Modeling of microstructure evolution and mechanical properties during hot-strip rolling of Nb steels

Yunbo Xu, Yongmei Yu, Xianghua Liu, Guodong Wang
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引用次数: 9

Abstract

An integrated metallurgical model was developed for Nb steels to predict the microstructure evolution and mechanical properties during the hot-strip rolling and cooling process. On the basis of the industrial data, the transformation kinetics, strength, and elongation rate were evaluated for different chemical compositions and processing parameters. The yield strength and tensile strength increase with increasing Nb content or decreasing finishing temperature. The bainite distributed in finer ferrite matrix, which is produced at relatively low coiling temperatures, can greatly increase the strength of steel, especially tensile strength, thereby decreasing the yield ratio. A reasonable agreement was found between the predicted and measured results. It indicates that the present models can be used to simulate the actual production process.

Nb钢热连轧组织演变及力学性能模拟
建立了Nb钢的综合冶金学模型,以预测热轧冷却过程中Nb钢的组织演变和力学性能。在工业数据的基础上,对不同化学成分和工艺参数下的相变动力学、强度和伸长率进行了评价。随着铌含量的增加或整理温度的降低,屈服强度和抗拉强度均有所提高。在较低的卷取温度下产生的贝氏体分布在较细的铁素体基体中,可以大大提高钢的强度,特别是抗拉强度,从而降低屈服比。预测结果与实测结果基本一致。结果表明,该模型可用于模拟实际生产过程。
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