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The effect of geometric imperfections on the buckling behaviour of composite laminated cylinders under external hydrostatic pressure

机译:几何缺陷对复合材料叠层圆柱体在外部静水压力下屈曲行为的影响

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摘要

Using a new FE modelling procedure for the accurate representation of a geometrically imperfect cylinder, the present study investigates the effect of the initial imperfection magnitude on the cylinder buckling load, when it is loaded by external hydrostatic pressure. The buckling behaviour of a carbon/epoxy filament wound cylinder is initially studied and the modelling procedure is validated through a comparison between calculated and experimental results. Various FE models are developed and evaluated, with increasing degree of complexity. The method is then applied to a cylinder with different end supports, to assess how the boundary conditions together with the imperfections affect the buckling behaviour. Finally, the effect of imperfection magnitude is investigated, leading to the calculation of knockdown factors as low as 0.6.
机译:本研究使用新的有限元建模程序来精确表示几何上不完美的圆柱,当外部静水压力加载时,初始不完美大小对圆柱屈曲载荷的影响。最初研究了碳/环氧树脂长丝缠绕圆柱体的屈曲行为,并通过比较计算结果和实验结果验证了建模过程。随着复杂程度的提高,开发和评估了各种有限元模型。然后将该方法应用于具有不同端支撑的圆柱体,以评估边界条件以及缺陷如何影响屈曲行为。最后,研究了缺陷量级的影响,从而计算出击倒因子低至0.6。

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