微机器人和介机器人的机械双稳结构:从微加工到增材制造

Y. Haddab, Guillaume Aiche, Hussein Hussein, Mouna Ben Salem, P. Lutz, L. Rubbert, P. Renaud
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引用次数: 1

摘要

采用机械双稳结构设计微型机器人和介观机器人具有许多优点,特别是柔性机器人结构。然而,根据所使用的制造技术,理论和实验力学行为的充分性可能会有很大差异。在本文中,我们介绍了两种广泛使用的当代技术:MEMS和FDM增材制造的双稳结构的制造结果。在微机器人和介机器人应用的背景下,讨论了这些制造技术的关键问题。
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Mechanical Bistable Structures for Microrobotics and Mesorobotics from Microfabrication to Additive Manufacturing
The use of mechanical bistable structures in the design of microrobots and mesorobots has many advantages especially for flexible robotic structures. However, depending on the fabrication technology used, the adequacy of theoretical and experimental mechanical behaviors can vary widely. In this paper, we present the manufacturing results of bistable structures made with two extensively used contemporary technologies: MEMS and FDM additive manufacturing. Key issues of these fabrication technologies are discussed in the context of microrobotics and mesorobotics applications.
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Copyright Information Ferrofluid Levitated Micro/Milli-Robots Implementation Scheme of Orbital Refueling Using Microsate IIite Assembly of Cellular Microstructures into Lobule-Like 3D Microtissues Based on Microrobotic Manipulation* Research supported by the Beijing Natural Science Foundation under Grant 4164099and the National Natural Science Foundation of China under grants 61603044and 61520106011. Three Dimensional Microfabrication Using Local Electrophoretic Deposition Assisted with Laser Trapping Controlled by a Spatial Light Modulator
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