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MICROSTRUCTURE AND PROPERTY EVOLUTION OF THE 1538MV NON-QUENCHED AND TEMPERED STEEL FOR A CRANKSHAFT DURING THE FORGING PROCESS

机译:锻造过程中曲轴1538mV非淬火和钢化钢的组织和性能演化

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摘要

The microstructure, properties and precipitation of rolled bars and a crankshaft were studied with experiments and numerical simulations. Compared with the rolled bars, the microstructure of the crankshaft was coarsened, and the volume fraction of ferrite decreased because of the uneven strain, the metal flow and the fast cooling rate during the forging process. The main precipitation in ferrite involved V (C, N) particles, which became more dispersed after the forging. As a result, the strength of the crankshaft was higher than that of the rolled bars, while the plasticity was lower. The results provided some additional information about the quality improvement of rolled bars and the basis for optimizing the crankshaft-forging process.
机译:用实验和数值模拟研究了轧制条和曲轴的微观结构,性质和沉淀。 与轧制条相比,曲轴的微观结构粗糙,并且由于在锻造过程中的菌株,金属流动和快速冷却速率下,铁氧体的体积分数减小。 铁氧体中的主要沉淀涉及v(c,n)颗粒,其在锻造后变得更加分散。 结果,曲轴的强度高于轧制条的强度,而可塑性较低。 结果提供了有关轧制条质量改进的一些附加信息以及优化曲轴锻造过程的基础。

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