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Modelling of the Mechanical Properties of Low Alloyed Multiphase Steels with Retained Austenite Taking into Account Strain-Induced Transformation

机译:考虑残余应变的低残余奥氏体低合金多相钢力学性能建模

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The objective of this work is to understand the correlations between the microstructure and the mechanical properties of modern high strength multiphase steels with retained austenite (RA-steels) on a microstructural level and to describe them by models quantitatively. In addition, special attention is paid to the course and the influence of the strain-induced transformation of the retained austenite to martensite. To achieve this target, the literature was intensely evaluated and moreover, an extensive experimental investigation program was carried out. As test materials industrially manufactured hot and cold rolled multiphase steels were chosen. On the basis of the test results a mathematical model for the numerical description of the kinetics of the strain-induced transformation was set up. Then under use of a recently published rule of mixture a model system to calculate the flow curve of RA-steels was developed. It takes into account the strain-induced transformation. For the strain region above phi = 0.03 the calculated flow curve agrees well with the measured values, so that an application of the model system is possible in the practice of steel development and steel manufacturing.
机译:这项工作的目的是在显微组织水平上理解现代高强度多相残余奥氏体多相钢(RA钢)的组织与力学性能之间的关系,并通过模型进行定量描述。另外,应特别注意残余奥氏体向马氏体的应变诱导转变过程和影响。为了实现这一目标,对文献进行了深入的评估,此外,还进行了广泛的实验研究程序。作为测试材料,选择了工业生产的热轧和冷轧多相钢。在测试结果的基础上,建立了一个数学模型,用于数值描述应变诱发的转变动力学。然后,根据最近发布的混合规则,开发了一种计算RA钢流动曲线的模型系统。它考虑了应变诱导的转化。对于超过phi = 0.03的应变区域,计算出的流动曲线与测量值非常吻合,因此该模型系统可以在钢铁开发和钢铁制造实践中应用。

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