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Parametric geometry model design of a wingsuit

机译:翅膀的参数几何模型设计

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Purpose This paper aims to introduce a process chain spanning from scanned data to computer-aided engineering and further required simulations up to the subsequent production. This approach has the potential to reduce production costs and accelerate the procedure. Design/methodology/approach A parametric computer-aided design (CAD) model of the flyer wearing a wingsuit is created enabling easy changes in its posture and the wingsuit geometry. The objective is to track the influence of geometry changes in a timely manner for following simulation scenarios. Findings At the final stage, the two-dimensional (2D) pattern cuts were derived from the developed three-dimensional (3D) wingsuit, and the results were compared with the conventional ones used in the first stages of the wingsuit development. Originality/value Proposing a virtual development process chain is challenging; apart from the fact that the CAD construction of a wingsuit flyer - in itself posing a complicated task - is required at a very early stage of the procedure.
机译:目的本文旨在引入从扫描数据到计算机辅助工程的过程链,并进一步要求仿真直至随后的生产。这种方法有可能降低生产成本并加速程序。设计/方法/方法采用穿着翅膀的传单的参数化计算机辅助设计(CAD)模型,以便在其姿势和翼柄几何形状方面轻松变化。目的是跟踪几何变化的影响及时,以便在仿真方案进行仿真方案。在最终阶段的发现,二维(2D)模式切口衍生自开发的三维(3D)翼柄,并将结果与​​在翼柄发育的第一阶段中使用的常规方法进行比较。建议虚拟开发过程链的原创性/价值是具有挑战性的;除了翅膀的传单的CAD建设 - 本身造成了复杂的任务 - 是在手术的早期阶段所必需的。

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