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Complex transformation field created by geometrical gradient design of NiTi shape memory alloy

机译:NiTi形状记忆合金的几何梯度设计产生的复杂相变场

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摘要

Owing to geometrical non-uniformity, geometrically graded shape memory alloy (SMA) structures by design have the ability to exhibit different and novel thermal and mechanical behaviors compared to geometrically uniform conventional SMAs. This paper reports a study of the pseudoelastic behavior of geometrically graded NiTi plates. This geometrical gradient creates partial stress gradient over stress-induced martensitic transformation, providing enlarged stress controlling interval for shape memory actuation. Finite element modeling framework has been established to predict the deformation behavior of such structures in tensile loading cycles, which was validated by experiments. The modeling results show that the transformation mostly propagates along the gradient direction as the loading level increases.
机译:由于几何形状的不均匀性,与几何形状均匀的常规SMA相比,设计的几何渐变形状记忆合金(SMA)结构具有表现出不同且新颖的热和机械性能的能力。本文报道了几何梯度NiTi板的拟弹性行为的研究。该几何梯度会在应力引起的马氏体相变上产生局部应力梯度,从而为形状记忆驱动提供更大的应力控制间隔。建立了有限元建模框架来预测这种结构在拉伸载荷循环中的变形行为,并通过实验进行了验证。建模结果表明,随着载荷水平的增加,转换过程大多沿梯度方向传播。

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