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Analytical and numerical modeling of shape memory alloy Negator springs for constant-force, long-stroke actuators

机译:用于恒力,长行程执行器的形状记忆合金负向弹簧的分析和数值模型

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This article explores the merits of shape memory alloy Negator springs as powering elements for solid-state actuators. A Negator spring is a spiral spring made of strip of metal wound on the flat with an inherent curvature such that, in repose, each coil wraps tightly on its inner neighbor. The unique characteristic of Negator springs is the nearly constant force needed to unwind the strip for very large, theoretically infinite deflections. Moreover, the flat shape, having a high area-over-volume ratio, grants improved bandwidth compared to any solution with solid wires or helical springs. The shape memory alloy material is modeled as elastic in austenitic range while an exponential continuum law is used to describe the martensitic behavior. The mathematical model of the mechanical behavior of shape memory alloy Negator springs is provided, and their performances as active elements in constant-force, long-stroke actuators are assessed. The shape memory alloy Negator spring is also simulated in a commercial finite element software, ABAQUS, and its mechanical behavior is estimated through finite element analyses. The analytical and the numerical predictions are in good agreement, both in martensitic and in austenitic ranges.
机译:本文探讨了形状记忆合金负向弹簧作为固态执行器动力元件的优点。 Negator弹簧是一种螺旋弹簧,由金属带制成,螺旋形弹簧以固有的曲率缠绕在平板上,从而使每个线圈在其内部相邻线圈上紧紧缠绕。 Negator弹簧的独特特征是,在非常大的,理论上无限大的挠度下,解开钢带所需的力几乎恒定。此外,与采用实心线材或螺旋弹簧的任何解决方案相比,具有高面积体积比的扁平形状可改善带宽。形状记忆合金材料被建模为在奥氏体范围内具有弹性,而指数连续法则用于描述马氏体行为。提供了形状记忆合金负向弹簧力学行为的数学模型,并评估了它们在恒力,长行程执行器中作为主动元件的性能。形状记忆合金Negator弹簧也在商业有限元软件ABAQUS中进行了模拟,其机械性能通过有限元分析进行估算。在马氏体和奥氏体范围内,分析和数值预测都吻合良好。

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