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Manufacturable Designs for Optimized Buckling Performance of Flat Panels Using Steered Fibers

机译:用于使用转向纤维的平板屈曲性能的可制造设计

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Automated fiber placement (AFP) is an additive manufacturing modality. It is a robotic manufacturing technology to manufacture CFRP laminates by using slit tapes of pre-preg material. AFP is suitable for manufacturing large structural parts (wing skin panels, ribs, fuselage sections etc.) that can have curvatures. The advent of AFP technology has revolutionized composite manufacturing by improving production rate, decreasing the cost and scrap. One other notable advantage of AFP is that the designer is no more restricted to use straight fiber paths, which means it is possible to have fiber paths designed for optimizing structural performance. The scope of this work is to identify the manufacturing parameters and associated constraints imposed by these parameters on the manufacturability of steered fiber structural panels, using currently available AFP machines and to incorporate these constraints into deriving optimal paths to maximize the buckling load. A square laminated plate under compressive in-plane loads is used to illustrate the results.
机译:自动纤维放置(AFP)是一种添加剂制造模态。它是一种机器人制造技术,通过使用预先预先预先材料的狭缝制造CFRP层压板。 AFP适用于可以具有曲率的大型结构部件(翼形皮板,肋骨,机身等)。 AFP技术的出现通过提高生产率,降低成本和废料,彻底改变了复合材料制造。 AFP的另一个值得注意的优点是设计者不限于使用直纤维路径,这意味着可以具有设计用于优化结构性能的光纤路径。这项工作的范围是识别这些参数的制造参数和相关约束,这些参数在使用当前可用的AFP机器和将这些约束结合到导出最佳路径以最大化屈曲负荷的最佳路径中的制造参数和相关约束。在压缩面内载荷下的方形层压板用于说明结果。

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