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Study of Direct Quenching and Tempering Process of a Low Carbon Equivalent 960 MPa Grade Steel

机译:低碳等效960MPa级钢直接淬火和回火过程的研究

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The chemical composition of a 960 Mpa grade high strength steel with low carbon equivalent was designed. Effect of direct quenching and tempering process on the microstructure and mechanical properties of the experimental steel was studied. Results showed that fine lath martensite was obtained after controlled rolling and direct quenching. With tempering temperature increasing, the mechanical properties showed different trends for different tempering stages. And this had a direct relationship with the microstructure evolution. The matrix recovery softening, carbon desolution and precipitation of nano microalloy carbides influenced the strength change. With increase of tempering time, the strength decreased and toughness improved. Experimental steel tempered at 450°C for 40min could obtain the best mechanical properties, which meet the requirement with a large impact energy margin.
机译:设计了960MPa级高强度钢的化学成分,设计了低碳等价物。直接淬火和回火过程对实验钢微观结构和力学性能的影响。结果表明,在受控轧制和直接淬火后获得了精细的Lath马氏体。随着回火温度的增加,机械性能显示不同的回火阶段的不同趋势。这与微观结构演化有直接关系。纳米微基金碳化物的基质回收软化,碳取碳和析出影响强度变化。随着回火时间的增加,强度降低和韧性改善。在450℃下回火40分钟的实验钢可以获得最佳的机械性能,这符合大冲击能源裕度的要求。

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