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Fatigue analysis of shape memory alloy helical springs

机译:形状记忆合金螺旋弹簧的疲劳分析

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摘要

Estimating the functional as well as structural fatigue life of shape memory alloy (SMA) components has become a challenging issue for researchers. In current work, by considering the effects of large deformations, a rate-dependent energy-based model is developed to predict behavior of SMA helical springs under cyclic mechanical loadings. The effects of strain rate, convective heat transfer coefficient, and mean applied displacement to an SMA spring on its responses are investigated. SMA springs are fabricated through shape setting NiTi wires, and simple tension and fatigue tests are conducted on the fabricated specimens at different temperatures. Fatigue curves are presented in terms of variations in the amount of dissipated energy in stabilized force-displacement response with the number of cycles to failure. The amount of dissipated energy is calculated using the developed model, and the theoretically-predicted fatigue lives are shown to be in a good agreement with experimental results. Therefore, the presented approach is found to be a reliable method to predict lifetime of SMA springs in practice. The fatigue curves confirm the influence of loading frequency on the fatigue life.
机译:估计功能的功能以及形状记忆合金(SMA)组件的结构疲劳寿命已成为研究人员的挑战性问题。在当前工作中,通过考虑大变形的影响,开发了一种速率依赖的能量基模型,以预测循环机械载荷下的SMA螺旋弹簧的行为。研究了应变速率,对流传热系数和平均施加对其反应的SMA弹簧的影响。 SMA弹簧通过形状设定NITI线制造,并且在不同温度下的制造标本上进行简单的张力和疲劳试验。疲劳曲线以稳定的力 - 位移响应的溶胀能量的变化呈现,与失败的循环次数。使用开发的模型计算出耗散的能量,理论上预测的疲劳寿命被证明与实验结果吻合良好。因此,发现所提出的方法是一种可靠的方法,可以在实践中预测SMA弹簧的寿命。疲劳曲线证实了装载频率对疲劳寿命的影响。

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