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Analytical modelling and numerical simulation of the nonlinear deformation of hybrid fibre-metal laminates

机译:混杂纤维金属层压板非线性变形的解析模型与数值模拟

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摘要

GLARE laminates are an advanced hybrid material system consisting of alternating layers of thin aluminium sheets and unidirectional or biaxial reinforced high strength glass fibre/epoxy composite layers. The unique combination of ductile aluminium layers with high strength composite layers results in a unique fibre-metal laminate (FML) having light weight, outstanding fatigue resistance, excellent impact resistance, flame resistance and corrosion properties. This paper investigates the nonlinear tensile response and fracture behaviour of GLARE 4 and GLARE 5 laminates under in-plane loading. Both an analytical constitutive model based on a modified classical lamination theory, which incorporates the elasto-plastic behaviour of the aluminium alloy, and a numerical simulation based on finite element modelling are used to predict the stress-strain response and deformation behaviour of GLARE laminates. Good agreement is obtained between the model predictions and experimental results. The validated model can be used to optimize the microstructure including the metal type and thickness, the fibre type, orientation and volume fraction and the properties of the FMLs.
机译:GLARE层压板是一种先进的混合材料系统,由交替的铝薄板层和单向或双轴增强高强度玻璃纤维/环氧树脂复合层组成。延展性铝层与高强度复合层的独特结合形成了一种独特的纤维金属层压板(FML),重量轻,突出的抗疲劳性,出色的抗冲击性,阻燃性和腐蚀性能。本文研究了平面载荷作用下GLARE 4和GLARE 5层压板的非线性拉伸响应和断裂行为。基于修正的经典层合理论的分析本构模型(结合了铝合金的弹塑性行为)和基于有限元建模的数值模拟均用于预测GLARE层合板的应力应变响应和变形行为。模型预测与实验结果之间取得了很好的一致性。经过验证的模型可用于优化微观结构,包括金属类型和厚度,纤维类型,取向和体积分数以及FML的特性。

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