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High-resolution electron microscopy observations of transient lattices from fcc to bcc at the austenite martensite interface

机译:奥氏体马氏体界面处从fcc到bcc的瞬态晶格的高分辨率电子显微镜观察

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摘要

Atomic arrangements of austenite fcc and martensite bcc near the interface in an Fe Ni Mn alloy have been observed by high-resolution electron microscopy. It is found that atom rows along the close-packed directions of two phases are completely coherent at the interface, but there exist deformed lattices which are neither fcc nor bcc. These lattices are regarded as transient lattices changing continuously from fcc to bcc lattice. By observation of these transient lattices we can deduce the lattice deformation in the fcc to bcc martensitic transformation. It is concluded that the lattice deformation proposed by Kurdjumow and Sachs is perfectly consistent with the observed atomic arrangements near the interface. The Bogers and Burgers mechanism is inadequate to explain the present observations. It is emphasized that the austenite martensite interface in the present alloy is not a monoatomic layer but has a width of about 0 7 nm in which the transient lattices are contained.
机译:通过高分辨率电子显微镜观察到Fe Ni Mn合金中界面附近的奥氏体fcc和马氏体bcc的原子排列。发现沿两相的紧密堆积方向的原子行在界面处完全连贯,但是存在既不是fcc也不是bcc的变形晶格。这些晶格被视为从fcc到bcc连续变化的瞬态晶格。通过观察这些瞬态晶格,我们可以推断出从fcc到bcc马氏体转变的晶格变形。结论是,Kurdjumow和Sachs提出的晶格变形与界面附近观察到的原子排列完全一致。 Bogers and Burgers机制不足以解释当前的观察结果。要强调的是,本合金中的奥氏体马氏体界面不是单原子层,而是具有大约0 7 nm的宽度,其中包含了瞬态晶格。

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