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Study on Strain-sense Property of TiNi and TiNiCu Shape Memory Alloys

机译:TiNi和TiNiCu形状记忆合金的应变传感性能研究

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摘要

Concerning important infrastructures and civil structures, they need real time detection during the service, such as high-rise buildings, cables, bridges and dams. Therefore, it is necessary to study sensing property of shape memory alloy (SMA) for developing a sensing element embedded in the structures to carry out damage detection. In this paper, change rate of resistance-stress-strain relationship of TiNi and TiNiCu shape memory alloys (SMAs) under elongation is examined. Tests are conducted in MTS at room temperature for the mechanical and strain-sense properties. According to the test results, it is concluded that TiNi and TiNiCu in martensitic phase and austenitic TiNi SMA wires have good strain-sense property. The change rate of resistance of SMA wires has a linear relation with the applied strain. Additionally, stress-strain relation is also predicted by Brinson Model. This study is devoted to sensing properties of TiNi and TiNiCu shape memory alloy.
机译:对于重要的基础设施和土木结构,它们在服务期间需要实时检测,例如高层建筑,电缆,桥梁和大坝。因此,有必要研究形状记忆合金(SMA)的感测特性以开发嵌入在结构中的感测元件以进行损伤检测。本文研究了延伸率下TiNi和TiNiCu形状记忆合金(SMA)的电阻-应力-应变关系的变化率。在室温下在MTS中进行机械和应变传感性能测试。根据测试结果可以得出结论,马氏体相的TiNi和TiNiCu和奥氏体的TiNi SMA线材具有良好的应变感性能。 SMA线电阻的变化率与所施加的应变具有线性关系。另外,布林森模型也预测了应力-应变关系。这项研究致力于TiNi和TiNiCu形状记忆合金的传感性能。

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