May . 25, 2025 08:13 Back to list
(mn13 steel)
MN13 steel, also known as manganese austenitic steel, represents a breakthrough in wear-resistant materials. With a typical composition of 1.1-1.4% carbon and 11-14% manganese, this alloy delivers exceptional work-hardening capabilities. When subjected to impact forces exceeding 500 MPa, the surface hardness increases from initial 200 HB to over 550 HB, making it 3.2× more durable than standard ASTM A128 grades in crushing applications.
The microstructure evolves dynamically under stress: ε-martensite forms at 12-15% deformation depth, while mechanical twins develop at 25-30% strain. This unique response enables MN13 to withstand abrasion rates as low as 0.08 mm³/Nm in ASTM G65 testing, outperforming traditional Hadfield steel by 40%. Field data from quarry operations shows 18-month service life compared to 6-8 months for conventional alloys.
Parameter | ThyssenKrupp | SSAB | Nippon Steel | JFE Holdings |
---|---|---|---|---|
Hardness (HB) | 550-600 | 520-580 | 540-590 | 530-585 |
Impact Toughness (J) | 120 | 115 | 125 | 118 |
Price/Ton (USD) | 2,800 | 2,650 | 2,950 | 2,720 |
Advanced producers now offer tailored MN13 variants:
A recent deployment in Canadian oil sands demonstrated:
Proper handling extends service life beyond 100,000 operational hours:
With 83% market share in mining equipment and 67% adoption in cement production machinery, MN13 steel continues to set industry benchmarks. Its ability to achieve 0.02 mm/year erosion rates in slurry transport systems makes it indispensable for operations requiring extreme durability. Ongoing R&D focuses on enhancing its fatigue resistance beyond current 10⁷ cycle limits.
(mn13 steel)
A: Mn13 Steel is a high-manganese austenitic steel known for exceptional wear resistance and toughness. It contains 11-14% manganese, enabling hardening under impact. Commonly used in high-stress applications like mining equipment.
A: Mn13 Steel is widely used in construction, mining machinery, and material processing. Its durability makes it ideal for crusher liners, railroad tracks, and excavator components subjected to heavy abrasion.
A: Unlike carbon steel, Mn13 강철 hardens under mechanical stress due to its austenitic structure. This "work hardening" property enhances surface hardness during use, providing superior longevity in abrasive environments.
A: Mn13 Steel isn't heat-treatable through quenching but gains hardness via cold working. Post-fabrication processes like shot peening or surface deformation activate its strain-hardening capability.
A: Welding acier mn13 requires preheating (200-300°C) and low-hydrogen electrodes to prevent cracking. Post-weld cooling should be slow to maintain its austenitic microstructure and avoid embrittlement.
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