首页> 外文会议>TMS Annual Meeting amp;amp;amp;amp;amp;amp;amp;amp;amp; Exhibition >Tensile Deformation Behavior of 1 GPa-Grade TRIP-Aided Multi-microstructure Steels Studied by In Situ Neutron Diffraction
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Tensile Deformation Behavior of 1 GPa-Grade TRIP-Aided Multi-microstructure Steels Studied by In Situ Neutron Diffraction

机译:用原位中子衍射研究的1 GPA级行程辅助多微观结构钢的拉伸变形行为

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Tensile deformation behavior and the TRIP effect of 1 GPa-grade TRIP-aided multi-microstructure (TRIP) steels were studied by in situ neutron diffraction experiments during tensile test. The effect of retained austenite (γ_R) shape on TRIP effect in the 1 GPa-grade TRIP steels was focused on. In the static tensile tests, the 1 GPa-grade TRIP steel with the γ_R shape of needle-like showed better uniform elongation, whereas the tensile strength was almost the same as the TRIP steel with the γ_R shape of blocky. The reasons for the better uniform elongation of the needle-like TRIP steel were discussed from the viewpoints of phase strain and deformation-induced martensitic transformation behavior obtained by the neutron diffraction experiments. As a result, the difference of phase strains and the transformation rate are found to play an important role in the better uniform elongation.
机译:通过在拉伸试验期间,通过原位中子衍射实验研究了拉伸变形行为和1GPA级衔接多微观结构(跳闸)钢的跳闸效果。保留奥氏体(γ_R)形状对1GPA级跳闸钢中跳闸效果的影响集中于。在静态拉伸试验中,具有γ_R形状的1GPA级跳闸钢的针状伸长率更好,而拉伸强度几乎与具有γ_R形状的曲线形状的跳钢。从中子衍射实验获得的相应变和变形诱导的马氏体转化行为的观点来看,讨论了针状跳钢更好伸长伸长的原因。结果,发现相位菌株的差异和转化率在更好的均匀伸长率中起重要作用。

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