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A New XYZ Compliant Parallel Mechanism for Micro-/Nano-Manipulation: Design and Analysis

机译:一种新的符合XYZ的微/纳米操纵并联机构:设计和分析

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摘要

Based on the constraint and position identification (CPI) approach for synthesizing XYZ compliant parallel mechanisms (CPMs) and configuration modifications, this paper proposes a new fully-symmetrical XYZ CPM with desired motion characteristics such as reduced cross-axis coupling, minimized lost motion, and relatively small parasitic motion. The good motion characteristics arise from not only its symmetric configuration, but also the rigid linkages between non-adjacent rigid stages. Comprehensive kinematic analysis is carried out based on a series of finite element simulations over a motion range per axis less than ±5% of the beam length, which reveals that the maximum cross-axis coupling rate is less than 0.86%, the maximum lost motion rate is less than 1.20%, the parasitic rotations of the motion stage (MS) are in the order of 10−5 rad, and the parasitic translations of the three actuated stages (ASs) are in the order of 10−4 of the beam length (less than 0.3% of the motion range), where the beam slenderness ratio is larger than 20. Furthermore, the nonlinear analytical models of the primary translations of the XYZ CPM, including the primary translations of the MS and the ASs, are derived and validated to provide a quick design synthesis. Moreover, two practical design schemes of the proposed XYZ CPM are discussed with consideration of the manufacturability. The practical designs enable the XYZ CPM to be employed in many applications such as micro-ano-positioning, micro-ano-manufacturing and micro-ano-assembly. Finally, a spatial high-precision translational system is presented based on the practical design schemes, taking the actuator and sensor integration into account.
机译:基于约束和位置识别(CPI)方法来合成XYZ兼容并行机构(CPM)和配置修改,本文提出了一种新的完全对称的XYZ CPM,具有所需的运动特性,例如减少了横轴耦合,最小化了空动,和相对较小的寄生运动。良好的运动特性不仅源于其对称配置,还源于非相邻刚性平台之间的刚性连接。基于一系列有限元模拟,对每个轴的运动范围小于光束长度的±5%进行了全面的运动学分析,这表明最大横轴耦合率小于0.86%,即最大空转速率小于1.20%,运动级(MS)的寄生旋转约为10 −5 rad,三个致动级(AS)的寄生转换约为光束长度的10 −4 (小于运动范围的0.3%),其中光束细长比大于20。此外,XYZ CPM一次平移的非线性分析模型包括MS和AS的主要翻译在内的所有内容都得到了推导和验证,以提供快速的设计综合。此外,在考虑可制造性的情况下,讨论了提出的XYZ CPM的两种实用设计方案。实际的设计使XYZ CPM可以在许多应用中使用,例如微/纳米定位,微/纳米制造和微/纳米组装。最后,基于实际设计方案,提出了一种空间高精度平移系统,其中考虑了执行器和传感器的集成。

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