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Application of variable slippage coefficients to the design of filament wound toroidal pressure vessels

机译:可变滑移系数在细丝缠绕环形压力容器设计中的应用

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The non-geodesics using variable slippage coefficients along the winding trajectories are gaining increasing attention for composite pressure vessels. The aim of this paper is to evaluate the influence of several slippage coefficient distributions on fiber trajectories and the resulting mass of toroidal pressure vessels. The distributions of slippage coefficients are represented in terms of three functions satisfying C-1 continuity. The governing equations for designing non-geodesics on a toroid are formulated using the given functions of slippage coefficients. For each function, the initial fiber angle and the shell thickness are considered as the design variables, and the minimum mass is taken as the objective. With the aid of the classical lamination theory and the SQP algorithm, the optimal fiber trajectories are respectively determined for the given three slippage coefficient distributions, and the corresponding masses of the toroids are then obtained and compared to each other. The results indicate that toroids produced using variable slippage coefficients show improved performance than toroids using constant slippage coefficients; this is mainly due to the maximum utilization of the laminate strength. It is also revealed that the weight efficiency of toroidal vessels can be significantly improved using the quadratic distribution function of fiber slippage coefficients. (C) 2017 Elsevier Ltd. All rights reserved.
机译:沿着缠绕轨迹使用可变滑移系数的非大地电磁学越来越受到复合压力容器的关注。本文的目的是评估几种滑移系数分布对纤维轨迹和所产生的环形压力容器质量的影响。滑移系数的分布用满足C-1连续性的三个函数表示。使用给定的滑移系数函数,可以公式化设计环上非大地测量学的控制方程。对于每个功能,将初始纤维角度和外壳厚度视为设计变量,并以最小质量为目标。借助于经典的层合理论和SQP算法,分别针对给定的三个滑移系数分布确定了最佳的纤维轨迹,然后获得了相应的环面质量并进行了比较。结果表明,与使用恒定滑动系数的环形相比,使用可变滑动系数的环形显示出更好的性能;这主要是由于最大程度地利用了层压强度。还表明,使用纤维滑移系数的二次分布函数可以显着提高环形血管的重量效率。 (C)2017 Elsevier Ltd.保留所有权利。

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