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Mesh-objective two-scale finite element analysis of damage and failure in ceramic matrix composites

机译:陶瓷基复合材料损伤与破坏的网格目标两尺度有限元分析

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A mesh-objective two-scale finite element approach for analyzing damage and failure of fiber-reinforced ceramic matrix composites is presented here. The commercial finite element software suite Abaqus is used to generate macroscopic models, e.g., structural-level components or parts of ceramic matrix composites (CMCs), coupled with a second finite element code which pertains to the sub-scale at the fiber-matrix interface level, which is integrated seamlessly using user-generated subroutines and referred to as the integrated finite element method (IFEM). IFEM calculates the reaction of a microstructural sub-scale model that consists of a representative volume element (RVE) which includes all constituents of the actual material, e.g., fiber, matrix, and fiber/matrix interfaces, details of packing, and nonuniformities in properties. The energy-based crack band theory (CBT) is implemented within IFEM’s sub-scale constitutive laws to predict micro-cracking in all constituents included in the model. The communication between the micro- and macro-scale is achieved through the exchange of strain, stress, and stiffness tensors. Important failure parameters, e.g., crack path and proportional limit, are part of the solution and predicted with a high level of accuracy. Numerical predictions are validated against experimental results.
机译:本文提出了一种网格目标两尺度有限元方法,用于分析纤维增强陶瓷基复合材料的损伤和破坏。商业有限元软件套件Abaqus用于生成宏观模型,例如陶瓷基复合材料(CMC)的结构级组件或零件,以及与纤维矩阵界面处的子尺度有关的第二个有限元代码级别,它使用用户生成的子例程无缝集成,称为集成有限元方法(IFEM)。 IFEM计算微观结构子尺度模型的反应,该模型由代表性的体积元素(RVE)组成,该体积元素包括实际材料的所有成分,例如纤维,基质和纤维/基质界面,堆积细节以及性能不均匀性。基于能量的裂纹带理论(CBT)在IFEM的子尺度本构定律中得以实施,以预测模型中包括的所有成分的微裂纹。微观和宏观尺度之间的交流是通过应变,应力和刚度张量的交换来实现的。重要的故障参数(例如裂纹路径和比例极限)是解决方案的一部分,并且具有很高的预测精度。数值预测已针对实验结果进行了验证。

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