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Validation of a simplified analysis for the simulation of delamination of CFRP composite laminated materials under pure mode Ⅰ

机译:纯模式Ⅰ下CFRP复合层合材料脱层模拟简化分析的验证

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The cohesive zone modelling (CZM) is extensively used for the simulation of delamination propagation of composite laminated materials. The Finite Element (FE) method is able to support the CZM. Nevertheless, a refined mesh in the cohesive zone is required to describe accurately the energy dissipation. A 1D-beam simplified analysis based on the macro-element (ME) technique has been developed for the stress analysis of bonded joints, supporting damage evolution adhesive material law. The objective of this paper is to provide a validation of the ability of this macro-element technique for the simulation of delamination propagation in pure mode I of composite laminates. This validation is led through a comparative study between experimental test results, 3D FE model predictions and 1D-beam ME predictions. The experimental test campaign allows in particular for the assessment of the interlaminar strength and critical energy release rate in pure mode I. The thermoset unidirectional (UD) prepreg composite material IMA/M21E is used for this paper.
机译:内聚区模型(CZM)被广泛用于模拟复合材料的分层传播。有限元(FE)方法能够支持CZM。但是,需要在内聚区中使用精细的网格来准确描述能量耗散。已经开发了基于宏单元(ME)技术的一维梁简化分析,用于键合接头的应力分析,支持了损伤演化粘合剂材料定律。本文的目的是验证这种宏观元素技术在复合材料层板的纯模式I下模拟分层传播的能力。该验证是通过对实验测试结果,3D FE模型预测和1D光束ME预测之间的比较研究进行的。实验测试活动尤其允许评估纯模式I下的层间强度和临界能量释放速率。本文使用热固性单向(UD)预浸料复合材料IMA / M21E。

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