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Elastoplastic CDM model based on Puck's theory for the prediction of mechanical behavior of Fiber Reinforced Polymer (FRP) composites

机译:基于Puck理论的弹塑性CDM模型用于预测纤维增强聚合物(FRP)复合材料的力学性能

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In this paper, the plane stress version of the Puck’s failure theory is used as an indicator of the intra-laminar meso-damage initiation. The thermodynamically consistent damage evolution law is defined to accumulate the damage leading to the subsequent stiffness degradation coupled with the isotropic hardening plasticity. The model is formulated in incremental form keeping in view the implementation by following the plasticity theory which is later used in the Return Mapping Algorithm (RMA). In the implicit scheme based on the Newton-Raphson approach, the consistent tangent operator is derived for the current model. The developed model has been implemented in ABAQUS/Standard via UMAT subroutine in a strain-driven problem where strain tensor is provided as an independent argument into the solution scheme. The non-linear mechanical behavior and ultimate failure of Carbon Fiber Reinforced Polymers (CFRPs) laminates are predicted for the small strain time-independent boundary value problem. The results are compared with the experimental results collected from the previously published literature which exhibit better correspondence.
机译:在本文中,Puck破坏理论的平面应力版本被用作指示层内细观破坏起始的指标。定义热力学一致的损伤演化定律,以累积导致后续刚度降低以及各向同性硬化塑性的损伤。遵循可塑性理论,以增量形式制定模型,同时遵循可塑性理论,该理论随后在返回映射算法(RMA)中使用。在基于Newton-Raphson方法的隐式方案中,为当前模型导出了一致的切线算子。在应变驱动的问题中,已通过ABAQUS / Standard通过UMAT子例程实现了开发的模型,其中应变张量作为解决方案的独立参数提供。碳纤维增强聚合物(CFRPs)层压板的非线性力学行为和最终破坏是针对小应变时间无关的边值问题而预测的。将结果与从先前发表的文献中收集的实验结果进行比较,这些文献显示出更好的一致性。

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