Smooth filament surface enables automatic and
Smooth filament surface enables automatic and thorough cake discharge
Uniform two-dimensional mesh with high flow, easy cake release and reusable construction.

Monofilament filter cloth is woven filter medium made of single smooth continuous synthetic filament yarn, treated by high-temperature heat setting to form uniform 2D mesh structure. Different from needled nonwoven felt and multifilament filter cloth, it prevents particles from embedding into fabric, featuring easy cake release, high flow rate and reusable after cleaning, designed for solid-liquid separation on plate & frame / membrane filter press.
Monofilament filter cloth is woven filter medium made of single smooth continuous synthetic filament yarn, treated by high-temperature heat setting to form uniform 2D mesh structure. Different from needled nonwoven felt and multifilament filter cloth, it prevents particles from embedding into fabric, featuring easy cake release, high flow rate and reusable after cleaning, designed for solid-liquid separation on plate & frame / membrane filter press.
Smooth filament surface enables automatic and thorough cake discharge
Unobstructed pores resist clogging for high flow and shorter cycles
Hard for particles to penetrate; reusable after washing
Stable woven structure resists pressure deformation and fiber shedding
Uniform controllable aperture for granular and crystalline materials
| Parameter | Monofilament Filter Cloth | Custom Range |
|---|---|---|
| Material | Woven PET / PP monofilament | Customizable on request |
| Continuous working temperature | PET ≤120℃ / PP ≤85℃ | Customizable on request |
| Transient temperature | PET 130℃ / PP 90℃ | Customizable on request |
| pH resistance | PET 4~9 / PP 1~13 | Customizable on request |
| Filtration precision | PET 10~100μm / PP 10~120μm | Customizable on request |
| Weave type | Plain / twill weave, heat-set finished | Customizable on request |





Contact our technical team for samples, quotations or custom specifications.