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首页> 外文期刊>Composites Science and Technology >A progressive failure model for mesh-size-independent FE analysis of composite laminates subject to low-velocity impact damage
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A progressive failure model for mesh-size-independent FE analysis of composite laminates subject to low-velocity impact damage

机译:低速冲击损伤下复合材料层合板尺寸有限元分析的渐进破坏模型

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摘要

An original, ply-level, computationally efficient, three-dimensional (3D) composite damage model is presented in this paper, which is applicable to predicting the low velocity impact response of unidirectional (UD) PMC laminates. The proposed model is implemented into the finite Element (FE) code ABAQUS/ Explicit for one-integration point solid elements and validated against low velocity impact experimental results. Mesh-regularisation of the impact results is one of the greatest challenges in impact damage modelling of composite targets. Currently published mesh-regularisation strategies can produce niesh-size-inde-pendent impact results for a very limited range of mesh-sizes. The originality of the model presented in this paper is based on a novel mesh-regularisation strategy, which is applicable to predicting mesh-size-independent impact results for any target discretisation. Accurate modelling of composites' impact damage using a relatively coarse mesh, and thus at a much reduced computational cost when compared to existing techniques, can be achieved with the proposed method.
机译:本文提出了一种原始的,层级,计算效率高的三维(3D)复合材料损伤模型,该模型可用于预测单向(UD)PMC层压板的低速冲击响应。所提出的模型在单积分固体单元的有限元(FE)代码ABAQUS / Explicit中实现,并针对低速冲击实验结果进行了验证。冲击结果的网格正则化是复合目标的冲击损伤建模中的最大挑战之一。当前发布的网格正则化策略可以在非常有限的网格大小范围内产生独立于网格大小的碰撞结果。本文提出的模型的独创性基于一种新颖的网格正则化策略,该策略可用于预测任何目标离散化的网格大小无关的影响结果。使用现有的方法,可以使用相对粗糙的网格对复合材料的冲击破坏进行精确建模,因此与现有技术相比,计算成本大大降低。

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