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首页> 外文期刊>Composite Structures >Curvature-controlled trajectory planning for variable stiffness composite laminates
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Curvature-controlled trajectory planning for variable stiffness composite laminates

机译:可变刚度复合层压板的曲率控制轨迹规划

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摘要

Variable-stiffness laminates can redistribute the applied load and increase critical buckling loads compared to traditional straight fiber laminates. To take full advantage of fiber reinforced composite materials, a practical trajectory planning method is generated based on the maximum principle stress vector field. A reference path is represented as a blend curve of a sequence of uniform cubic B-spline segments passing through some given maxi-stress points. Based on the local-support property of each B-spline segment, subsequent paths within single lamina can be easily obtained by shifting the reference path along a specific direction. A fast localized curvature-correction algorithm is proposed to control the curvatures of the reference path and strictly constrain the void gap or overlap in a variable stiffness lamina. This trajectory planning method takes the requirement of automated fiber placement machines into account, and improves the mechanical properties of the variable stiffness composite laminates by decreasing the occurrence of gap-errors, such as buckling and wrinkling between adjacent paths. A practical case of variable stiffness trajectory planning is provided to demonstrate the feasibility and efficiency of the proposed method. In this practical case, the gap-error rate has decreased from 45.8% to 4.2%.
机译:与传统的直纤维层压板相比,可变刚度层压板可以重新分配施加的载荷并增加关键屈曲负荷。为了充分利用纤维增强复合材料,基于最大原理应力矢量场产生实际的轨迹规划方法。参考路径表示为通过一些给定的最大应力点的均匀立方B样条段的序列的混合曲线。基于每个B样条段的局部支持性质,通过沿着特定方向转移参考路径,可以容​​易地获得单个薄片内的后续路径。提出了一种快速局部曲率校正算法来控制参考路径的曲率,并严格限制变刚度薄片中的空隙间隙或重叠。该轨迹规划方法考虑了自动纤维放置机的要求,通过降低间隙误差的发生,改善了变刚度复合层压板的机械性能,例如在相邻路径之间屈曲和皱折。提供了可变刚度轨迹规划的实际情况,以证明所提出的方法的可行性和效率。在这种实际情况下,间隙误差率从45.8%降至4.2%。

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