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Crack density-based semi-quantitative estimation for leak rate of composite laminates with thin-plies

机译:基于裂缝的基于密度的半定量估计,具有薄层复合层压板的泄漏率

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摘要

To predict the leakage of composite fuel tanks due to matrix cracks, this paper proposes novel simulation schemes: (1) A semi-quantitative leak rate estimation method is developed based on the crack intersection area; (2) The semi-analytical damaged constitutive model is obtained by a small amount of micro-mechanical finite element analysis (FEA); (3) The mixed mode crack density is estimated by using the FEA of laminates, which involves the progressive damaged properties; (4) The crack intersecting area is estimated based on the crack density and the crack opening displacement (COD), which is considered as the product of the average unit COD and the strain component. Two sets of simulations are set at room temperature to validate the method in detail, to verify the mechanics of leakage due to the matrix cracks, and to find out the effect of the thin-plies on the leakage. This paper aims at providing new simulation schemes for damaged constitutive model, crack density prediction and leak rate estimation of the composite laminates.
机译:为了预测由于基质裂缝引起的复合燃料箱的泄漏,本文提出了新的模拟方案:(1)基于裂缝交叉区开发了半定量泄漏速率估计方法; (2)半分析损坏的本构模型是通过少量微机械有限元分析(FEA)获得的; (3)利用层压板的FEA估计混合模式裂纹密度,涉及进步受损性质; (4)基于裂缝密度和裂缝开口位移(COD)估计裂缝交叉区域,其被认为是平均单位COD和应变组分的产物。两组模拟设置在室温下,详细验证该方法,以验证由于矩阵裂缝引起的泄漏机制,并找出薄层对泄漏的影响。本文旨在为复合层压板的损坏构成模型,裂缝密度预测和泄漏率估计提供新的仿真方案。

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