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首页> 外文期刊>Philosophical magazine: structure and properties of condensed matter >Texture development and deformation mechanisms during uniaxial straining of U-Nb shape-memory alloys
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Texture development and deformation mechanisms during uniaxial straining of U-Nb shape-memory alloys

机译:U-Nb形状记忆合金单轴应变过程中的织构发展和变形机制

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The shape-memory effect is well documented in uranium - niobium alloys near the alpha"-gamma degrees metastable phase boundary. In situ neutron diffraction measurements during uniaxial loading indicate that U - 14 at.% Nb (in the alpha" monoclinic phase field) deforms by stress-induced twin reorientation. Alternatively, U - 16 at.% Nb (initially gamma degrees tetragonal) undergoes a stress-induced phase transformation to the alpha" monoclinic phase. The crystallographic texture of the monoclinic phase of both compositions has been measured and qualitatively interpreted by considering the orientation relationship between the most favoured alpha" variant and the parent phase. In addition, previously published observations of deformation structures within the shape-memory regime of a U - 13 at.% Nb alloy are discussed within the context of the same model.
机译:形状记忆效应在α“-γ亚稳相界附近的铀-铌合金中有很好的记录。单轴加载过程中的原位中子衍射测量表明,U-14 at。%Nb(在α”单斜相场中)因应力引起的双取向而变形。或者,U-16 at。%Nb(最初为伽马角四方)经历应力诱导的相转变为α“单斜晶相。已经测量了两种成分的单斜晶相的晶体学结构,并考虑了取向关系进行了定性解释在最喜欢的alpha“变体和父阶段之间。另外,在同一模型的背景下讨论了以前发表的U-13 at。%Nb合金的形状记忆范围内的变形结构的观察结果。

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