首页> 外文期刊>Acta Metallurgica et Materialia >STRUCTURAL INTERPRETATION OF THE NUCLEATION AND GROWTH OF DEFORMATION TWINS IN Zr AND Ti—Ⅱ. TEM STUDY OF TWIN MORPHOLOGY AND DEFECT REACTIONS DURING TWINNING
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STRUCTURAL INTERPRETATION OF THE NUCLEATION AND GROWTH OF DEFORMATION TWINS IN Zr AND Ti—Ⅱ. TEM STUDY OF TWIN MORPHOLOGY AND DEFECT REACTIONS DURING TWINNING

机译:Zr和Ti-Ⅱ中变形孪晶的形核和生长的结构解释。孪生期间孪生形态和缺陷反应的TEM研究

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摘要

A TEM study of mechanical twinning in Ti and Zr was performed. A large number of [0001]-dislocations which are rarely seen in the matrix, and a new type of stacking fault were found within deformation twins in both materials. Matrix dislocations were observed to actively interact with the tips of twin embryos and step ledges of growing twin lamellae. Twin embryos bounded by straight coherent and inclined semi-coherent boundaries were observed. These results as well as the morphological variation of twin lamellae during deformation do not agree with twinning dislocation theories but support a step-wise nucleation and growth mechanism proposed for deformation twinning in h.c.p. structures. Extended discussions are provided to address unanswered questions in the literature concerning deformation twinning.
机译:对Ti和Zr中的机械孪晶进行了TEM研究。两种材料中的变形孪晶中都发现了大量在矩阵中很少见的[0001]位错,以及一种新型的堆垛层错。观察到基体位错与孪生胚胎的尖端和生长的孪生薄片的阶梯状壁架相互作用。观察到由直的相干和倾斜的半相干边界限制的双胚。这些结果以及变形过程中孪晶片的形态变化与孪晶位错理论不一致,但支持了为h.c.p.中的变形孪生所提出的逐步成核和生长机理。结构。提供了广泛的讨论来解决文献中有关变形孪生的未解决问题。

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