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Formability of Al–Nb Bearing Ultra High-strength TRIP-aided Sheet Steels with Bainitic Ferrite and/or Martensite Matrix

机译:贝氏体铁素体和/或马氏体基体的Al-Nb轴承超高强度TRIP辅助钢板的可成形性

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Microstructure, tensile properties and stretch-flangeability of 980–1470 MPa grade Al or Al–Nb bearing TRIP-aided cold-rolled sheet steels with bainitic ferrite and/or martensite matrix microstructure (TBF steels) were investigated for automotive applications such as impact member reinforcements, sheet flames and so on. In addition, these properties were related with the microstructure and the retained austenite characteristics. Complex additions of 0.5% Al and 0.05% Nb into a base steel with chemical composition of 0.2% C, 1.5% Si and 1.5% Mn (in mass%) significantly enhanced the total elongation and stretch-flangeability, especially when austempered at temperatures below martensite-start temperature. The excellent stretch-flangeability was primarily associated with (i) refined prior austenitic grain by NbC precipitates and (ii) uniform fine mixed matrix microstructure of bainitic ferrite and martensite, as well as (iii) TRIP effect of metastable retained austenite.
机译:研究了具有贝氏体铁素体和/或马氏体基体显微组织的TRIP辅助980-1470 MPa级Al或Al-Nb等级的Al或Al-Nb轴承的显微组织,拉伸性能和拉伸凸缘性(TBF钢),用于汽车应用,例如冲击构件增强材料,片状火焰等。另外,这些性能与显微组织和残余奥氏体特性有关。在化学成分为0.2%C,1.5%Si和1.5%Mn(质量%)的基础钢中复杂地添加0.5%Al和0.05%Nb可以显着提高总伸长率和延伸凸缘性,尤其是在低于200°C的温度下进行奥氏体化马氏体起始温度。优异的拉伸凸缘性主要与(i)NbC沉淀物提纯过的奥氏体晶粒和(ii)贝氏体铁素体和马氏体的均匀精细混合基体微观结构以及(iii)亚稳态残留奥氏体的TRIP效应有关。

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