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Zeta hydride precipitation in zirconium alloys: an example of elastically driven morphology of coherent trigonal precipitates inside a closepacked hexagonal matrix

机译:锆合金中的Zeta氢化物沉淀:在封装的六边形基质内部的相干三角沉淀物的弹性驱动形态的实例

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The influence of a crystallographic symmetry break on the morphology of precipitates during the coherent precipitation of a trigonal phase in a close packed hexagonal matrix is analyzed. It is pointed out that in spite of the isotropy of the stress free strain of the precipitate in the basal plane, the existence of an extra elastic constant in the precipitate (associated to the loss of symmetry) induces a morphological evolution from a shape having a symmetry of revolution around the threefold axis to a needle-like one oriented along the compact directions in the basal plane. These general considerations are applied to the case of zeta zirconium hydrides the crystallography of which has been recently identified to be coherent with that of the alpha Zr matrix. The influence of symmetry break and elastic heterogeneity on precipitation morphology has been numerically addressed by using different approaches. An analytical approximation to the elastic energy based on Eshelby equivalent inclusion method allows obtaining a qualitative criterion to determine the occurrence of a shape bifurcation of zeta hydrides.
机译:分析了结晶对称性断裂对紧密填充六方基质中三角相干沉淀过程中沉淀物形态的影响。所指出的是,尽管基底平面中沉淀物的应力自由菌株的各向同性,但沉淀物中的额外弹性常数(与对称损失相关)诱导形状的形态进化三倍轴线围绕旋转的对称性沿基平面中的紧凑方向定向的针状。这些一般考虑因素被应用于Zeta锆氢化锆的情况,该晶体学术最近被鉴定为与αZr基质的结晶相干。通过使用不同的方法,对对称性断裂和弹性异质性对沉淀形态的影响已经数量地解决。基于eShelby等效夹杂物方法的弹性能量的分析近似允许获得定性标准以确定Zeta氢化物的形状分叉的发生。

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