backsheets with superior tensile strength, tear resistance, and dimensional stability.
Long-Term Durability: By resisting thermal shrinkage and severe weather conditions, they prevent deformation and cracking, ensuring over 25 years of reliable outdoor performance while keeping the modules lightweight.
5. Energy Storage Systems (ESS) We ensure strict safety and structural integrity for large-scale energy storage modules and packs.
Thermal Barrier & Flame Retardancy: Utilizing an advanced bi-component fiber structure, these isolation layers offer extreme high-temperature resistance to effectively delay thermal runaway propagation between cells.
Electrical Insulation: They provide reliable mechanical buffering and strictly isolate cells from external metal components, eliminating short-circuit risks and maintaining system stability under extreme conditions.
