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Full rotor dynamic analysis during operating conditions is also mandatory to investigate the dynamic behavior of the rotating structure.
Through the numerical problems, this work shows that the proposed method is useful to predict the vibratory behavior of the rotating blade.
The Campbell diagram, critical speeds, operational deflection shapes, and unbalance response of the rotor are obtained in order to completely investigate the dynamic behavior of the rotating system.
These results are useful in the understanding of the dynamic behavior of the rotating constrained flexible beam with an end mass.
The coexistence of two stable non-axisymmetric deformations of the stationary disk and the hysteresis behavior of the rotating disk observed in the experiment are consistent with theoretical predictions.
The behavior of the rotating and flowing fluid is described in the framework of the potential theory.
Similar(54)
A modified variational method combined with a multi-segment partitioning technique is employed to derive the free and transient vibration behaviors of the rotating beams.
A dynamic model based on classical plate theory is presented to investigate the vibration behavior of a rotating blade at an arbitrary stagger angle and rotation speed.
This paper describes the dynamic behavior of a rotating composite shaft subjected to axial periodic forces using the finite element method.
This will be the fourth phase of the rotating exhibit.
In this paper, for the first time, the size dependent vibration behavior of a rotating non-uniform functionally graded (FG) Timoshenko and Euler Bernoulli microbeam based on the modified couple stress theory is presented.
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