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Effect of Intercritical Heat Treatment on the Microstructure and Mechanical Properties of Medium Mn Steels

机译:临界热处理对中锰钢组织和力学性能的影响

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In the present work, the effects of intercritical annealing parameters on the microstructure and cold rol-lability (deformation rate and ratio) of "3rd Generation Advanced High Strength Steels (AHSS)" were studied. Hence, this paper discusses the formation of microstructures with different volume fractions of ferrite, martensite, bainite and retained austenite (RA). Two novel microstructures have been created, based on two levels of manganese (Mn): (i) ferrite plus martensite nucleated in austenite microstructure (FMNA structures), using Mn levels of 5 to 7 wt% and (ii) ferrite plus retained austenite duplex structure (FADP steels) for a Mn level of 10 wt%. In general, the ductility is a function of the amount of retained austenite and the strength is highly dependent on the martensite level.
机译:在目前的工作中,研究了临界退火参数对“第三代高强度高强钢(AHSS)”的组织和冷轧稳定性(变形率和比率)的影响。因此,本文讨论了不同体积分数的铁素体,马氏体,贝氏体和残余奥氏体(RA)的显微组织的形成。基于两个水平的锰(Mn),已经创建了两个新颖的显微组织:(i)铁素体+马氏体在奥氏体显微组织中成核(FMNA结构),其中Mn含量为5至7 wt%,以及(ii)铁素体+残余奥氏体双相钢锰含量为10 wt%的组织(FADP钢)。通常,延展性是残余奥氏体量的函数,而强度高度依赖于马氏体含量。

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