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An analytical model for interactive design of cylindrical composite ducts with upright bolted flanges

机译:带有直立螺栓法兰的圆柱形复合管道交互式设计的解析模型

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摘要

A novel closed-form analytical model is described and applied to predict the stiffness and stress distributions around the circumference of cylindrical composite ducts with upright bolted flanges. Each ply in the laminated flange or shell section of such a duct is laid-up of circular segments, or "gores", which are stamped out of a prepreg unidirectional tape or woven fabric, through a "cookie-cutter" type operation. The gores are then butted in the circumferential direction, constrained by tooling in the radial direction, to complete the circular contour of each ply. The individual plies are stacked over each other in an interleaved sequence, so that every transition region from one gore to another is fully covered by the continuous gores of the adjacent plies. Typical results generated by this model are illustrated here for a Carbon T-300/Bismaleimide material system. The results indicate that the size of the gore pieces can be increased in order to reduce manufacturing costs, without significant stiffness or weight penalties, if the interleaving pattern is properly tailored to specific loading scenarios.
机译:描述了一种新颖的闭合形式的分析模型,并将其应用于预测带有直立螺栓法兰的圆柱形复合管道周围的刚度和应力分布。在这种管道的层压凸缘或外壳部分中的每个层片都是通过“曲奇切刀”式操作从预浸料单向带或机织织物中冲压出的圆形节段或“格栅”叠置而成。然后,在径向上通过工具约束将孔沿周向对接,以完成每个层的圆形轮廓。各个层以交错的顺序彼此堆叠,从而从一个孔到另一个孔的每个过渡区域都被相邻层的连续孔完全覆盖。此模型产生的典型结果在此说明了碳T-300 /铋亚胺材料系统。结果表明,如果交织图案适当地适应于特定的加载情况,则可以增加冲孔块的尺寸以降低制造成本,而不会产生明显的刚度或重量损失。

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