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首页> 外文期刊>International journal of non-linear mechanics >Optimal fiber paths for robotically manufactured composite structural panels
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Optimal fiber paths for robotically manufactured composite structural panels

机译:具有机器人制造的复合结构板的最佳光纤路径

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摘要

Robotic Automated Fiber Placement (RAFP) has revolutionized manufacturing of large aerostructures in recent years. From producing lower costing parts to reducing scrap, RAFP has also helped in manufacturing large parts with contours precisely, with repeatable production once the RAFP machine is programmed. RAFP manufacturing allows a designer to utilize curvilinear fiber paths specifically designed to optimize structural performance, for example, maximizing buckling loads, minimizing stress concentrations etc. At the same time, RAFP introduces unintended manufacturing imperfections. These, which can include overlaps and gaps, lead to thickness non-homogeneities in structural panels. In this paper, steered fiber paths for maximizing the buckling loads of RAFP panels while explicitly accounting for manufacturing imperfections is considered. A novel method to model fiber paths is introduced where each course of the lay-up can be explicitly modeled, including manufacturing artifacts of course width, admissible tow curvature, and control on unintended manufacturing deviations that can lead to gaps and overlaps. A machine learning based surrogate modeling technique in conjunction with Genetic Algorithm is used to derive the optimal solutions.
机译:近年来,机器人自动化纤维放置(RAFP)彻底改变了大型空气结构的制造。从生产较低的成本零件到减少废料,RAFP也有助于在RAFP机器编程一旦RAFP机器进行编程一旦使用轮廓的大部分。 RAFP制造允许设计人员利用专门设计的曲线纤维路径来优化结构性能,例如最大化屈曲负荷,最小化应力集中等。同时,RAFP引入了意外的制造缺陷。这些可以包括重叠和间隙,导致结构板中的厚度非均匀性。在本文中,考虑了用于最大化RAFP面板的屈曲负载的转向纤维路径,同时考虑了明确核对制造缺陷的掉度。引入了一种模拟光纤路径的新方法,其中可以明确建模每个铺设的过程,包括制造当然宽度,可允许拖曳曲率的制造伪像,并控制可能导致间隙和重叠的意外的制造偏差。一种基于机器学习的代理建模技术与遗传算法一起使用了最佳解决方案。

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