
5Cr3Mn1SiMo1V szerszámacél
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5Cr3Mn1SiMo1V is a grade under the Chinese GB standard, representing a high-toughness, impact-resistant tool steel. Its equivalent steels include AISI/ASTM S7 in the United States and DIN W-Nr. 1.2355 in Germany.
1. Chemical Composition(GB/ 1299-2000)
| C | Si | Mn | Kr | Mo | V. | P | S |
| 0.45-0.55% | 0.20-1.00% | 0.20-0.90% | 3.00-3.50% | 1.30-1.80% | ≤0.35% | ≤0,030% | ≤0,030% |
2. 5Cr3Mn1SiMo1V Steel Forging Process Specification
| Tétel | Fűtési hőmérséklet (°C) | Initial Forging Temp (°C) | Final Forging Temp (°C) | Hűtési módszer |
| Acélöntvény | 1120 – 1150 | 1150 – 1200 | 900 | Lassú hűtés |
| Acél tuskó | 1150 – 1200 | 1000 – 1150 | 850 | Lassú hűtés |
3. 5Cr3Mn1SiMo1V Steel Heat Treatment Process Specification
3.1 Előmelegítés
| Előzetes hőkezelési terv | Folyamatparaméterek |
| Izotermikus lágyítás kovácsolás után | Heating Temp: 800-820°C, Soak: 2-3h, Isothermal Temp: 700-720°C, Soak: 3-5h, furnace cool to 550°C then air cool, Hardness after annealing ≤229 HBW |
| Általános lágyítás kovácsolás után | Heating Temp: 800-820°C, Soak: 2-3h, furnace cool to 550°C then air cool, Hardness after annealing ≤229 HRC |
3.2 Quenching and Tempering
| Kioltási specifikáció | Edzési specifikáció | |||
| Quenching Temp (°C) | Hűtési módszer | Keménység HRC | Tempering Temp (°C) | Keménység HRC |
| 940 – 955 | Air or Oil Cooling | 56 | 160 – 180 | 56 – 58 |
4. Mechanical Properties of 5Cr3Mn1SiMo1V
5Cr3Mn1SiMo1V steel is a high-impact-resistant tool steel. Its elevated chromium content enhances hardenability. Silicon and manganese improve strength and resistance to tempering. Molybdenum and vanadium refine the grain structure, further increasing hardenability and elevating the steel’s overall performance. Additionally, with a chromium content exceeding 2.5% by mass, this steel exhibits excellent resistance to hydrogen embrittlement and oxidation at moderate temperatures.
5. Alkalmazások
5Cr3Mn1SiMo1V steel exhibits high toughness and moderate oxidation resistance at elevated temperatures, making it suitable for manufacturing tools and dies that operate under high impact loads. It is also well-suited for producing hammer forging dies and similar applications.


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