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Warping deformation analysis of angle-ply fiber metal laminates with slippage during manufacturing

机译:角层金属纤维层压板制造过程中的翘曲变形分析

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Thermal residual stress generated during the manufacturing process may induce the warping deformation of fiber metal laminates (FMLs). An analytical model considering slippage effect due to thermal residual stress is developed to study the warping deformation for angle-ply FMLs, which is also validated by the measurement of warping deformation for angle-ply [Al/-45/45/Al] FML. The warping deformations for angle-ply FMLs are greatly associated with the geometry parameters. The effect of laminate length, metal layer thickness, aspect ratio and ply orientation angle on the warping deformation of angle-ply FMLs are investigated. The analytical results show that the ply orientation angle of FMLs does not influence the bifurcation point but change the final stable shapes. By calculating the contribution of the thermal strain energy and slippage strain energy to the total potential energy, it is shown that the slippage effect cannot be neglected in the prediction of the warping deformation for angle-ply FMLs.
机译:在制造过程中产生的热残余应力可能会引起纤维金属层压板(FML)的翘曲变形。建立了一种考虑热残余应力引起的滑移效应的分析模型,以研究角层FML的翘曲变形,并通过测量角层[Al / -45 / 45 / Al] FML的翘曲变形进行了验证。角铺层FML的翘曲变形与几何参数密切相关。研究了层压长度,金属层厚度,长宽比和层取向角对角层FML翘曲变形的影响。分析结果表明,FML的层定向角不会影响分叉点,但会改变最终的稳定形状。通过计算热应变能和滑移应变能对总势能的贡献,表明滑移效应在角板FML翘曲变形的预测中不能忽略。

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