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An Elastic Interface Model for the Delamination of Bending-Extension Coupled Laminates

机译:弯曲延伸耦合层压层分层的弹性界面模型

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摘要

The paper addresses the problem of an interfacial crack in a multi-directional laminated beam with possible bending-extension coupling. A crack-tip element is considered as an assemblage of two sublaminates connected by an elastic-brittle interface of negligible thickness. Each sublaminate is modeled as an extensible, flexible, and shear-deformable laminated beam. The mathematical problem is reduced to a set of two differential equations in the interfacial stresses. Explicit expressions are derived for the internal forces, strain measures, and generalized displacements in the sublaminates. Then, the energy release rate and its Mode I and Mode II contributions are evaluated. As an example, the model is applied to the analysis of the double cantilever beam test with both symmetric and asymmetric laminated specimens.
机译:本文解决了具有可能弯曲延伸耦合的多向层压光束中的界面裂缝的问题。裂缝尖端元件被认为是通过可忽略厚度的弹性脆性界面连接的两个子胺的组装。每个子簇都被建模为可伸长型,柔性和剪切可变形的层压梁。数学问题减少到界面应力中的一组两个微分方程。用于内部力,应变测量和子胺中的广义位移的显式表达式。然后,评估能量释放率及其模式I和模式II贡献。作为示例,该模型应用于对称和不对称层压样本的双悬臂梁测试的分析。

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