PolyJet波纹管执行器的设计与形状优化

Gabriel Dämmer, Sven Gablenz, A. Hildebrandt, Z. Major
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引用次数: 20

摘要

对于未来的机器人系统,增材制造(AM)和气动驱动的结合产生了多种机会。波纹管执行器特别适用于增材制造,因为所需的几何复杂性可以很容易地获得,并且它们的功能不受粗糙表面和小尺寸精度的影响。介绍了一种多材料PolyJet可打印线性波纹管执行器。提出了一种基于有限元分析和数值形状优化的设计策略,并在准静态和重复加载条件下进行了试验验证。本文的研究结果对研究人员和工程师考虑在机器人和其他动力系统中应用增材制造软材料波纹管作动器有一定的参考价值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and shape optimization of PolyJet bellows actuators
With regard to future robotic systems, the combination of Additive Manufacturing (AM) and pneumatic actuation yields multiple opportunities. Bellows actuators are exceptionally suitable for AM as the required geometrical complexity can easily be obtained and their functionality is not affected by rough surfaces and small dimensional accuracy. In this paper, multi-material PolyJet printable linear bellows actuators are presented. A design strategy based on finite elements analysis and numerical shape optimization is proposed and validated by experimental testing under quasi-static and repeated loading conditions. The presented results are useful for researchers and engineers considering the application of AM soft material bellows actuators for robots and other dynamic systems.
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