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Passive and active gravity compensation of horizontally-mounted 3-RPS parallel kinematic machine

机译:卧式3-RPS并联运动机的被动和主动重力补偿

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摘要

Taking a horizontally-mounted 3-RPS parallel kinematic machine (PKM) as an example, this paper investigates passive and active gravity compensation strategies for improving PKM precision. Herein, R, P and S denote revolute, actuated prismatic and spherical joint, respectively. Based on inverse position kinematic and force analysis, passive gravity compensation is firstly implemented by three extension springs. Geometric parameters of these springs are optimized by minimizing potential energy fluctuation within a prescribed workspace. Then deformation caused by gravity is adopted to evaluate compensation strategies. The deviations of an end reference point demonstrate that passive gravity compensation is capable of substantially balancing gravity. In order to further eliminate the effect of gravity, active gravity compensation is proposed to adjust spring displacements by several one degree-of-freedom (DoF) translational mechanisms. Deformation of the 3-RPS PKM is directly regarded as the objective function for determining the active translations. Overall, both passive and active gravity compensations are able to improve mechanism precision due to the partial and complete gravity balancing capability, respectively, which makes the 3-RPS PKM suitable for the application of rough and fine machining. (C) 2016 Elsevier Ltd. All rights reserved.
机译:以水平安装的3-RPS并联运动机(PKM)为例,研究了用于提高PKM精度的被动和主动重力补偿策略。在此,R,P和S分别表示旋转,致动的棱柱形和球形接头。基于反向位置运动学和力分析,首先通过三个拉伸弹簧实现被动重力补偿。通过最小化指定工作空间内的潜在能量波动来优化这些弹簧的几何参数。然后采用重力引起的变形来评估补偿策略。终点参考点的偏差表明,被动重力补偿能够基本平衡重力。为了进一步消除重力的影响,提出了主动重力补偿,通过几种单自由度(DoF)平移机构来调节弹簧位移。 3-RPS PKM的变形直接被视为确定活动翻译的目标函数。总体而言,被动和主动重力补偿都可以分别通过部分和完全重力平衡来提高机构精度,这使得3-RPS PKM适合于粗加工和精加工的应用。 (C)2016 Elsevier Ltd.保留所有权利。

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