Views: 0 Author: Site Editor Publish Time: 2025-07-09 Origin: Site
Introduction
Micron stainless steel wire mesh from China is engineered for ultra‑fine screening tasks where particle retention down to single‑digit microns is required. By combining fine alloy wires with precision weaving, this mesh supports advanced filtration in both liquid and gas systems.
Wire Specifications and Mesh Counts
Manufactured from 304 or 316 stainless steel, micron mesh uses wire diameters as small as 0.01 mm. Mesh counts range from 100 up to 500, corresponding to effective openings between 149 µm and 25 µm. Such fine control of aperture size enables separation of contaminants at the micron level.
Weave Options
Plain Weave (High Count): Maximizes open area while maintaining consistent aperture size.
Twill Weave (High Count): Provides a smoother surface for reduced clogging in high‑viscosity fluids.
Dutch Weave: Fine weft wires interlaced with slightly heavier warp wires for high differential pressure applications.
Key Applications
Pharmaceutical Filtration: Sterile filtration of active ingredients and solvents.
Ultrapure Water Treatment: Final polishing filters in semiconductor fabs.
Analytical Laboratories: Membrane support screens for vacuum and pressure filtration.
Hydraulic Fluids: Removal of microscopic wear particles in precision machinery.
Fine Chemicals: Separation of catalysts and fine powders in chemical reactors.
Performance and Testing
Anping Milesen Metal Net Products Co., Ltd conducts:
Micron Rating Verification: Laser diffraction and optical microscopy to confirm retention ratings.
Pressure Drop Analysis: Ensuring mesh can withstand operating differentials without deformation.
Cleanability Trials: Ultrasonic cleaning cycles to test resistance to clogging and damage.
Conclusion
China micron stainless steel wire mesh provides the precision and durability necessary for ultra‑fine screening in high‑value applications. Through advanced weaving technology and stringent validation, Anping Milesen Metal Net Products Co., Ltd delivers mesh that meets exacting micron‑level retention standards.