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

机译:冷拉316型不锈钢中形成的变形诱导马氏体的微结构和晶体特性

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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:形变诱发马氏体成核优先在316型不锈钢基质奥氏体和变形双之间的孪晶界。在冷轧试样,在孪晶界形成的马氏体具有与两个奥氏体基体和变形双,也就是“双k-S的关系”来实现K个-S的关系。而在冷拉试样的情况下,二种不同的双晶面的双胞胎的通常观察到的,因此,在两个变形孪晶界的交点形成的变形引起的马氏体,满足奥氏体中的“三重KS关系”矩阵和两个变形双胞胎,虽然有来自完美KS关系的小失配。复杂的晶体取向关系导致强大的变种限制了形变诱导马氏体。由于成核点的数量的不同,马氏体相变冷拉标本,而不是冷轧一个极大的促进。

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