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Onset of swell-induced surface instability of hydrogel layers with depth-wise graded material properties

机译:具有深度梯度材料特性的水凝胶层膨胀诱发的表面不稳定性的开始

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摘要

A rich variety of instability patterns have been observed on the surface of hydrogel layers with depth wise variation in material properties. In this paper, a state space method and a finite difference method are developed to predict the critical condition for onset of surface instability for hydrogel layers with continuously graded material properties in the thickness direction. Both methods are benchmarked by comparing to analytical solutions for homogeneous hydrogel layers and hydrogel bilayers. While the finite difference method often requires a large number of nodes to achieve convergence, the state space method requires relatively fewer sub-layers for continuously graded layers. The results for linearly and exponentially graded hydrogel layers show that the critical swelling ratio and corresponding critical wavelength both depend on the gradient profile of the crosslink density. The present study may provide theoretical guidance for analyzing and designing surface instability and surface patterns in hydrogel layers. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在水凝胶层的表面上已观察到多种不稳定性图案,其中材料特性随深度变化。本文开发了一种状态空间方法和有限差分方法来预测在厚度方向上具有连续渐变材料特性的水凝胶层的表面不稳定性发生的临界条件。通过与均质水凝胶层和水凝胶双层的分析溶液进行比较,对这两种方法进行了基准测试。虽然有限差分方法通常需要大量节点才能达到收敛,但是状态空间方法对于连续渐变的层需要相对较少的子层。线性和指数分级的水凝胶层的结果表明,临界溶胀率和相应的临界波长均取决于交联密度的梯度曲线。本研究可为分析和设计水凝胶层表面不稳定性和表面图案提供理论指导。 (C)2016 Elsevier Ltd.保留所有权利。

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