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首页> 外文期刊>Computational Materials Science >Modeling progressive delamination of laminated composites by discrete element method
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Modeling progressive delamination of laminated composites by discrete element method

机译:用离散单元法模拟层状复合材料的渐进分层。

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Discrete element method (DEM) was used to model progressive delamination of fiber reinforced composite laminates. The anisotropic composite plies were constructed through a hexagonal packing of particle elements. Contacts between the particles were represented by parallel bonds with the verified normal and shear elastic properties. The ply interface was characterized by a contact softening model with a bilinear elastic behavior which is similar to the cohesive zone model in the continuum mechanics. DCB, ELS and FRMM tests were simulated by the DEM model to assess its capability of modeling mode I, mode II and mix mode fracture of delamination, respectively. Good agreements were observed between the DEM and existing numerical and experimental results of loading curves, which confirmed that the DEM model can be used to simulate initiation and propagation of composite delamination, with more insights into microscopic material behavior, such as damage extension and plastic zone.
机译:离散元素方法(DEM)用于模拟纤维增强复合材料层压板的渐进分层。各向异性复合层是通过颗粒元素的六方堆积构造而成的。颗粒之间的接触由具有经验证的法向和剪切弹性特性的平行键表示。层界面的特征在于具有双线性弹性行为的接触软化模型,该模型类似于连续体力学中的内聚区模型。通过DEM模型模拟DCB,ELS和FRMM测试,以评估其对I,II和混合模式分层断裂建模的能力。观察到DEM与现有的载荷曲线数值和实验结果之间达成了良好的一致性,这证实了DEM模型可用于模拟复合材料分层的引发和传播,并且可以更深入地了解微观材料的行为,例如破坏扩展和塑性区。

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