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A consistent anisotropic damage model for laminated fiber-reinforced composites using the 3D-version of the Puck failure criterion

机译:使用Puck破坏准则的3D版本的层压纤维增强复合材料的一致各向异性损伤模型

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摘要

This paper presents a consistent anisotropic damage model for laminated fiber-reinforced composites relying on the 3D-version of the Puck failure criterion. The current model is based on ply failure mechanisms (fiber and inter-fiber failures) incorporating energetic considerations into the progressive damage evolution. The proposed formulation is implemented into the implicit FE commercial package ABAQUS using the user-defined capability UMAT. Additionally, the current damage model is combined with a locking-free solid shell formulation via the user-defined subroutine UEL in order to account for geometrical nonlinear effects in thin-walled applications. The reliability of the current formulation is first examined by means of several benchmark applications, and subsequently, the obtained numerical predictions are compared with experimental data corresponding to an open hole tension test. These applications show the practicability and accuracy of the proposed methodology for triggering damage in composite laminates, providing a robust modeling framework suitable for general specimens and loading conditions.
机译:本文基于Puck破坏准则的3D版本,提出了层合纤维增强复合材料的一致各向异性损伤模型。当前模型基于层破坏机制(纤维和纤维间破坏),将能量考虑因素纳入了渐进式损伤演化过程中。使用用户定义的功能UMAT,将所提出的公式实施到隐式FE商业软件包ABAQUS中。此外,当前损坏模型通过用户定义的子例程UEL与无锁固体外壳公式结合在一起,以解决薄壁应用中的几何非线性影响。首先通过几种基准应用检查当前配方的可靠性,然后将获得的数值预测与对应于裸眼张力测试的实验数据进行比较。这些应用表明,所提出的方法可以触发复合材料层压板中的损伤,具有实用性和准确性,可提供适用于一般试样和加载条件的强大建模框架。

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