Department of Theoretical and Applied Mechanics, Silesian University of Technology, Konarskiego 18A, 44-100 Gliwice, Poland.
Department of Mechatronics, Silesian University of Technology, Akademicka 2A, 44-100 Gliwice, Poland.
Sensors (Basel). 2021 Oct 13;21(20):6804. doi: 10.3390/s21206804.
In this article, changes in NiTi alloy (Flexinol) electrical resistance during cyclic stretching with small elongation were investigated. A dedicated test stand consisting of motorized vertical test stand, force gauge, and electric resistance measuring device with an accuracy of 0.006 Ω was developed. A dedicated control algorithm was developed using LabVIEW software. Changes in electrical resistance were investigated for the 0.1 mm Flexinol wire with length of 120 mm. Testing was performed in the elongation range between 0.25% and 1.5% in martensite phase. Tested samples were subjected to 30 stretching cycles with a movement speed of 10 mm/min. Obtained results show that the cyclic stretching of Flexinol wire reduces its electrical resistance with each stretching cycle. Moreover, it was noted that changes in Flexinol electrical resistance during cycling stretching depend on the assumed elongation and number of the already performed stretching cycles. The observed electrical resistance change decreases with each stretching cycle. Thus, the observed changes are greater during the first stretching cycles. For elongations exceeding 1%, the Flexinol electrical resistance in the first stretching cycle increases. In each subsequent cycle, electrical resistance decreases, as in the case of the smallest value of assumed elongation. In almost all tested cases (except in the case with 1.5% of assumed elongation), Flexinol electrical resistance after 30 stretching cycles was smaller than before the test.
本文研究了 NiTi 合金(Flexinol)在小伸长率下循环拉伸过程中电阻的变化。开发了一种专用测试台,该测试台由电动垂直测试台、力传感器和电阻测量装置组成,精度为 0.006 Ω。使用 LabVIEW 软件开发了专用的控制算法。研究了长度为 120mm、直径为 0.1mm 的 Flexinol 丝在马氏体相中的伸长率在 0.25%到 1.5%范围内的电阻变化。测试样品以 10mm/min 的移动速度进行了 30 次拉伸循环。结果表明,Flexinol 丝的循环拉伸会降低其每一次拉伸循环的电阻。此外,还注意到 Flexinol 电阻在循环拉伸过程中的变化取决于假设的伸长率和已经完成的拉伸循环次数。观察到的电阻变化随着每一次拉伸循环而减小。因此,在最初的拉伸循环中观察到的变化更大。对于超过 1%的伸长率,在第一拉伸循环中 Flexinol 的电阻增加。在随后的每个循环中,电阻都会减小,就像假设的最小伸长率一样。在几乎所有测试的情况下(除了假设伸长率为 1.5%的情况),经过 30 次拉伸循环后,Flexinol 的电阻比测试前小。