2022
DOI: 10.21595/jve.2022.22478
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Analysis of vibration characteristics of rotating parallel flexible manipulator considering joint elastic constraints

Abstract: The bolt joint is the key component connecting the rigid moving base body and the flexible manipulator. The dynamic characteristics of the flexible manipulator under the elastic constraint of the joint are analyzed, and the action mechanism of the elastic constraint of the bolt joint on the frequency and vibration mode is revealed. Considering the effects of line constraint and torsion constraint, the elastic constraint model of the joint is established. Based on the principle of virtual work, the boundary con… Show more

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Cited by 2 publications
(2 citation statements)
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“…This will result in a continuous accumulation of errors, which will affect the final control accuracy. Based on Lagrange method in theoretical mechanics, the dynamic equation of industrial mechanical manipulator [25][26][27][28] can be derived:…”
Section: Fig 2 Flexible Joint Modelmentioning
confidence: 99%
“…This will result in a continuous accumulation of errors, which will affect the final control accuracy. Based on Lagrange method in theoretical mechanics, the dynamic equation of industrial mechanical manipulator [25][26][27][28] can be derived:…”
Section: Fig 2 Flexible Joint Modelmentioning
confidence: 99%
“…Since the invention of permanent magnet generator and motor in the 18th century, electromechanical coupling in mechanical system has become the object of research and analysis [28,29]. As a typical complex electromechanical system, there are main coupling factors in the whole system, [30][31][32]. The output of the driving circuit has harmonic effect, and the output electromagnetic thrust of the motor has multi-order harmonic components, which is easy to excite the system to produce vibration, and then affect the flexible manipulator through the action of the transmission system [33,34].…”
Section: Electromechanical Coupling Dynamics Analysis Of Flexible Man...mentioning
confidence: 99%