Stainless Steel Filter Mesh - CE Certification & Pricelist

I design filtration solutions around stainless steel filter mesh to fit your exact production line. My stainless steel filter mesh delivers strength, corrosion resistance and easy cleanability for demanding applications. You get consistent pore sizes, tight tolerances, and long service life across chemical, food, pharmaceutical and water-treatment lines. I can supply different weaves (plain, twill, Dutch), grades (304, 316, 316L), and micron openings, all measured for reliable performance. I offer CE Certification for compliance and a transparent Pricelist to help you compare options quickly. Custom cut-to-shape or roll forms are available, reducing assembly steps and downtime. Our product withstands high temperatures, resists corrosion in harsh media, and is easy to clean. Share your target micron, mesh size, and operating environment and I will propose the best grade and weave. We can provide samples and full documentation upon request.

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stainless steel filter mesh Pioneers in the Field Custom Solutions,

As pioneers in stainless steel filter mesh, we deliver engineered, custom solutions that meet the exacting demands of global industries. Combining precision weaving and advanced fabrication, our meshes are available in multiple stainless grades, pore sizes and weave patterns, with tailored surface treatments and edge finishes for filtration, separation and screening. Rigorous inspection and testing ensure consistent performance, traceability and long service life. Ideal for oil & gas, chemical processing, water treatment, food and pharmaceutical, mining and HVAC, our products offer superior corrosion resistance, high-temperature stability and easy maintenance. We support prototype development, OEM production and large-volume supply with flexible lead times and international logistics—request a sample or a specification-driven quote to explore a custom filtration solution.

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Specification Details Typical Range / Example Notes
Material Grades Common stainless steel alloys used for filter meshes 304, 316, 316L, 310, 430 Selection based on corrosion, temperature, and chemical exposure
Weave / Construction Mechanical construction methods for filtration performance Plain weave, Twill weave, Dutch weave, Reverse dutch, Welded, Crimped Dutch and reverse dutch deliver fine filtration with stable apertures
Mesh Count Number of openings per linear inch (mesh/inch) 4 mesh – 400 mesh (coarse to very fine) Higher mesh count = smaller aperture and finer filtration
Aperture / Opening Size Nominal clear opening between wires ~20,000 μm (coarse) down to ~2 μm (fine) Aperture depends on mesh count and wire diameter
Wire Diameter Thickness of individual warp/weft wires 0.02 mm – 2.5 mm (20 μm – 2.5 mm) Smaller diameters used for fine filtration; thicker wires for strength
Open Area (%) Percentage of free area available for flow ~5% – 70% depending on weave and mesh Higher open area reduces pressure drop but may reduce capture efficiency
Filtration Rating Particle size that the mesh is typically used to retain ~1 μm – 10,000 μm (1 μm for precision Dutch weave) Actual performance depends on system design and particle distribution
Max Operating Temperature Temperature tolerance of common stainless grades in continuous use 304/316: up to ~500–600°C; 310: up to ~800°C (short-term higher) Long-term exposure reduces mechanical properties; select grade accordingly
Tensile Strength (wire) Typical tensile strength range for stainless wire used in meshes ~480 – 800 MPa (depending on alloy and cold work) Cold-drawn wire exhibits higher strength and lower elongation
Surface Finish Typical post-processing to improve corrosion resistance or hygiene Mill finish, Passivated, Electropolished, Mechanical polished (up to 0.2 μm Ra) Electropolish improves cleanability and reduces particle adhesion
Corrosion Resistance (Relative) Relative ranking on a 1–10 scale in typical aqueous environments 304: 6–7; 316/316L: 8–9; 310: 7–8 Specific service conditions (chlorides, acids) affect actual performance
Permeability / Flow Indicative air/water flow capability through mesh media Variable: low-fineness Dutch weave ~0.1–2 L/m²/s; coarse mesh up to 1000+ L/m²/s Permeability is highly dependent on open area and thickness
Typical Applications Common end-uses across industries Liquid filtration, gas filtration, oil filtration, separators, strainers, catalyst support, sieving Application defines the preferred weave, grade, and finish
Recommended Cleaning & Maintenance Accepted methods to restore performance Backflushing, ultrasonic cleaning, mild alkaline or acidic cleaners, steam cleaning Avoid harsh chlorides and strong reducing agents for some grades
Manufacturing Methods Typical fabrication/production processes Weaving (shuttle/rapier), welded mesh, perforation, sintering, laminating, pleating Combination methods used for composite filter media
Standards & Compliance Relevant material and test standards commonly referenced ASTM A240, ASTM A313, EN 10088, ISO test methods for mesh/permeability Select standards based on region and critical service requirements
Maximum Panel Width Practical manufacturing width for continuous woven mesh Up to ~3000 mm (depends on loom and process) Wider widths may require seaming or welding
Notes: Values presented are representative ranges for stainless steel filter mesh products and should be validated for specific service conditions before specification.

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Data Dimension: Filtration Efficiency by Mesh Size Under Standardized Flow

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