Our Meltblown and Synthetic Composite Filter Media is engineered from premium polypropylene resins using advanced high-temperature melt-blown non-woven technology. This cutting-edge synthesis results in a high-performance filtration medium that balances exceptional dust-holding capacity with minimal airflow resistance, ensuring optimal air quality and system efficiency.
Specifically designed for high-demand industrial and automotive applications, our pleatable materials exhibit superior tensile strength, enhanced break endurance, and high stiffness. These critical properties make them the ideal choice for manufacturing mini-pleat filters, V-bank ventilation systems, and specialized automotive cabin filters where structural integrity is paramount.
| Material Base | Special Polypropylene (PP) Resin | Manufacturing Tech | High-Temp Melt-blown Non-woven |
|---|---|---|---|
| Efficiency Range | F5 to H11 (EN799 / EN1822) | Weight Range | 85 - 120 g/m² |
| Thickness | 0.55mm - 0.65mm | Resistance Range | 8 Pa - 120 Pa |
| Stiffness Range | 180mg - 550mg | Max Efficiency | Up to 99.5% |
| Key Applications | Ventilation & Auto Filters | Mechanical Props | High Tensile Strength & Stiffness |
Enhanced break endurance and tensile strength prevent media rupture under high-pressure airflow.
Advanced fiber structure maximizes particle entrapment, extending the service life of the filter.
Optimized porosity ensures a smooth airflow, reducing energy consumption for ventilation fans.
High stiffness allows for precision mini-pleating without deformation, maximizing surface area.
Top-class engineering guarantees uniform density across the entire roll for stable efficiency.
Covers a wide spectrum of efficiency grades from F5 to H11 to meet diverse industrial standards.
Strict adherence to EN799 and EN1822 standards for every batch produced.
Tailored thickness and efficiency grades to match specific HVAC or automotive needs.
Reliable raw material sourcing ensuring consistent lead times for global distributors.
Expert guidance on pleating parameters to maximize filter performance.
Professional packaging to prevent creases and contamination during transit.
Continuous development of new composite materials for higher filtration efficiency.
| Feature | Standard Filter Media | Our Composite Media |
|---|---|---|
| Service Life | Short / Frequent Changes | Extended / High Dust Load |
| Energy Cost | High Pressure Drop | Low Resistance / Energy Saving |
| Structural Integrity | Prone to Deformation | High Stiffness / Pleat Stability |
| Filtration Level | Limited Grade Range | Broad Range (F5 to H11) |
| Maintenance ROI | High OpEx | Reduced Maintenance Frequency |
Melt-blown materials use high-temperature extrusion to create finer fibers, resulting in a denser web that traps much smaller particles while maintaining better airflow than traditional non-wovens.
Yes, our high-end series such as the FY-LZ-995 meets efficiency levels equivalent to EN1822 H10~H11, making it suitable for high-efficiency air filtration.
Higher stiffness prevents the pleats from collapsing or sticking together, which ensures a consistent airflow path and maximizes the active filtration surface area.
Absolutely. Due to its high tensile strength and excellent efficiency, it is specifically designed for automobile cabinets to filter out pollen, dust, and pollutants.
We follow international standards including EN799 and EN1822, measuring the percentage of particles captured based on specific micron sizes and airflow resistance (Pa).
Our media is produced using high-temperature melt-blown technology, giving it excellent thermal stability suitable for most industrial ventilation and automotive environments.