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Analysis of 2D flexible mechanisms using linear finite elements and incremental techniques

机译:使用线性有限元和增量技术分析2D柔性机构

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In this paper, a fully linear method for the kinetoelastodynamic analysis of mechanisms of engineering praxis, characterized by large displacements and rotations (rigid body motion) but small elastic displacements and strains, based on the standard Euler–Bernoulli finite elements is proposed and investigated. The method is a co-rotational approach and relies on the principle to decompose the motion of a mechanism in a series of successive time steps, so small that the linear finite element method can be applied within each step, adding a correction procedure in order to compensate errors resulting from not incorporating the exact (non-linear) beam theory. After presentation of the method, we apply it to test cases well known in the literature and discuss its characteristics.
机译:本文基于标准的Euler–Bernoulli有限元,提出并研究了一种用于工程实践机理的全线性方法,其特征是位移和旋转(刚体运动)大,弹性位移和应变小。该方法是同向旋转方法,它依靠原理来分解一系列连续时间步长中的机械运动,该方法是如此之小,以至于可以在每个步长中应用线性有限元方法,从而增加了校正程序,以便补偿由于未采用精确的(非线性)光束理论而导致的误差。在介绍了该方法之后,我们将其应用于文献中众所周知的测试案例并讨论其特性。

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