Woven Titanium Mesh | Corrosion-Resistant, Lightweight


What engineers are really asking about woven metal today

If you’ve been speccing filtration or lightweight structural media lately, you’ve probably bumped into woven titanium mesh. Not the buzzwordy kind—real hybrid weaves that blend 316L stainless with Ti‑6Al‑4V for aerospace, marine, and energy hardware. I spent a week speaking with buyers and shop leads in Anping County and, to be honest, the momentum here feels very real.

woven titanium mesh

Why the Stainless Steel‑Titanium Alloy Mesh is gaining ground

Weight-to-strength, corrosion resistance, and cleanability. Sounds cliché, but in marine heat exchangers and compact aerospace ducts, the trade-offs matter. This hybrid mesh—316L + Gr5 (Ti‑6Al‑4V)—arrives pickled to ASTM A380 and can be electropolished to ≈Ra 0.2 μm. Many customers say the surface finish alone saves them an extra cleaning step. I guess that’s why procurement keeps nudging R&D toward woven titanium mesh when stainless alone can’t hold up to chlorides.

Parameter Spec (≈/range) Notes
Material 316L + Gr5 Ti‑6Al‑4V (ASTM F67/AMS 4928) Vendor lists F67; Gr5 alignment commonly checked against AMS 4928
Weave Plain / Twill Hybrid welded joints to stabilize edges
Wire Ø 0.1–3.0 mm (±1.5%) Real‑world tolerance varies with weave density
Mesh Count 20–300 Custom layered wire & mesh available
Thickness 0.5–6 mm Stacked laminates for load-critical parts
Tensile Strength ≥800 MPa Typical verified via ASTM E8
Surface Acid pickled (ASTM A380) / Electropolished (Ra≤0.2 μm) Improves fouling resistance
Origin East Development Zone, Anping County, Hengshui, Hebei Industry hub for technical meshes

woven titanium mesh

Process flow (how it’s actually built)

Materials: 316L and Ti‑6Al‑4V wire drawing → controlled anneal → weaving (plain/twill) → hybrid edge welding → pickling to ASTM A380 → optional electropolish → dimensional and tensile checks (ASTM E8/E18) → corrosion screening (ISO 9227; ASTM G31/G48 as needed). Service life: in marine chloride cycles, buyers report 8–12 years; in aerospace ventilation, often much longer, assuming normal maintenance. Testing paperwork typically includes heat lot traceability and EN 10204 3.1 certs—ask for them.

Applications and what users report

  • Aerospace components: lightweight baffles and EMI-friendly screens; woven titanium mesh keeps stiffness without big mass penalties.
  • Marine heat exchangers: better chloride tolerance than straight stainless; maintenance teams say cleaning cycles stretch by ≈20–30%.
  • Chemical processing: demisters and catalyst baskets where spark safety and corrosion count.

Two quick case notes: a European shipyard retrofit saw pressure drop stabilize after 6 months—with less biofouling than their prior 316L-only media. And a UAV maker’s twill weave (220 mesh) shaved 11% mass vs. a legacy screen while passing a 96‑hour neutral salt spray screen under ISO 9227. Not earth-shattering, but in fact, meaningful.

woven titanium mesh

Vendor landscape (what’s different in practice)

Vendor Certs (≈) Lead Time Customization Notes
TOMAIFILTER (Anping) ISO 9001 (on request); EN 10204 3.1 2–4 weeks Wire Ø, mesh count, laminate stacks Hybrid welded edges; Ra≤0.2 μm option
Regional OEM A ISO 9001; basic RoHS 4–6 weeks Standard weaves; limited laminate control Competitive MOQ; fewer surface options
Global Catalog B ISO 9001; AS9100 via partners Stock or 1–3 weeks Cut-to-size; limited hybrid welding Fast delivery; premium pricing

Customization and ordering tips

Share your fluid, temperature, and chloride load; pick plain weave for stability or twill for finer filtration. Ask for ASTM E8 tensile coupons and an ISO 9227 salt spray snapshot for your finish. For woven titanium mesh in sour service, request corrosion data (ASTM G31/G48) and verify lot traceability.

woven titanium mesh

Final thought: the hybrid approach isn’t hype—it’s a practical middle ground when stainless alone corrodes too fast and pure titanium gets pricey. Test, verify, and you’ll likely keep it on your AVL.

Authoritative citations

  1. ASTM A380/A380M – Cleaning, Descaling, and Passivation of Stainless Steel Parts. astm.org
  2. ASTM E8/E8M – Tension Testing of Metallic Materials. astm.org
  3. ISO 9227 – Corrosion Tests in Artificial Atmospheres—Salt Spray Tests. iso.org
  4. AMS 4928 – Titanium Alloy, Ti‑6Al‑4V, Bars, Forgings, Tubing. sae.org
  5. ASTM G31 / G48 – Laboratory Corrosion Testing of Metals (Immersion; Pitting). astm.org


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