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TWSME improvement by thermal cycling at zero stress in NiTi shape memory alloys

机译:NiTi形状记忆合金中零应力下的热循环可改善TWSME

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This paper describes an experimental study of the influence of thermal cycling at zero stress and the associated R-phase on two different training procedures for developing the two-way shape memory effect (TWSME) in shape memory alloys (SMAs). Two different sets of NiTi wire are used in the study: one set has been heat treated to ensure a transformation path with no R-phase, whereas the other set has had the same heat treatment which is then followed by , repeated thermal cycling at zero stress to develop the R-phase. The study analyzes how both thermal cycling and the R-phase affect the transformation temperatures and the SMA hardness. Subsequently, two different TWSME trainings, thermal cycling under constant load and isothermal tensile deformation, are performed on each sample set. The study then analyzes the training procedures, the training parameters, the recoverable two-way strain and the transformation temperatures. The results show that after 30 thermal cycles, the SMA develops the R-phase and becomes harder. To obtain a substantial etw together with a minimum plastic strain, the results suggest that the NiTi wire should be thermally cycled at zero stress prior to training until the R-phase is developed and trained by thermal cycling under constant load.
机译:本文描述了在零应力下热循环和相关R相对两种不同训练程序的影响的实验研究,该两种训练程序用于在形状记忆合金(SMAs)中产生双向形状记忆效应(TWSME)。在研究中使用了两组不同的NiTi焊丝:一组经过热处理以确保没有R相的转变路径,而另一组进行了相同的热处理,然后进行零温度重复热循环。强调发展R相。该研究分析了热循环和R相如何影响相变温度和SMA硬度。随后,对每个样本集进行了两次不同的TWSME训练,即恒定载荷下的热循环和等温拉伸变形。然后研究分析了训练程序,训练参数,可恢复的双向应变和转变温度。结果表明,经过30个热循环后,SMA会出现R相并变硬。为了获得足够的重量和最小的塑性应变,结果表明,在训练之前,应将NiTi丝在零应力下进行热循环,直到在固定载荷下通过热循环形成R相并对其进行训练为止。

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