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Characteristics and interrelation of recovery stress and recovery strain of an ultrafine-grained Ni-50.2Ti alloy processed by high-ratio differential speed rolling

机译:高比例差速轧制加工超细晶体Ni-50.2TI合金的恢复应力和恢复应变的特性和相互关联

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摘要

The characteristics of the recovery stress and strain of an ultrafine-grained Ni-50.2 at% Ti alloy prepared by high-ratio differential speed rolling (HRDSR) were examined, and the factors that influence the recovery stress and strain and the relation between the two were studied. After HRDSR, both the recovery stress and strain were enhanced compared to the initial condition. The subsequent annealing treatment at 673 K, however, reduced the shape recovery properties. The constitutive equation showing that the maximum recovery stress is a sole function of the recovery strain was developed. The recovery strain increased as the yield stress increased. Thus, the maximum recovery stress increased with an increase in yield stress. The recovery stress measured at room temperature (i.e., residual recovery stress) was, on the other hand, affected by the yield stress as well as the austenite-to-martensite transformation temperature. As the yield stress increased and as the martensitic transformation temperature decreased, the residual recovery stress increased.
机译:检查通过高比率差速轧制(HRDSR)制备的%Ti合金的超细粒子Ni-50.2的恢复应力和菌株的特性,以及影响恢复应力和应变的因素以及两者之间的关系研究过。在HRDSR之后,与初始条件相比,恢复应力和菌株均得到增强。然而,在673k处的随后的退火处理降低了形状回收性质。表明最大恢复应力是研制最大恢复应变的唯一功能。随着屈服应力的增加,回收应变增加。因此,最大恢复应力随屈服应力的增加而增加。另一方面,在室温(即残余恢复应力)测量的回收应力是受屈服应力的影响以及奥氏体对马氏体转化温度的影响。随着产量应力的增加并且随着马氏体转化温度降低,残余恢复应力增加。

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