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Work production using the two-way shape memory effect in NiTi and a Ni-rich NiTiHf high-temperature shape memory alloy

机译:使用NiTi和富Ni的NiTiHf高温形状记忆合金中的双向形状记忆效应进行工件生产

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摘要

The work output capacity of the two-way shape memory effect (TWSME) in a Ni50.3Ti29.7Hf20 (at%) high-temperature shape memory alloy (HTSMA) was investigated and compared to that of binary Ni49.9Ti50.1 (at%). TWSME was induced through a training procedure of 100 thermomechanical cycles under different tensile stresses. It was observed that TWSME in as-extruded and trained Ni50.3Ti29.7Hf20 could produce 0.7% strain against a compressive stress of 100 MPa, corresponding to a maximum work output of 0.08 J g(-1), compared to a maximum value of 0.06 J g(-1) for binary NiTi. A peak aging heat treatment of 3 h at 550 degrees C, which previously has been shown to result in near-perfect functional stability in Ni50.3Ti29.7Hf20 during isobaric thermal cycling, did not improve the TWSME and actually resulted in a decrease in the magnitude and stability of the TWSME and its work output capacity. Nevertheless, the magnitude of TWSM behavior of Ni50.3Ti29.7Hf20, in the absence of an aging heat treatment, renders it an attractive candidate for high-temperature TWSM actuation.
机译:研究了Ni50.3Ti29.7Hf20(at%)高温形状记忆合金(HTSMA)中双向形状记忆效应(TWSME)的功输出能力,并将其与二元Ni49.9Ti50.1(at %)。 TWSME是通过在不同拉伸应力下进行100次热机械循环的训练程序诱发的。观察到,在挤压和训练后的Ni50.3Ti29.7Hf20中,TWSME可以在100 MPa的压缩应力下产生0.7%的应变,相当于最大功输出为0.08 J g(-1),而最大值为对于二元NiTi,为0.06 J g(-1)。在550℃下进行3 h的峰值时效热处理,以前已显示出在等压热循环过程中Ni50.3Ti29.7Hf20具有近乎完美的功能稳定性,但并未改善TWSME,实际上导致了TWSME的降低。 TWSME的规模和稳定性及其工作产出能力。尽管如此,Ni50.3Ti29.7Hf20的TWSM行为的大小,在不进行时效热处理的情况下,使其成为高温TWSM驱动的有吸引力的候选者。

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