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Influence of Isothermal Treatment Prior to Initial Quenching of Q&P Process on Microstructure and Mechanical Properties of Medium Mn Steel

机译:Q&P过程初始淬火前等温治疗对介质Mn钢微观结构和力学性能的影响

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The influence of isothermal treatment prior to the initial quenching step of Q&P process was investigated in 0.26C – 4.15Mn – 1.39Si steel. Compared to the microstructure of the Q&P processed steel: a mixture of martensite and retained austenite, the microstructure subjected to isothermal treatment before initial quenching step (BQ&P) consists of bainitic ferrite, martensite and retained austenite. Formation of bainitic ferrite during isothermal treatment refined the retained austenite grain size and made the filmy morphology prevalent in the final microstructure. Besides, carbon effectively enriched into the austenite adjacent the bainitic ferrite. The change in size, morphology and carbon content enhanced the mechanical stability of austenite in BQ&P processed steel; it has a beneficial influence on improving tensile elongation for a given tensile strength level. Moreover, controlling austenite characteristics by isothermal treatment is advantageous on the stretch-flangeability; hole expansion ratio is evaluated to be 22.2% for BQ&P processed steel, which is 2.7 time higher than that for the conventional Q&P processed one.
机译:在0.26℃-4.15mn - 1.39SI钢中研究了在Q&P工艺初始猝灭步骤之前的等温处理的影响。与Q&P加工钢的微观结构相比:马氏体和保留奥氏体的混合物,在初始猝灭步骤(BQ&P)之前对等温处理进行的微观结构由贝氏体铁氧体,马氏体和保留的奥氏体组成。等温处理期间贝氏体铁氧体的形成精制了保留的奥氏体晶粒尺寸,并在最终组织中普遍存在的薄膜形态。此外,碳有效地富集到邻近贝氏体铁氧体的奥氏体中。大小,形态和碳含量的变化增强了BQ&P加工钢中奥氏体的机械稳定性;它对改善给定拉伸强度水平的拉伸伸长率具有有益的影响。此外,通过等温处理控制奥氏体特性是有利的,在拉伸凸缘性上是有利的;对于BQ&P加工钢,孔膨胀比为22.2%,比传统Q&P加工的钢为2.7次。

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