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Effect of Starting Microstructure and Intercritical Annealing Parameters on the Microstructure and Mechanical Properties of a Medium-Mn Third-Generation Advanced High-Strength Steel

机译:起始微观结构和跨临界退火参数对介质第三代高强度钢微观结构和力学性能的影响

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Third generation advanced high strength steels (3G AHSS) have a superior combination of high strength and ductility that make them promising candidate materials for vehicle light-weighting. The present work investigates the mechanical properties and microstructural development of a prototype 0.15C-6Mn-2Al-1Si TRIP-assisted 3G AHSS arising from heat treatments compatible with the continuous galvanizing process. This study assesses the effects of starting microstructure, intercritical annealing time and temperature and isothermal bainitic transformation parameters on retained austenite volume fractions and tensile properties of the prototype alloy with reference to published U.S. DOE 3G AHSS property targets.
机译:第三代先进的高强度钢(3G AHSS)具有高强度和延展性的优越组合,使其成为车辆次光的候选材料的承诺。本作者研究了由与连续镀锌过程相容的热处理产生的原型0.15C-6MN-2AL-1SI途径辅助3G AHS的机械性能和微观结构。该研究评估了开始微观结构,跨临界退火时间和温度和等温诱导的参数对原型合金的保留奥氏体体积分数和拉伸性能的影响,参考发布的美国DOE 3G AHSS性能靶标。

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