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Stiffness analysis of a hexaglide parallel loading mechanism

机译:六滑架平行加载机构的刚度分析

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摘要

The stiffness characteristics of a hexaglide parallel loading machine (HPLM) are investigated in this paper. The architectural model of a HPLM is constructed and analyzed. Then the total stiffness matrix, in which the variations of the Jacobian matrix are considered, is derived based on the analysis of kinematics and statics. The workspace boundary of the HPLM is determined through a boundary searching method (BSM) and the stiffness performance over the workspace is assessed by using the extreme eigenvalues and condition number of the stiffness matrix while the influence of the architectural parameters on the stiffness behavior of the HPLM is also investigated using the same indices. Eigenscrew decomposition method is utilized to illustrate the physical interpretation of the stiffness matrix. Numerical examples follow to prove validity of the methodology.
机译:本文研究了六滑行并联加载机(HPLM)的刚度特性。构建并分析了HPLM的体系结构模型。然后,基于运动学和静力学分析,得出考虑了雅可比矩阵变化的总刚度矩阵。 HPLM的工作空间边界是通过边界搜索方法(BSM)确定的,并且工作空间上的刚度性能是通过使用刚度矩阵的极限特征值和条件数来评估的,而建筑参数对结构刚度性能的影响还使用相同的指标调查了HPLM。艾格森螺丝分解法用于说明刚度矩阵的物理解释。数值实例证明了该方法的有效性。

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