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Strength prediction of notched thin ply laminates using finite fracture mechanics and the phase field approach

机译:用有限断裂力学和相场法预测缺口薄层板的强度

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摘要

Thin ply laminates are a new class of composite materials with great potential for application in the design of thinner and highly optimized components, resulting in potential weight savings and improved mechanical performance. These new composites can stir the development of lighter structures, overcoming current design limitations as well as notably reducing the onset and development of matrix cracking and delamination events. This paper presents the application of two recent modeling methods for the failure analysis and strength prediction of open-hole thin ply laminates under tensile loading,udwhich exhibit a brittle response upon failure: (i) the analytical coupled energy-stress Finite Fracture Mechanics (FFMs) technique, and (ii) the FE-based Phase Field (PF) approach for fracture that is incorporated into an enhanced assumed solid shell element. The predictions obtained using both strategies are compared with experimental data. These correlations exhibit a very satisfactory level of agreement, proving the robustness and reliability of both methods under consideration.
机译:薄层板层压板是一类新型的复合材料,在设计更薄和高度优化的组件方面具有巨大的潜力,从而可以减轻重量并改善机械性能。这些新的复合材料可以激发更轻的结构的发展,克服当前的设计限制,并显着减少基体开裂和分层事件的发生和发展。本文介绍了两种最新的建模方法在开孔薄层层压板在拉伸载荷下的失效分析和强度预测中的应用,它们在失效时表现出脆性响应:(i)耦合分析的能量应力有限断裂力学( FFMs)技术,以及(ii)基于断裂的基于FE的相场(PF)方法,将其合并到增强的假定实心壳单元中。将两种策略获得的预测结果与实验数据进行比较。这些相关性显示出非常令人满意的一致性水平,证明了所考虑的两种方法的鲁棒性和可靠性。

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