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首页> 外文期刊>Journal of Materials Science >Structural analysis of phases and heterophase interfaces in the zirconium-boron system
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Structural analysis of phases and heterophase interfaces in the zirconium-boron system

机译:锆硼系统中相和异相界面的结构分析

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The alpha Zr-ZrB2 eutectic, a model system for metal-boride interfaces, was prepared by r.f. induction melting from high-purity zirconium ingots and zirconium diboride powders. At the eutectic composition and depending on the cooling rate, the formation of either the ZrB phase or a Zr(B) solid solution has been observed in addition to the expected compound alpha Zr and ZrB2. For slow cooling rates, the formation of the compound ZrB by a peritectoid reaction and most likely stabilized by light elements (carbon, nitrogen, oxygen) has been observed. After rapid quenching, TEM investigations revealed the formation of a zirconium-based metastable phase; this new phase, with a nearly fee structure, has been found in thin foils and is directly related to hexagonal alpha Zr by a Shoji-Nishiyama orientation relationship. The structure at interfaces with habit planes featured by trigonal symmetry ({0001} for hexagonal and {111} for fcc), has been investigated using weak-beam diffraction contrast and high-resolution transmission electron microscopy. The interfaces with a small difference in lattice parameter are accommodated by a misfit dislocation network, whilst those with a large difference in lattice parameter exhibit a more complex structure with ledges and facets. (C) 1998 Kluwer Academic Publishers. [References: 16]
机译:α.Zr-ZrB2共晶是金属硼化物界面的模型系统,由r.f.高纯锆锭和二硼化锆粉末的感应熔炼。在共晶组成下,取决于冷却速率,除预期的化合物αZr和ZrB2外,还观察到ZrB相或Zr(B)固溶体的形成。对于较慢的冷却速率,已经观察到通过类周质反应形成化合物ZrB,最有可能被轻元素(碳,氮,氧)稳定。快速淬火后,TEM研究表明形成了锆基亚稳相。在薄箔中发现了这种几乎具有电荷结构的新相,并通过Shoji-Nishiyama取向关系与六方αZr直接相关。已经使用弱束衍射对比和高分辨率透射电子显微镜研究了具有以三角形对称性为特征的习惯平面的界面的结构(六角形为{0001},fcc为{111})。失配位错网络容纳晶格参数差异较小的界面,而晶格参数差异较大的界面显示出具有凸耳和刻面的更复杂结构。 (C)1998 Kluwer学术出版社。 [参考:16]

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