Due to their higher specific strength and stiffness, longer service life and tailorability of stiffness properties, the composite material rotating shafts have been sought as a vital part in many application areas such as automotive drive shafts, helicopter tail rotors, high speed machine tool spindles and long boring bars. In supercritical operation, the dynamical behavior and stability analysis is one of the important subjects in the structural design of composite shaft rotors. This paper gives a brief review of studies done in the past 20 years on the dynamical analysis of composite shafts rotors. The theories being applied (classical beam theory, shear deformation theory, shell theory and nonlinear theory), methods for solving dynamical model (finite element analysis, Galerkin method), complicating effects (smart material shaft with shape memory alloy, composite shaft with constrained layer damping and optimization of composite shaft) were introduced. All these aspects above mentioned are of great significance for the full development of the dynamics theory of light weight composite rotors and its applications in practical engineering. Finally, some items regarding future research were also prospected.
REN Yongsheng,ZHANG Yuhuan,MA Jingmin.
Research advances on composite shaft rotordynamics[J]. Journal of Vibration and Shock, 2018, 37(14): 1-9
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