首页> 外文期刊>International Journal of Solids and Structures >The LS1 model for delamination propagation in multilayered materials at 0°/θ° interfaces: A comparison between experimental and finite elements strain energy release rates
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The LS1 model for delamination propagation in multilayered materials at 0°/θ° interfaces: A comparison between experimental and finite elements strain energy release rates

机译:LS1模型在0°/θ°界面在多层材料中的分层传播:实验和有限元应变能释放速率之间的比较

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a b s t r a c t The aim of this paper is to analyze delaminated multilayered plates under classical loads using an alternative model to the existing three-dimensional finite element methods (3D-FEM). The proposed alternative model, named LS1, is a layerwise stress model proving significantly less computationally expensive while accurate and efficient. In particular this paper uses experimental data from different simple test specimens in a finite element code, which is based on LS1, in order to calculate strain energy release rates (SERR) in different modes of delamination. The focus is on two types of delaminated interfaces 0°/0° and 0°/45°. The obtained SERR results are in very good agreement with the experimental values and, in the case of mixed-mode delamination, they are as accurate as the SERR obtained by 3D-FE models. The other interesting property of the LS1 model is the very fast calculation speed as the SERR can be analytically deduced from interfacial stresses. This relation which only depends on the stacking sequence and the position of delamination is presented.
机译:本文的目的是使用现有的三维有限元方法(3D-FEM)的替代模型来分析经典载荷下的分层多层板。提议的名为LS1的替代模型是一种分层应力模型,它证明了计算量大为减少,同时又准确又有效。特别是,本文使用基于LS1的有限元代码使用来自不同简单测试样本的实验数据,以计算不同分层模式下的应变能释放率(SERR)。重点是两种类型的分层界面0°/ 0°和0°/ 45°。获得的SERR结果与实验值非常吻合,并且在混合模式分层的情况下,它们与3D-FE模型获得的SERR一样准确。 LS1模型的另一个有趣特性是计算速度非常快,因为可以从界面应力解析得出SERR。该关系仅取决于堆叠顺序和分层位置。

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