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A highly efficient prediction of delamination migration in laminated composites using the extended cohesive damage model

机译:使用扩展的内聚损伤模型高效预测层压复合材料中的分层迁移

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摘要

The extended cohesive damage model (ECDM) has been recently developed by authors for predicting multicrack failure mechanism in fibre materials. The ECDM is Partition of Unity Method (PUM) based and is a condensed FEM formulation through eliminating the enriched degree of freedoms (DoFs) for nonlinear fracture analysis. To account for the cohesive crack effect, an equivalent damage scalar relating to strain filed is introduced in terms of energy dissipation during the post-failure process to characterize the damage evolution. The ECDM is capable of characterizing discontinuity with conventional DoFs only, thus it is significantly efficient in modelling multicrack propagation. This paper investigates the performance of the ECDM through single element tests as well as modelling the delamination migration in laminated composites. Detailed comparison with experimental work and standard cohesive zone model (CZM) is carried out. This investigation shows the ECDM exhibits excellent efficiency and accuracy compered to CZM. The ECDM can reduce the CPU time in prediction of delamination migration of a laminated composite specimen by more than 90% compared to CZM. Therefore, the ECDM is a robust computational approach for highly efficient predicting delamination migration in laminated composites.
机译:作者最近开发了扩展的内聚破坏模型(ECDM),用于预测纤维材料中的多裂纹破坏机理。 ECDM是基于统一方法分区(PUM)的,并且是通过消除非线性断裂分析的丰富自由度(DoF)形成的简化FEM公式。为了解决内聚裂纹的影响,在失效后过程中,根据能量耗散引入了与应变相关的等效损伤标量,以表征损伤的发展。 ECDM仅能描述传统DoF的不连续性,因此在建模多裂纹传播方面非常有效。本文通过单元素测试以及层状复合材料中的分层迁移建模来研究ECDM的性能。进行了与实验工作和标准内聚区模型(CZM)的详细比较。该调查表明,ECDM具有与CZM相比出色的效率和准确性。与CZM相比,ECDM可以将预测层压复合材料样品分层迁移的CPU时间减少90%以上。因此,ECDM是用于高效预测层压复合材料中分层迁移的可靠计算方法。

著录项

  • 作者

    Li Xiaole; Chen Jiye;

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  • 年度 2017
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  • 原文格式 PDF
  • 正文语种 eng
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