Deformation Behavior of NiTi Shape Memory Alloy Subjected to Severe Torsion Deformation

Victor Komarov , Roman Karelin , Vladimir Cherkasov , Ivan Postnikov , Grzegorz Korpala , Irina Khmelevskaya , Vladimir Yusupov , Rudolf Kawalla , Ulrich Prahl , Sergey Prokoshkin
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引用次数: 0

Abstract

In the present work, the possibility of application severe torsion deformation (STD) to a bulk near-equiatomic NiTi shape memory alloy in order to accumulate high strain was studied. STD was performed using the multidirectional test system “BÄHR MDS-830” in a temperature range of 300-600 °C (the dynamic polygonization range) in 10 turns with accumulated true strain of e = 3. The results obtained show the prospects of application STD to bulk NiTi samples in terms of large strains accumulation. The STD at 350-600 °C leads to the formation of steady state flow stress stage. The polygonized dislocation substructure can be formed in this temperature range at e = 0.6 to 3. The obtained flow curves can be used for mathematical modeling and optimization of deformation processes of NiTi alloys.
NiTi形状记忆合金在剧烈扭转变形下的变形行为
本文研究了在块状近等原子NiTi形状记忆合金上施加剧烈扭转变形以积累高应变的可能性。STD测试采用“BÄHR MDS-830”多向测试系统,温度范围为300-600°C(动态多边形化范围),共10圈,累计真应变为e = 3。结果表明,从菌株积累大的角度来看,STD在大块镍钛样品中的应用前景广阔。在350 ~ 600℃时,STD导致稳态流变应力阶段的形成。在e = 0.6 ~ 3的温度范围内,可以形成多角化的位错亚结构。所得流动曲线可用于NiTi合金变形过程的数学建模和优化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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