Our Booth Filter Synthetic Roll is a high-performance air filtration medium engineered with a specialized synthetic fiber structure. By integrating a fine fiber layer with superior anti-fracture properties and a graduated density design, this media ensures that airflow resistance remains optimized while filtration efficiency increases along the direction of the air stream. The integration of a polyester square mesh on the outlet surface guarantees a perfectly uniform air distribution, making it an essential component for high-standard industrial environments.
Designed specifically for demanding applications, this filter media undergoes a professional spray or immersion glue treatment. This high-temperature bonding process ensures that the powder fully penetrates the medium, effectively eliminating fiber shedding and preventing dust particles from bypassing the filter. Free from silicone and volatile solvents, our synthetic roll filter provides a clean, stable, and durable solution for automotive spray painting, baking workshops, and precision assembly lines.
| Material Composition | 100% Synthetic Fiber + Solid Glue + Mesh/Bonded Fabric | Max Thermal Resistance | 120℃ |
|---|---|---|---|
| Humidity Tolerance | 100% | Available Grades | G2, G3, G4, F5 |
| Efficiency Range | 73% to 98% | Initial Resistance | 20 - 35 Pa |
| Thickness Options | 10mm, 15mm, 20mm, 25mm | Max Final Resistance | 120 - 250 Pa |
| Air Velocity | 0.3 - 2.0 m/s | Dust Capacity | 320 - 500 g/sqm |
High-temperature glue treatment prevents fiber breakage and shedding, ensuring no contamination in paint booths.
High dust holding capacity (up to 500g/sqm) reduces replacement frequency and maintenance costs.
Fiber density increases along the airflow path, maximizing filtration efficiency while minimizing pressure drop.
The polyester square mesh top layer guides air evenly across the entire surface area for consistent filtration.
Composed of anti-volatile solvents and silicone-free materials to prevent adverse reactions in chemical environments.
Ideal for automotive baking workshops, ceiling filtration, and high-precision assembly plant air systems.
Rigorous testing of fiber density and glue penetration for every roll produced.
Tailored thickness and efficiency grades (G2-F5) to match your specific air velocity requirements.
Optimized logistics for bulk roll delivery to minimize downtime in industrial workshops.
Manufactured according to synthetic material industry standards for chemical and thermal resistance.
Strategic stock of various grades ensures rapid response to urgent replacement needs.
Expert guidance on selecting the correct filter grade based on your facility's air resistance needs.
| Performance Metric | Standard Fiber Cotton | Our Synthetic Roll |
|---|---|---|
| Fiber Stability | Prone to shedding | Zero-shedding bonded tech |
| Dust Capacity | Low to Moderate | High (up to 500g/sqm) |
| Air Distribution | Uneven flow | Uniform via Polyester Mesh |
| Thermal Range | Limited resistance | Up to 120℃ stability |
| Replacement Cycle | Frequent | Extended service intervals |
The primary advantage is the anti-shedding property. Thanks to high-temperature glue bonding, fibers do not break off and contaminate the paint surface, ensuring a flawless finish.
The choice depends on your required efficiency and air velocity. G3 offers moderate efficiency, G4 provides higher filtration (92%), and F5 is for high-precision needs (98% efficiency) at lower air velocities.
Yes, our synthetic roll filter is designed to withstand thermal resistance up to 120℃, making it suitable for baking workshops and heat-intensive industrial processes.
No, the main body is composed of anti-volatile solvents and does not contain silicone, preventing surface tension issues during painting and coating applications.
The polyester square mesh acts as a stabilizer and air distributor, ensuring that the incoming air is spread evenly across the filter media to prevent localized clogging.
Graduated density allows larger particles to be trapped in the looser outer layers while finer particles are caught deeper in the medium, significantly increasing the total dust capacity.