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Discrete element modeling of interface debonding behavior in composite material: Application to a fragmentation test

机译:复合材料中界面剥离行为的离散元素建模:应用于碎片测试

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This paper presents a 3D simulation of interface debonding in composite material using 3D Discrete Element Model (DEM). The simulation is based on the experimental results obtained by Guillebaud-Bonnafous and al. Bonnafous2012. A single fragmentation testing of an singer impregnated hemp yarn embedded into a epoxy matrix was investigated. In DEM, matrix and yarn are supposed to be brittle materials and follow a linear fracture model. The discrete elements of matrix are connected by the cohesive beams whereas the one of yarn are connected by the spring links. The cohesive contact laws are implemented to model interface debonding between yarn and matrix (yarn/matrix). Piecewise linear elastic laws usually used in Cohesive Zone Models are retained in this work. The numerical results obtained by DEM are compared with experiment data and finite element modeling on the stress-strain curve and the fragmentation process in yarn during the test. This comparison allows to validate the models used in DEM. To reduce the discrete elements number and save computational time, the bi-disperse medium in DEM for matrix and yarn is specifically elaborated in this study.
机译:本文采用3D离散元素模型(DEM)介绍了复合材料中界面剥离的3D仿真。该模拟基于Guillebaud-Bonnafous和Al获得的实验结果。 Bonnafous2012。研究了嵌入环氧基质中的歌手浸渍的大麻纱的单个碎片测试。在DEM中,基质和纱线应该是脆性材料并遵循线性骨折模型。基质的离散元件通过粘性梁连接,而纱线之一通过弹簧连杆连接。在纱线和矩阵(纱/矩阵)之间进行凝聚力联系法案以模拟界面剥离。在这项工作中保留了通常用于凝聚区域模型中的分段线性弹性法。将DEM获得的数值结果与实验数据和有限元建模进行比较,在试验期间纱线的纱线菌株和纱线碎片过程。此比较允许验证DEM中使用的模型。为了减少离散元件数量并节省计算时间,在该研究中明确地详细说明了用于矩阵和纱线的DEM中的双分散介质。

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