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首页> 外文期刊>Journal of the Institution of Engineers (India), Series D. Metallurgical & Materials Engineering.Mining Engineering >Numerical Analysis of Joule Heating in a Ni–Ti Segmented Wire used in Sensing Applications
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Numerical Analysis of Joule Heating in a Ni–Ti Segmented Wire used in Sensing Applications

机译:传感应用中镍-钛段线中焦耳热的数值分析

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Abstract Use of shape memory alloy (SMA) has been extensively increased to fabricate sensors and actuators. It is because of its inherently unique properties such as pseudo-elasticity and shape memory effect. Among various SMA’s, Ni–Ti SMA has received a prime interest in various applications. However, Ni–Ti SMA-based sensors suffer from the Joule heating effect as their performance is impacted due to an increase in the temperature. This work presents a finite element analysis approach to estimate a rise in temperature in Ni–Ti SMA sensors. A numerical model was developed in COMSOL, considering a Ni–Ti with Cu segment. Electro-thermal boundary conditions were set to assess the thermal response of the segmented wire. Multiple simulation runs were carried out by varying material and geometric characteristics of segmented wire. The results are validated against the literature and quantitative estimation of thermal characteristics through physics driven analytical model. Simulation results show that the Joule heating effect has a significant effect on the properties of the material which can be considered while designing and selecting the sensor application. This study further brought a few mitigation actions which can minimize the Joule heating effect without hindering the performance of Ni–Ti SMA-based sensors.
机译:摘要 形状记忆合金(SMA)在传感器和执行器中的应用已得到广泛应用。这是因为它固有的独特特性,如伪弹性和形状记忆效应。在各种SMA中,Ni-Ti SMA在各种应用中都受到了主要关注。然而,基于Ni-Ti SMA的传感器会受到焦耳热效应的影响,因为它们的性能会因温度升高而受到影响。本文提出了一种有限元分析方法来估计Ni-Ti SMA传感器的温度升高。在 COMSOL 中建立了一个数值模型,考虑了带有 Cu 段的 Ni–Ti。设置电热边界条件以评估分段导线的热响应。通过改变分段线材的材料和几何特性进行多次模拟运行。通过物理驱动的分析模型对文献进行了验证,并对热特性进行了定量估计。仿真结果表明,焦耳热效应对材料的性能有显著影响,在设计和选择传感器应用时可以考虑这一点。这项研究进一步带来了一些缓解措施,这些措施可以最大限度地减少焦耳热效应,而不会阻碍基于Ni-Ti SMA的传感器的性能。

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