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首页> 外文期刊>Russian physics journal >Orientation Dependence of Functional Properties in Heterophase Single Crystals of the Ti36.5Ni51.0Hf12.5 and Ti48.5Ni51.5 Alloys
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Orientation Dependence of Functional Properties in Heterophase Single Crystals of the Ti36.5Ni51.0Hf12.5 and Ti48.5Ni51.5 Alloys

机译:功能特性在Ti36.5Ni51.0Hf12.5和Ti48.5Ni51.5合金的单相单晶中的取向依赖性

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摘要

The features of orientation dependence of stress-induced thermoelastic B2-(R)-B19'-martensitic transformations in single crystals of the Ti48.5Ni51.5 and Ni51.0Ti36.5Hf12.5 (at.%) alloys, which contain disperse particles of the Ti3Ni4 and H-phase, respectively, are revealed along with those of their shape-memory effects (SME) and superelasticity (SE). It is experimentally demonstrated that irrespective of the crystal structure of disperse particles measuring more than 100 nm, for their volume fraction f > 16% there is a weaker orientation dependence of the reversible strain in the cases of manifestation of SME and SE. In the orientations of Class I, wherein martensitic detwinning introduces a considerable contribution into transformation strain, the values of SME |epsilon (SME) | and SE |epsilon (SE) | decrease by over a factor of two compared to the theoretical lattice strain value |epsilon (tr0) | for a B2-B19'-transformation and the experimental values of reversible strain for quenched TiNi crystals. In the orientations of Class 2, wherein detwinning of the martensite is suppressed as is the case in quenched single-phase single crystals, the reversible strain is maintained close to its theoretical value |epsilon (tr0) |. Micromechanical models of interaction between the martensite and the disperse particles are proposed, which account for the weaker orientation dependence of |epsilon (SME) | and |epsilon (SE) | due to suppression of detwinning of the B19'-martensite crystals by the particles and a transition from a single-variant evolution of the stress-induced martensitic transformations to a multiple-variant evolution of transformations in the cases of increased size of the particles and their larger volume fractions.
机译:含分散颗粒的Ti48.5Ni51.5和Ni51.0Ti36.5Hf12.5(at。%)合金单晶中应力诱导的热弹性B2-(R)-B19'-马氏体转变的取向依赖性特征分别显示出Ti3Ni4和H相的形状记忆效应(SME)和超弹性(SE)。实验证明,不论尺寸大于100 nm的分散颗粒的晶体结构如何,在SME和SE表现出来的情况下,对于体积分数f> 16%,可逆应变的取向依赖性都较弱。在类I的取向中,马氏体解缠作用对转变应变产生了相当大的贡献,SME |ε(SME)|和SE | epsilon(SE)|相较于理论晶格应变值|ε(tr0)|降低了两倍以上。的B2-B19'转变和淬火TiNi晶体可逆应变的实验值。在第2类的取向中,如在淬火的单相单晶中那样,马氏体的脱孪得到抑制,可逆应变保持接近其理论值|ε(tr0)|。提出了马氏体与分散颗粒之间相互作用的微力学模型,这解释了| epsilon(SME)|较弱的取向依赖性。和| epsilon(SE)|由于颗粒抑制了B19'-马氏体晶体的解缠,并且在颗粒尺寸及其增大的情况下,从应力诱导的马氏体相变的单变量演变到相变的多变量演变更大的体积分数。

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