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On Equations of Motion of Elastic Linkages by FEM

机译:关于FEM的弹性联动运动方程

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摘要

Discussion on equations of motion of planar flexible mechanisms is presented in this paper. The finite element method (FEM) is used for obtaining vibrational analysis of links. In derivation of dynamic equations it is commonly assumed that the shape function of elastic motion can represent rigid-body motion. In this paper, in contrast to this assumption, a model of the shape function specifically dedicated to the rigid-body motion is presented, and its influence on elastic motion is included in equations of motion; the inertia matrix related to the rigid-body acceleration vector depends on both shape functions of the elastic and rigid elements. The numerical calculations are conducted in order to determine the influence of the assumed shape function for rigid-body motion on the vibration of links in the case of closed-loop and open-loop mechanisms. The results of numerical simulation show that for transient analysis and for some specific conditions (e.g., starting range, open-loop mechanisms) the influence of assumed shape functions on vibration response can be quite significant.
机译:本文介绍了平面柔性机制运动方程的探讨。有限元方法(FEM)用于获得链路的振动分析。在动态方程的推导中通常假设弹性运动的形状函数可以代表刚体运动。在本文中,与该假设相反,提出了专用于刚体运动的形状函数的模型,并且其对弹性运动的影响包括在运动方程中;与刚体加速度向量相关的惯性矩阵取决于弹性和刚性元件的两种形状函数。进行数值计算,以便确定假设形状函数对闭环和开环机构的情况下的链路振动的影响。数值模拟表明,对于瞬态分析并且对于一些特定的条件(例如,开始范围,开环机制)对振动响应假定形状函数的影响的结果可以说是相当显著。

著录项

  • 作者

    Michał Hać;

  • 作者单位
  • 年度 2013
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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