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Microstructural and Crystallographic Characteristics of Deformation-induced Martensite formed in Cold-drawn 316 type Stainless Steel

机译:冷轧316型不锈钢中形变诱发马氏体的显微组织和晶体学特征

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Deformation-induced martensite preferentially nucleates at the twin boundary between matrix austenite and deformation twin in 316 type stainless steel. In the cold-rolled specimen, the martensite formed at the twin boundary has K-S relationships with both of the austenite matrix and the deformation twin, that is, "double K-S relationship" is realized. While in the case of cold-drawn specimen, two kinds of twins with different twin planes are typically observed, and therefore, the deformation-induced martensites are formed at the intersections of the two deformation twin boundaries, satisfying "triple K-S relationship" among austenite matrix and two deformation twins, although there is a small misfit from the perfect K-S relationship. The complicated crystallographic orientation relationship leads to a strong variant restriction for deformation-induced martensites. Due to the difference in the number of nucleation sites, martensitic transformation is greatly promoted in cold-drawn specimen rather than cold-rolled one.
机译:316型不锈钢中,形变诱发的马氏体优先在基体奥氏体和形变孪晶之间的孪晶边界处成核。在冷轧试样中,在孪晶边界处形成的马氏体与奥氏体基体和形变孪晶两者都具有K-S关系,即,实现了“双重K-S关系”。而在冷拉试样中,通常观察到两种孪晶,它们具有不同的孪晶面,因此,在两个形变孪晶边界的交点处形成了形变马氏体,满足奥氏体之间的“三重KS关系”。矩阵和两个变形孪生子,尽管与完美的KS关系存在很小的失配。复杂的晶体取向关系导致变形引起的马氏体的强烈变形限制。由于成核位点数量的差异,在冷拉试样中比在冷轧试样中马氏体转变得到了极大的促进。

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