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Temperature Dependence of Inelastic Strain Recovery in TiNi-Based Alloys under Torsion

机译:扭转TiNI基合金中无弹性应变回收的温度依赖性

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The paper presents research results on the temperature dependence of inelastic strain recovery due to superelasticity and shape memory effects under torsion in coarse-grained and microcrystalline TiNi specimens containing 50.8 at % of Ni (Ti_(49.2)Ni_(50.8) (at %)). It is found that under certain temperature and deformation conditions, the recovery strain exceeds the theoretical limit of recoverable strains or maximum lattice strain in B2?R?B19' transformations. Using a special algorithm, the torsional strain is converted to its equivalent (by Mises) tensile strain. The results are compared with data obtained by other researchers.
机译:本文提出了在粗粒细菌和含有50.8%(Ti_(49.2)Ni_(50.8)(50.8)%(以%)的粗粒和微晶TINI标本下的扭转性和形状记忆效应导致的研究结果对无弹性和形状记忆效应的研究结果。 。结果发现,在一定的温度和变形条件下,回收应变超过B2·r≤b19'转化中可回收菌株或最大晶格菌株的理论极限。使用特殊算法,将扭转应变转化为其等同物(通过误法)拉伸应变。将结果与其他研究人员获得的数据进行比较。

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