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Structural design and experimental investigation on filament wound toroidal pressure vessels

机译:细丝缠绕环形压力容器的结构设计和实验研究

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Composite toroidal pressure vessels have widely been used in many areas. In this paper a novel design approach for determining the winding parameters of filament wound toroidal pressure vessels was presented based on differential geometry and finite element method (FEM). The winding angle developments and the thickness distribution along the meridional direction were derived using the geodesic equation and fiber stability criteria. Then, a FEM-based design procedure was developed taking into account the variations of the laminate thickness and winding angle, in order to determine the optimal initial winding angle and lay-up. In addition, the rationality and accuracy of the present method was evaluated through the hydraulic test. The results show that the obtained fiber trajectories have good wind ability without fiber stacking or bridging. The results predicted using finite element simulation are consistent with the experimental data. Therefore, the present model and method provide an important reference for design and production of filament wound toroidal pressure vessels. (C) 2014 Elsevier Ltd. All rights reserved.
机译:复合环形压力容器已广泛用于许多领域。本文提出了一种基于微分几何和有限元方法确定细丝缠绕环形压力容器绕组参数的新颖设计方法。利用测地线方程和纤维稳定性准则推导了绕线角度的发展和沿子午线方向的厚度分布。然后,考虑到层压板厚度和缠绕角度的变化,开发了基于FEM的设计程序,以确定最佳的初始缠绕角度和铺层。另外,通过水压试验评价了本方法的合理性和准确性。结果表明,所获得的纤维轨迹具有良好的绕线能力,而不会发生纤维堆积或桥接的情况。使用有限元模拟预测的结果与实验数据一致。因此,本模型和方法为细丝缠绕环形压力容器的设计和生产提供了重要的参考。 (C)2014 Elsevier Ltd.保留所有权利。

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