太阳能无人机设计:在材料挤压增材制造中利用最小表面

César García-Gascón, Pablo Castelló-Pedrero, J. A. García-Manrique
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摘要

本文概述了利用增材制造技术设计和生产固定翼飞机所采用的方法,同时整合了太阳能电池板技术。利用材料挤压工艺对主要的最小表面进行了研究。研究结果表明,可以使用最小表面填充物作为加固材料设计和制造小型无人机,其刚度重量比等于或优于传统材料和工艺。陀螺结构最大限度地提高了机械性能。然而,在最小结构中集成撑杆和致动器等元素非常复杂。这项研究展示了增材制造在加快无人机开发方面的能力,从而显著降低了生产成本和时间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Solar-Powered UAV Design: Leveraging Minimal Surfaces in Material Extrusion Additive Manufacturing
This paper outlines the methodology employed in the design and production of a fixed-wing aircraft using additive manufacturing techniques, while integrating solar panel technology. A study of the main minimal surfaces has been carried out with the material extrusion process. The results obtained show that it is possible to design and fabricate small UAVs using minimal surface infill as reinforcements with a stiffness to weight ratio equal or superior to conventional materials and processes. Gyroid structures maximize mechanical properties. However, integrating elements like spars and actuators in minimal structures is complex. This study showcases the capability of additive manufacturing in expediting the development of UAVs, resulting in significant reductions in both production costs and time.
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