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Design of a Minimum Surface-Effect Three Degree-of-Freedom Micromanipulator

机译:最小表面效应三自由度微操纵器的设计

摘要

This paper describes the fundamental physical motivations for small-scale minimum surface-effect design, and presents a three degree-of-freedom micromanipulator design that incorporates a minimum surface-effect approach. The primary focus of the design is the split-tube flexure, a unique small-scale revolute joint that exhibits a considerably larger range of motion and significantly better multi-axis revolute joint characteristics than a conventional flexure. The development of this joint enables the implementation of a small-scale spatially-loaded revolute joint-based manipulator with well-behaved kinematic characteristics and without the backlash and stick-slip behavior that would otherwise prevent precision control
机译:本文描述了小规模最小表面效应设计的基本物理动机,并提出了一种采用最小表面效应方法的三自由度微操纵器设计。设计的主要重点是分体管挠曲,这是一种独特的小尺寸旋转接头,与传统挠曲相比,其运动范围大得多,多轴旋转接头的性能也更好。该关节的发展使得能够实施具有良好运动学特性且没有反冲和粘滑行为的小规模空间负荷旋转式关节操纵器,否则会妨碍精确控制

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