GDN-11 FLEXIBLE MULTIBODY DYNAMIC MODEL OF COUPLED PLANETARY GEAR AND BEARING(DYNAMICS AND NOISE PROBLEMS OF GEARS AND GEAR BOXES)
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概要
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A coupled flexible multibody dynamic model of planetary gear is presented to investigate the dynamic performance of the planetary gear and its supporting bearings. The bearing's and gear's kinematical deformation are first defined, the bearing has two degrees of freedom with respect to each axis of the coordinates, that is, the translation in the axis and rotation around the axis; the gear within the planetary gear has degrees of freedom of translations and rotation around its center. Because the carrier and shaft are assumed to have no bending deformation, the deformation freedom of bearing and gear are coupled together by algebraic equations. According to the bearing's and gear's constraints in the system, the corresponding constraints are set. After calculating the kinetic energy, potential energy as well as virtual work of external force, the system's governing equations are obtained by applying Lagrange function. Using the governing equation, the system's deformation modes are analyzed, planetary gear's dynamic performance is simulated during a carrier cycle and finally the bearing's dynamic behaviors are illustrated.
- 一般社団法人日本機械学会の論文
- 2009-05-13
著者
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QIN Datong
State Key Lab of Mechanical Transmission, Chongqing University
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Qin Datong
State Key Lab Of Mechanical Transmission Chongqing University
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Wu Xiaoling
School Of Mechanical Engineering Zhengzhou University:state Key Lab Of Mechanical Transmission Chong
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Wang Jianhong
School Of Mechanical Engineering Chongqing University:state Key Lab Of Mechanical Transmission Chong
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