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The Effect of Hafnium Content and Cycling under an Applied Axial Stress on the Creep and Martensite Strain of NiTi Based Shape Memory Alloy Wires

机译:Content含量和轴向应力作用下的循环对NiTi基形状记忆合金丝蠕变和马氏体应变的影响

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摘要

The effect of cycling under an applied axial stress of 206.8 MPa on the creep and martensite strain of a Ti rich NiTi shape memory alloy (SMA) and two ternary SMAs, having the compositions Ni49Ti51-xHfx with 1 at.% and 3 at.% Hf, is investigated. The wires used in this investigation have approximately 40% cold work (reduction in area) and a heat treatment (HT) temperature ranging from 300°C to 600°C. The results show, that for a given HT and an applied axial stress of 206.8 MPa, creep decreases with increasing Hf content. For the three alloys evaluated, creep increases with increasing HT temperature. Stress induced martensite strain during the transformation of austenite to martensite is least when the HT temperature is lowest (300°C), and for the three alloys heat treated at 300°C, the martensite strain decreases with increasing Hf content. For the SMAs heat treated at the highest HT temperature (600°C), the martensite strain decreases with an increasing number of transformation cycles, and the martensite strain decreases least for the SMA with 3 at.% Hf. Although the martensite strain is stable from 1 to 100 transformation cycles for the three SMAs heat treated at 300°C, the SMA with 3 at.% Hf retains stress induced martensite strain stability the best as the HT temperature increases.
机译:在206.8 MPa的施加轴向应力下循环对富Ti的NiTi形状记忆合金(SMA)和两种三元SMA的蠕变和马氏体应变的影响,其成分为Ni49Ti51-xHfx,其含量为1 at%和3 at% f,进行了调查。本研究中使用的电线具有约40%的冷作(面积减少)和300℃至600℃的热处理(HT)温度。结果表明,对于给定的HT和施加的轴向应力206.8 MPa,蠕变随Hf含量的增加而减小。对于评估的三种合金,蠕变会随着HT温度的升高而增加。当HT温度最低(300°C)时,在奥氏体转变为马氏体的过程中,应力诱发的马氏体应变最少,对于在300°C热处理的三种合金,马氏体应变随Hf含量的增加而降低。对于在最高HT温度(600°C)下进行热处理的SMA,马氏体应变随着转变循环次数的增加而降低,而对于Hf为3 at。%的SMA,马氏体应变的降低最小。尽管对于在300°C热处理的三种SMA,马氏体应变在1到100个转变周期内都保持稳定,但是随着HT温度的升高,Hf含量为3 at。%的SMA保持了应力诱导的马氏体应变稳定性最佳。

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