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Design and analysis of filament-wound composite pressure vessels based on non-geodesic winding

机译:基于非大地绕组的绕线复合压力容器设计与分析

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In this paper a novel design approach was proposed for determining the optimal winding parameters of composite pressure vessels based on non-geodesic trajectories. With the aid of the differential theory and winding principles, the non-geodesic trajectories were derived for various tangent points. The obtained non-geodesics for composite pressure vessels were simulated using MATLAB to verify the validity of the trajectory design. The influence of the number of the tangent points and the roving bandwidth on the non-geodesic winding patterns was evaluated. The optimal number of the tangent points and the roving bandwidth were then determined while ensuring fiber stability and full coverage on the mandrel. The finite element model of the pressure vessel was established, taken variable ply thicknesses and angles along the dome meridian into account. In addition, the stress distributions of the aluminum liner and the composite overwrap were obtained and the burst pressure of the pressure vessel was predicted. The specimen of a composite pressure vessel was fabricated using the filament winder and the experimental results were consistent with the theoretically predicted ones. It is concluded that the present method is of great significance for design and manufacture of composite pressure vessels.
机译:本文提出了一种基于非大地轨道确定复合压力容器最佳绕线参数的新颖设计方法。借助微分理论和绕线原理,得出了各个切点的非大地轨迹。利用MATLAB对获得的复合压力容器的非大地测量学进行了仿真,以验证轨迹设计的有效性。评估了切点数和粗纱带宽对非大地绕组模式的影响。然后确定切线点的最佳数量和粗纱带宽,同时确保纤维稳定性和心轴上的完全覆盖率。建立了压力容器的有限元模型,考虑了沿穹顶子午线的可变层厚度和角度。另外,获得了铝衬套和复合材料外包装的应力分布,并预测了压力容器的破裂压力。用长丝卷绕机制作了复合压力容器的标本,实验结果与理论预测相符。结论是,本方法对复合压力容器的设计和制造具有重要意义。

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