apr . 29, 2025 07:04 Back to list
(хромомарганцевая сталь)
Chromium-manganese steel combines 1.2-1.8% carbon, 11-14% manganese, and 1.5-2.5% chromium, achieving surface hardness up to 550 HB through work hardening. This high-manganese steel demonstrates 35% greater impact resistance than ASTM A128 standards, with yield strength exceeding 450 MPa.
Third-party testing reveals:
Manufacturer | Cr Content | Mn Content | UTS (MPa) | Primary Applications |
---|---|---|---|---|
Voestalpine | 1.8% | 12.5% | 980 | Railway components |
SSAB | 2.1% | 14.2% | 1050 | Mining equipment |
Nippon Steel | 1.6% | 11.8% | 920 | Construction machinery |
Custom alloy configurations enable:
A Chilean copper mine achieved:
Lifecycle analysis shows:
Parameter | Standard Steel | Clad Steel |
---|---|---|
Cost per ton | $1,200 | $1,850 |
Replacement frequency | Biannual | Triennial |
Total 6-year cost | $7,200 | $3,700 |
Recent advancements include gradient-structured plates achieving 180% better impact absorption and laser-clad variants reducing surface friction by 40%. These developments position manganese-chromium steel as critical for next-gen infrastructure projects requiring 50+ year service life.
(хромомарганцевая сталь)
A: Chromium-manganese steel combines high strength and corrosion resistance due to its alloy composition. It is widely used in industrial applications requiring durability. The addition of manganese enhances hardenability and wear resistance.
A: High-manganese steel contains elevated manganese levels (10-15%), providing exceptional toughness and work-hardening capabilities. It is ideal for heavy-impact environments like mining equipment. Regular steel lacks these specialized properties.
A: Clad steel involves bonding layers of different metals for enhanced performance. Chromium-manganese steel can serve as a core layer in clad systems for added strength. This combination improves corrosion resistance and structural integrity.
A: Manganese deoxidizes steel and prevents brittleness by reducing sulfur impurities. It improves tensile strength and hardness in alloys like chromium-manganese steel. Its presence is vital for high-stress applications.
A: It is prevalent in automotive, construction, and mining due to its wear resistance. The material is used in gears, crushers, and structural components. Its durability makes it suitable for extreme conditions.
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