Excellent
Woven Screen Mesh
65Mn Woven Screen
Woven from high-strength 65Mn spring steel wire for impact resistance and extreme wear in aggregate plants.
1 - 12 mesh
2mm - 120mm
65Mn Spring Steel / High-Manganese Steel (Mn13)

Technical Tool
Industrial Wire Mesh Technical Calculator
Aperture = 25.4 / Mesh − Wire Dia. /Open Area = Aperture² / (Aperture + Wire Dia.)²
Specifications
Specifications
| Material | 65Mn Spring Steel / High-Manganese Steel (Mn13) |
|---|---|
| Wire Diameter Range | 1.5mm - 14mm |
| Mesh Range | 1 - 12 mesh |
| Aperture Range | 2mm - 120mm |
| Width | 1 m x 2 m |
| Tensile Strength | 65Mn ≥ 1080 MPa (after heat treatment ≥ 1470 MPa); Mn13 ≥ 686 MPa |
| Hardness | 65Mn in quenched condition HRC 45-50; Mn13 after work hardening HB 450-550 |
| Reference Standard | GB/T 5329-2003; GB/T 1222-2016 (spring steel); ISO 4783-1 |
| Custom Available | Supported |
Technical Selection Guide
Technical Selection Guide
Fair
Good
Fair
65Mn ≥ 1080 MPa (after heat treatment ≥ 1470 MPa); Mn13 ≥ 686 MPa
65Mn in quenched condition HRC 45-50; Mn13 after work hardening HB 450-550
Best suited to dry, high-impact aggregate screening such as limestone, granite, and basalt. Avoid acidic or salt-laden environments. Choose stainless woven mesh when corrosion resistance is required.
Product Advantages
Product Advantages
Exceptional hardness
Long wear life
Strong fatigue resistance
Cost-effective
FAQ
FAQ
Knowledge
Related Articles & Selection Guides
In-Depth Analysis: Key Factors Affecting the Fatigue Life of 65Mn Mining Screen Mesh
The fatigue fracture mechanism of 65Mn spring steel under cyclic stress, and a service life prediction model based on HRC 45–50 hardness.
65Mn Manganese Steel Mesh vs Stainless Steel Woven Mesh: Material Selection Logic for Mining Screen Applications
65Mn spring steel and stainless steel are the two most common materials in industrial screening. Differences in wear resistance, corrosion resistance, and lifecycle cost define where each material belongs. This article uses real operating data to help you make the right call.
Open Area Calculation and Screening Efficiency: Why Higher Open Area Isn't Always Better
Open area percentage (OA%) directly affects screen throughput capacity, but a higher OA% implies finer wire, which comes at the cost of strength. This article examines the engineering trade-offs between open area, screening efficiency, and service life.
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