Technical Catalog • DIN ISO 9044

Woven Wire Mesh Specifications

Engineering-grade stainless steel woven wire mesh manufactured to strict metallurgical tolerances. Filter by weave geometry, aperture ratings, and certified alloy chemistries.

Alloy Grade:
DIN ISO 9044 – 1/1ASTM E2016 Compliant
Square Plain Weave
Standard Aperture Filtration
Plain square weave stainless steel wire mesh macroscopic structure
Optical Micrograph 20x

Precision 1:1 warp-to-weft square mesh configuration engineered for solid separation, mechanical straining, and pre-filtration architectures requiring uniform open area.

Kinematic & Flow Characteristics

  • Rigid aperture stability under lateral stress
  • High percentage of open flow area (30% – 70%)
  • Exact geometric aperture tolerances per ASTM E2016

Standard Engineering Matrix

Showing 5 specifications
Mesh CountAperture / RatingWire Ø (mm / in)Open AreaRoll FormatAvailable Alloys
10 x 10
2000 µmCoarse
0.54 mm(0.021")62.4%48" x 100 ft
304316L
20 x 20
860 µmMedium
0.41 mm(0.016")46.2%48" x 100 ft
304316L904L
50 x 50
280 µmFine
0.23 mm(0.009")30.3%48" / 60" x 100 ft
304316LInconel
100 x 100
140 µmMicro
0.11 mm(0.0045")31.4%40" / 48" x 100 ft
304316L904LInconel
200 x 200
74 µmMicro
0.053 mm(0.0021")33.6%40" / 48" x 100 ft
316L904L

Secondary operations available: ultrasonic cleaning, precision slitting, disc stamping, and diffusion sintering.

ISO 9001:2015 Certified

Require Non-Standard Tolerances or Slit Widths?

Our metallurgical engineers specify custom warp/weft wire tension, specialized alloys, and pleated filter cylinders.

Full Traceability

EN 10204 3.1 MTR Certs

Custom Fabrication

Slit coils, discs & tubes

Cleanroom Washed

Degreased & Passivated

DIN ISO 9044

Calibrated optical testing

Secondary Metallurgical Engineering

Fabrication and Sintering Capabilities

Tailored conversion processes for high-criticality filtration assemblies. We transform raw woven wire cloth into engineered OEM components through diffusion bonding, precision slitting, cleanroom cleaning, pleating, and progressive stamping.

ASTM / ISO Compliant316L / 304 / Nickel Alloys
Macro photograph of multi-layer diffusion sintered stainless steel wire mesh laminate plate
Thermal Bonding
AISI 316L / 304 / Alloy 22
Verified Engineering Standard
ISO 4783-2
ASTM E2814
DIN 1751
Module Specification

Multi-Layer Diffusion Sintering

High-vacuum solid-state molecular bonding combining protective, control, and support mesh layers into rigid, non-shedding laminate plates with zero pore migration under high differential pressures.

Operational Tolerances & LimitsDIN / ISO Metric
Operating Delta-PUp to 25 bar (362 PSI)
Pore Rating Range1.0 µm to 200 µm
Plate Thickness0.5 mm to 12.0 mm
Thermal Limit600°C Continuous (Air)
100% dimensional batch inspection with material certs
View Technical Specs
Metallurgical Quality Matrix

Engineering Tolerances & Process Controls

Fabrication parameters calibrated to meet demanding aerospace, chemical separation, and medical filtration standards.

Fabrication StageParameter MeasuredStandard CommercialMutualFilter PrecisionStandard Ref
Diffusion SinteringTotal Thickness±0.10 mm±0.03 mmASTM E2814
Diffusion SinteringPore Uniformity (Bubble Point)±10%±5%ISO 4022
Rotary SlittingStrip Width (<100 mm)±0.10 mm±0.04 mmISO 9044
Rotary SlittingEdge Camber Deviation< 1.5 mm/m< 0.5 mm/mDIN 1751
Cleanroom PassivationSurface Free Iron (Water Wetting)Zero Rust (24h)Zero Rust (72h)ASTM A967
Pleated Filter AssemblyPleat Pitch Uniformity±0.8 mm±0.3 mmISO 2942
Progressive StampingOuter Diameter (OD <150mm)±0.15 mm±0.05 mmDIN 7168
Rim BorderingFlange Concentricity±0.25 mm±0.10 mmISO 2768-m

Require Custom Sintered Laminates or Stamped Filter Discs?

Our engineering department provides CAD drawing reviews, bubble-point test data, and sample trial packs for OEM qualification.