张波 副教授

硕士生导师

个人信息Personal Information


教师英文名称:Bo ZHANG

学历:博士研究生毕业

学位:工学博士学位

办公地点:四川省成都市高新西区西部园区西南交通大学犀浦校区

性别:

毕业院校:华中科技大学

学科:一般力学与力学基础. 固体力学

所在单位:力学与航空航天学院

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科研论文

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Songye Jin, Bo Zhang*, Huoming Shen, Yuxing Wang and Wuyuan Zhang

发表刊物:International Journal of Applied Mechanics

关键字:Functionally graded rotating microbeams; higher-order refined shear deformation theory; modified couple stress theory; frequency loci veering; mode shape transition.

摘要:This study establishes a novel three-dimensional dynamic model for functionally graded rotating microbeams simultaneously considering flapwise and chordwise shear effects based on a refined shear deformation theory and the modified couple stress theory. Five kinematic variables are introduced to describe the rotating microbeam's axial, flapwise, and chordwise motions using a higher-order refined shear deformation theory. The related strain energy and kinetic energy functionals are discretized by the assumed mode method. Applying the Euler{Lagrange variational formulation, the governing equations for the rotating microbeam are obtained. Selective examples are provided to demonstrate the convergence and effectiveness of the proposed model. Finally, the impacts of slenderness ratio, rotation speed, material index, material length scale parameter (MLSP), and Poisson's effect on the vibrational characteristics of the microbeam are examined. Numerical results indicate that the mode shape transition and frequency loci veering phenomena could easily occur under slight changes in the above factors when dense modes appear in the rotating microbeam; moreover, there is a positive/negative competitive relationship among the effects of rotation speed, MLSP, and shear deformation; Poisson’s effect seriously affects the coupling between axial and non-axial motions of the rotating microbeam. The results obtained are expected to provide data accumulation and methodological basis for the failure analysis and vibration shape determination of micro air vehicles.

论文类型:SCI

文献类型:J

卷号:15

期号:2

页面范围:1-38

是否译文:

发表时间:2023-01-19

收录刊物:SCI