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A combined analytical-numerical analysis on multidirectional finite bending of functionally graded temperature-sensitive hydrogels

机译:功能梯度温度敏感水凝胶多方向有限弯曲的组合分析-数值分析

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Recently, temperature-sensitive hydrogels have been employed widely in various applications such as switches and actuators. Considering the discontinuity in the stresses and deformation fields of multilayers, in this article, we developed a new analytical method to study the swelling-induced finite bending of temperature-sensitive functionally graded hydrogels under plane-strain condition. The cross-linked density distribution along strip thickness varies linearly or exponentially which causes the switch to bend in response to temperature variation. To clarify the actuation mechanism and probe the various effects of parameters on switches' thermomechanical response, a semi-analytical approach is developed. Finite element method is employed to validate the deformation of functionally graded temperature-sensitive hydrogel layer results. The stresses and deformation fields, bending curvature, and semi-angle are investigated using semi-analytical and numerical methods for several cases in one-directional and bidirectional bending switches. The continuous stresses and deformation fields and multiple neutral axes are illustrated which have crucial role in designing switches.
机译:近来,对温度敏感的水凝胶已广泛用于各种应用中,例如开关和致动器。考虑到多层结构应力和变形场的不连续性,本文开发了一种新的分析方法,以研究平面应变条件下温度敏感的功能梯度水凝胶的溶胀诱导的有限弯曲。沿着带厚度的交联密度分布线性或指数变化,这导致开关响应温度变化而弯曲。为了阐明促动机制并探究参数对开关热机械响应的各种影响,开发了一种半分析方法。采用有限元方法来验证功能梯度温度敏感水凝胶层结果的变形。在单向和双向弯曲开关的几种情况下,使用半解析和数值方法研究了应力和变形场,弯曲曲率和半角度。图示了连续应力和变形场以及多个中性轴,它们在设计开关时起着至关重要的作用。

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