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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Crystallographic and Microstructural Studies of Lath Martensitic Steel During Tensile Deformation
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Crystallographic and Microstructural Studies of Lath Martensitic Steel During Tensile Deformation

机译:板条马氏体钢拉伸变形过程中的晶体学和显微组织研究

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Significant crystallographic refinement was observed in the as-quenched lath martensitic steel during tensile deformation up to a strain of 20 pct. Crystallographic investigation by electron backscattering diffraction analysis coupled with the use of crystal plasticity model confirmed that the activation behavior of slip systems is inhomogeneous even within each martensite block. In particular, the activation behavior of slip systems is initially affected by the initial crystal orientation; however, the effect becomes negligible with increasing deformation. In addition, slip systems parallel to the lath plane are preferentially activated during elongation. Our results indicate that the nonuniform crystal rotation within individual blocks is induced not only by grain interaction phenomena but also by the anisotropic activity of slip systems. These are key factor that determines the grain refinement behavior in the as-quenched lath martensitic steel during deformation.
机译:观察到在淬火的板条马氏体钢在拉伸变形直至应变达到20 pct时,晶体学显着改善。通过电子反向散射衍射分析的晶体学研究以及使用晶体可塑性模型证实,即使在每个马氏体块体内,滑动系统的活化行为也不均匀。尤其是,滑移系统的激活行为最初受初始晶体取向的影响;但是,随着变形的增加,其影响可忽略不计。此外,在延伸过程中,优先激活与车床平面平行的滑移系统。我们的结果表明,单个块内的不均匀晶体旋转不仅是由晶粒相互作用现象引起的,而且还由滑动系统的各向异性活动引起的。这些是决定变形后的板条马氏体钢晶粒细化行为的关键因素。

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