gamma) martensitic tran'/> Martensitic transformations and the evolution of the defect microstructure of metastable austenitic steel during severe plastic deformation by high-pressure torsion
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Martensitic transformations and the evolution of the defect microstructure of metastable austenitic steel during severe plastic deformation by high-pressure torsion

机译:亚稳态奥氏体钢在高压扭转下的严重塑性变形过程中的马氏体转变和缺陷组织的演变

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摘要

It has been shown that, in metastable austenitic Fe-18Cr-10Ni-Ti steel, under conditions of torsion under pressure, local reversible (forward plus reverse) (gamma -> alpha' -> gamma) martensitic transformations can occur, which are one of the mechanisms of the formation of nanostructured states. An increase in the rotation rate, which leads to an increase in the deformation temperature, stimulates the reverse (alpha' -> gamma) transformation. The evolution of the structural and phase states is represented as the following sequence: (1) mechanical twinning; (2) nucleation of martensitic plates in the microtwinned structure of the austenite with the formation of two-phase (gamma + alpha') structures, packet alpha' martensite, and structural states with a high curvature of the crystal lattice; (3) reverse (alpha' -> gamma)-transformations; and (4) the fragmentation of nanosized crystals via the formation of a nanotwinned structure in the austenite and of a nanoscale banded structure of the epsilon martensite in the alpha' martensite.
机译:研究表明,在亚稳态奥氏体Fe-18Cr-10Ni-Ti钢中,在压力扭转的条件下,会发生局部可逆(正向和反向)(γ->α'->γ)马氏体转变,这是一种形成纳米结构态的机理。旋转速度的增加会导致变形温度的增加,从而会刺激反向(α'->γ)转变。结构态和相态的演化表示为以下顺序:(1)机械孪晶; (2)马氏体板在奥氏体的微孪晶结构中成核,并形成两相(γ+α')结构,α-马氏体小包和具有高晶格曲率的结构态; (3)反向(alpha'-> gamma)转换; (4)通过在奥氏体中形成纳米孪晶结构和在α'马氏体中形成ε-马氏体的纳米带状结构,使纳米级晶体破碎。

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