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The origin of striation in the metastable β phase of titanium alloys observed by transmission electron microscopy

机译:透射电镜观察钛合金亚稳β相的条纹起源

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摘要

For the β phase of Ti-5553-type metastable β-Ti alloys, striations in transmission electron microscopy (TEM) bright- and dark-field images have been frequently observed but their origin has not been sufficiently investigated. In the present work, this phenomenon is studied in depth from the macroscopic scale by neutron diffraction to the atomic scale by high-resolution TEM. The results reveal that the β phase contains homogeneously distributed modulated structures, intermediate between that of the β phase (cubic) and that of the α phase or the ω phase (hexagonal), giving rise to the appearance of additional diffraction spots at 1/2, 1/3 and 2/3 β diffraction positions. The intermediate structure between β and α is formed by the atomic displacements on each second {110}β plane in the direction, whereas that between β and ω is formed by atomic displacements on each second and third {112}β plane in the opposite direction. Because of these atomic displacements, the {110}β and {112}β planes become faulted, resulting in the streaking of β diffraction spots and the formation of extinction fringes in TEM bright- and dark-field images, the commonly observed striations. The present work reveals the origin of the striations and the intrinsic correlation with the additional electron reflections of the β phase.
机译:对于Ti-5553型亚稳态β-Ti合金的β相,经常在透射电子显微镜(TEM)的明场和暗场图像中观察到条纹,但尚未对其起源进行充分研究。在本工作中,从中子衍射的宏观尺度到高分辨率TEM的原子尺度,对该现象进行了深入研究。结果表明,β相包含均匀分布的调制结构,介于β相(立方)和α相或ω相(六方)之间,从而在1/2处出现了附加的衍射点。 ,1/3和2/3β衍射位置。 β和α之间的中间结构是由在每个第二{110}β平面上的原子位移形成的,而β和ω之间的中间结构是由在第二和第三{112}β上每个原子的相反方向位移形成的。由于这些原子位移,{110}β和{112}β平面变得有缺陷,导致β衍射点出现条纹,并在TEM亮场和暗场图像(通常观察到的条纹)中形成了消光条纹。本工作揭示了条纹的起源以及与β相附加电子反射的内在联系。

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