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Effect of variable material properties and environmental conditions on thermomechanical phase transformations in shape memory alloy wires

机译:可变材料特性和环境条件对形状记忆合金丝热机械相变的影响

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摘要

This paper reports a computational study of the impact of variable material properties and environmental conditions (thermal boundary conditions and convection coefficients) on shape memory alloy wires undergoing (i) zero-stress, thermally-induced phase transformations, and (ii) stress-induced phase transformations at constant stress rates. A finite difference numerical approach has been employed, and has been validated by comparing with two analytical solutions. The results have been all given in non-dimensional form, and within the context of the range of parameters that have been studied, the following recommendations can be made for shape memory alloys (SMA) actuator design: (i) an uncertainty in the thermal boundary condition is not as important as long as the design process allows for a full transformation back to martensite at the end of a cycle of martensite-austenite-martensite thermal transformation, (ii) uncertainties in the thermal boundary condition, convection coefficient and thermal material properties are not as important when the phase transformation in a SMA is induced by stress.
机译:本文报告了一种计算研究,该研究涉及可变材料特性和环境条件(热边界条件和对流系数)对形状记忆合金线的影响,这些形状记忆合金线经历(i)零应力,热诱导相变和(ii)应力诱导恒定应力速率下的相变。已经采用了有限差分数值方法,并且已经通过与两种解析解进行比较而得到了验证。结果均以无量纲形式给出,并且在已研究的参数范围内,可以针对形状记忆合金(SMA)执行器设计提出以下建议:(i)热的不确定性边界条件并不重要,只要设计过程允许在马氏体-奥氏体-马氏体热转变循环结束时完全转变回马氏体,(ii)热边界条件,对流系数和热材料的不确定性当应力引起SMA中的相变时,特性并不重要。

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