Our high-performance Stainless Steel-Titanium Alloy Mesh represents the pinnacle of hybrid material engineering, blending the corrosion resistance of Grade 316L stainless steel with the exceptional strength-to-weight ratio of Ti-6Al-4V titanium alloy. Designed for the most demanding industrial environments, this composite mesh delivers synergistic mechanical properties, featuring a tensile strength of 900–1,200 MPa and elongation of 15–20%, making it indispensable for critical filtration and structural applications.
Engineered with precision, our mesh solutions range from sub-micron lab-grade filters to heavy-duty architectural cladding. By utilizing advanced manufacturing techniques such as Laser Beam Welding and Electron Beam Melting (EBM), we provide customizable weave configurations and post-processing options like electropolishing (Ra ≤0.1 µm) to meet rigorous international standards including FDA 510(k), ASME BPVC, and NACE MR0175.
| Base Materials | Grade 316L Stainless Steel & Ti-6Al-4V Titanium Alloy | Tensile Strength | 900–1,200 MPa |
|---|---|---|---|
| Elongation Rate | 15–20% | Pore Size Range | 0.5 µm to 25 mm |
| Max Operating Temp | Up to 800°C (Oxidation Stable) | Surface Roughness | Ra ≤0.1 µm (Electropolished) |
| Corrosion Testing | ASTM B117 Salt Fog (10,000+ Hours) | Weight Efficiency | 40% Lighter than Pure Steel Mesh |
| Certification | FDA 510(k), ASME BPVC, NACE MR0175 | Compliance | ASTM F138/F139 (Biocompatibility) |
Withstands HCl (pH 1) and H₂S-rich environments, ensuring long-term stability in aggressive chemical processing.
Offers 3x longer fatigue life than standard stainless steel under cyclic loading (ASTM E466).
Zero nickel leaching, making it ideal for cranial implants and orthopedic medical scaffolds.
Stable performance up to 800°C, perfect for exhaust systems and thermal processing furnaces.
Multi-layer twill weaves achieve pores as small as 0.5 µm for pharmaceutical sterile filtration.
Supports up to 50 kN/m² while remaining 40% lighter than conventional steel equivalents.
Laser Beam Welding (LBW) ensuring a 0.2 mm HAZ width for cryogenic applications.
EBM 3D-printing for custom vascular stents and advanced heat exchanger cores.
Strict ASTM E3 protocols to confirm homogeneous alloy distribution and phase purity.
GM 9540P cyclic testing for automotive and offshore rig component validation.
X-Ray Diffraction ensuring ±0.3% elemental accuracy for Cr, Mo, and Ti.
Rigorous adherence to FDA, ASME, and MIL-STD-810G certifications.
| Metric | Standard SS Mesh | SS-Ti Hybrid Mesh |
|---|---|---|
| Service Life | Standard Baseline | 3x Longer Fatigue Life |
| Weight | 100% Weight | 60% Weight (40% Reduction) |
| Max Temp | ~600°C (Typical) | Up to 800°C |
| Corrosion Rate | Moderate in Salt Fog | Immune (10,000+ hrs) |
| Maintenance | Frequent Replacement | Low-Frequency Intervals |
The hybrid mesh combines the best of both worlds: the high corrosion resistance and strength of Ti-6Al-4V with the versatility of 316L stainless steel, resulting in a product that is 40% lighter but significantly more durable under cyclic loading and extreme temperatures.
Yes, it is specifically designed for biocompatibility. It complies with ASTM F138/F139 standards, ensuring zero nickel leaching, and is FDA 510(k) certified for applications such as cranial implants and orthopedic scaffolds.
The SS-Ti hybrid mesh is exceptionally stable, resisting oxidation up to 800°C. This makes it ideal for jet engine acoustic liners and industrial thermal processing furnaces (ASTM E292).
Our multi-layer twill weaves are capable of achieving ultra-fine filtration with pore sizes ranging from 0.5 to 10 µm, specifically tailored for semiconductor chemical processing and pharmaceutical sterile filtration.
Our processes follow strict global standards, including ASME BPVC Section VIII for pressure vessels, NACE MR0175 for oil and gas, and MIL-STD-810G for aerospace and defense applications.
Absolutely. We offer customizable aperture precision from sub-micron to 25 mm and reinforced lock-seam edges to prevent unraveling in high-vibration environments like mining shaker screens or aerospace fuel systems.
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