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A finite element framework for the interplay between delamination and buckling of rubber-like bi-material systems and stretchable electronics

机译:橡胶状双材料系统与可拉伸电子器件分层和屈曲相互作用的有限元框架

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摘要

In this study, a finite element (FE) framework for the analysis of the interplay between buckling and delamination of thin layers bonded to soft substrates is proposed. The current framework incorporates the following modeling features: (i) geometrically nonlinear solid shell elements, (ii) geometrically nonlinear cohesive interface elements, and (iii) hyperelastic material constitutive response for the bodies that compose the system. A fully implicit Newton-Raphson solution strategy is adopted to deal with the complex simultaneous presence of geometrical and material nonlinearities through the derivation of the consistent FE formulation. Applications to a rubber-like bi-material system under finite bending and to patterned stiff islands resting on soft substrate for stretchable solar cells subjected to tensile loading are proposed. The results obtained are in good agreement with benchmark results available in the literature, confirming the accuracy and the capabilities of the proposed numerical method for the analysis of complex three-dimensional fracture mechanics problems under finite deformations. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在这项研究中,提出了一个有限元(FE)框架,用于分析软基板上薄层的屈曲和分层之间的相互作用。当前框架包含以下建模功能:(i)几何非线性固体壳单元,(ii)几何非线性内聚界面元素,以及(iii)组成系统的主体的超弹性材料本构响应。通过推导一致的有限元公式,采用了完全隐式的牛顿-拉夫森求解策略来处理几何和材料非线性的复杂同时存在。提出了在有限弯曲下的橡胶状双材料系统以及搁置在软基底上的图案化刚性岛的应用,该岛用于承受拉伸载荷的可拉伸太阳能电池。所得结果与文献中的基准结果吻合良好,证实了所提出的数值方法在有限变形下分析复杂三维断裂力学问题的准确性和功能。 (C)2016 Elsevier Ltd.保留所有权利。

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