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首页> 外文期刊>Composite Structures >Prediction of debonding growth in two-dimensional RVEs using an extended interface element based on continuum damage mechanics concept
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Prediction of debonding growth in two-dimensional RVEs using an extended interface element based on continuum damage mechanics concept

机译:基于连续损伤力学概念的扩展接口元素,使用扩展界面元素预测二维河流的剥离增长

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摘要

In the present study, a new interface model based on continuum damage mechanics (CDM) is developed to investigate the fiber-matrix interfacial debonding in the composite material. This model differs from Voronoi cell finite element and cohesive zone element method. To this purpose, a 2D classical elasticity formulation with non-interactive strength-based criteria and complex variable method with non-interactive energy-based criteria are applied for the analysis of the debond onset and propagation in an RVE with a single fiber, respectively. Then, the CDM approach is used to bridge between analytical and numerical methods. The developed model based on CDM is implanted into ANSYS commercial software to compare the accuracy of the proposed method with the obtained results by the cohesive zone model in RVEs containing single and multiple fibers. The admissible matching between the obtained stress-strain responses reveals the capability of the proposed approach to predict the fiber-matrix debonding as a primary damage mode in composite materials.
机译:在本研究中,开发了一种基于连续损伤力学(CDM)的新界面模型,以研究复合材料中的纤维矩阵界面剥离。该模型与Voronoi Cell有限元和粘性区域元素法不同。为此目的,利用具有非交互式强度的标准和复杂可变方法的2D经典弹性配方应用于分别用单纤维的凹陷衰竭和传播的分析。然后,CDM方法用于在分析和数值方法之间进行桥接。基于CDM的开发模型被植入到ANSYS商业软件中,以比较所得方法的准确性通过含有单纤维和多纤维的圆顶中的粘性区域模型与所得的结果。所获得的应力 - 应变响应之间的允许匹配揭示了所提出的方法预测纤维 - 基质剥离作为复合材料中的初级损伤模式的能力。

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