Title of article
Geometric stiffening of flexible link system with large overall motion
Author/Authors
Jinyang Liu، نويسنده , , Jia-zhen Hong، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2003
Pages
13
From page
2829
To page
2841
Abstract
In the conventional hybrid-coordinate formulation, the Cartesian deformation variables are employed with a linear Cauchy strain measure. It has been found that such modeling method fails to capture the motion-induced stiffness terms and provides erroneous dynamic results in case of high rotating speed. In this paper, geometric stiffening of flexible link system is investigated. Using a non-Cartesian deformation variable, the equations of motion of each link, which include the stiffening terms, are obtained based on the virtual power principle, and forward recursive formulation is employed to derive the equations of flexible link system. Relative generalized coordinates are employed to derive the equations of motion of the link system. Numerical examples are presented to investigate the stiffening effect on large overall motion as well as deformation of the flexible link system and to testify the accuracy and efficiency of the formulation.
Keywords
Deformation , Large overall motion , Forward recursive formulation , Geometric stiffening , High rotating speed , Flexible link system
Journal title
Computers and Structures
Serial Year
2003
Journal title
Computers and Structures
Record number
1209260
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