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- W2983407714 abstract "The advancement in both experiment and theory of rotating nanomotors provides a vital base for succeeding nano-electro-mechanical system technology. This paper deals with nonlocal dynamic modeling of double-nanobeam-systems with coaxial and non-coaxial patterns rotate with a rigid shaft accounting for longitudinal, flapwise, and chordwise vibrations. The full lateral interactions of doubly adjacent nanobeams due to three-dimensional vigorous van der Waals forces are considered in the framework of linear vibrations. Using Hamilton’s principle, the nonlocal equations of motion of the nanosystem are constructed by employing Rayleigh and Timoshenko beam theories. By exploiting the size-dependent mode shapes, the unknown deformation fields are appropriately discretized, the Galerkin approach is applied, and the natural frequencies associated with the longitudinal, in-plane, and out-of-plane motions are evaluated. The roles of various crucial factors, including geometrical properties of the nanosystem, nonlocality and shear effects, angular velocity, radius of the shaft, and intertube distance, in the free dynamic response of the rotating nanosystem are explained and discussed comprehensively. Further, the size-dependent critical angular velocity pertinent to the initial dynamic instability of the nanosystem is also introduced and the effects of influential parameters on this key factor are displayed." @default.
- W2983407714 created "2019-11-22" @default.
- W2983407714 creator A5021102688 @default.
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- W2983407714 date "2020-02-01" @default.
- W2983407714 modified "2023-09-24" @default.
- W2983407714 title "Nonlocal longitudinal, flapwise, and chordwise vibrations of rotary doubly coaxial/non-coaxial nanobeams as nanomotors" @default.
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- W2983407714 doi "https://doi.org/10.1016/j.ijmecsci.2019.105291" @default.
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