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Elastoplastic and progressive failure analysis of fiber-reinforced composites via an efficient nonlinear microscale model

机译:纤维增强复合材料的弹塑性和渐进破坏分析,通过有效的非线性微尺度模型

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This paper presents numerical results concerning the nonlinear and failure analysis of fiber-reinforced composites. The micromechanical framework exploits a class of refined 1D models based on the Carrera Unified Formulation (CUF) having a variable kinematic description. The recently developed CUF micromechanics is a framework for the nonlinear modeling and exploits the ability of the CUF to predict accurate 3D stress fields with reduced computational overheads. The present formulation features the von Mises J_2 theory for the pre-peak nonlinearity observed in matrix constituents, and the crack-band theory to capture the damage progression. Numerical examples and comparisons with results from literature assess the accuracy and efficiency of the proposed framework. The paper highlights the applicability of CUF models as an efficient micromechanical platform for nonlinear and progressive failure analysis for fiber-reinforced composites with potentially major advantages in the perspective of multiscale modeling.
机译:本文提供了有关纤维增强复合材料的非线性和破坏分析的数值结果。微机械框架基于具有可变运动学描述的Carrera统一公式(CUF),利用了一类改进的一维模型。最近开发的CUF微力学是用于非线性建模的框架,并利用CUF的能力预测了精确的3D应力场,并减少了计算开销。本公式的特征在于,对于在基体成分中观察到的峰前非线性,采用了冯·米塞斯J_2理论,并采用了裂纹带理论来记录损伤的进展。数值例子和与文献结果的比较评估了所提出框架的准确性和效率。本文强调了CUF模型作为纤维增强复合材料非线性和渐进式失效分析的有效微机械平台的适用性,在多尺度建模方面具有潜在的主要优势。

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