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The 316L pharmaceutical-grade stainless steel material has ultra-low carbon content, greatly reducing the risk of toxic element leaching into pharmaceutical products—a critical advantage over standard 304 stainless steel screens. Its 0.12mm wire diameter and 0.2mm mesh opening deliver up to 99.8% filtering accuracy, helping to capture micro-impurities as small as 0.2μm and helping to address contamination risks in sensitive pharmaceutical production processes. Electropolishing creates a smooth surface that helps resist bacterial adhesion and biofilm formation, complying with GMP cleanroom standards. The sealed stainless steel edge helps minimize material leakage and supports structural stability during automated screening operations, while pre-sterilization can reduce cleanroom preparation time by approximately 40%.

Wire Diameter: 0.12mm (±0.003mm tolerance); Mesh Opening Size: 0.2mm (square mesh, ±0.005mm hole pitch tolerance); Effective Filtering Area: Customizable 0.5-10 Square Meters; Max Tolerable Temperature: 200℃; Sterilization Compatibility: Autoclavable at 121℃ for 30 minutes; Surface Roughness: Ra ≤0.2μm (mirror finish); Edge Sealing: Laser-Welded 316L Stainless Steel; Maximum Single Sheet Size: 1m×1.5m; Weight: 0.8kg per Square Meter; Connection Method: Clamped Frame, compatible with pharmaceutical cleanroom screening equipment.

This sterile sieve mesh is tailored for pharmaceutical manufacturing, biotech research, and herbal medicine processing industries. It is ideal for filtering micro-impurities from antibiotic powders, separating active ingredients from herbal extracts, and ensuring the purity of injectable drug solutions. Typical scenarios: In a GMP-certified antibiotic production plant, it serves as the final screening step to remove micro-particles from finished powder drugs; in a biotech research lab, it filters cell culture media to eliminate bacterial contaminants; in a herbal medicine processing facility, it separates fine herbal powder from coarse residues to produce high-purity herbal extracts.