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- W3048184912 endingPage "203" @default.
- W3048184912 startingPage "189" @default.
- W3048184912 abstract "This work aims at investigating the free torsional vibration of one-directional nanostructures with an elliptical shape, under different boundary conditions. The equation of motion is derived from Hamilton’s principle, where Eringen’s nonlocal theory is applied to analyze the small-scale effects. The analytical Galerkin method is employed to rewrite the equation of motion as an ordinary differential equation (ODE). After a preliminary validation check of the proposed formulation, a systematic study investigates the influence of the nonlocal parameters, boundary conditions, geometrical and mechanical parameters on the natural frequency of nanorods; the objective is to provide useful findings for design and optimization purposes of many nanotechnology applications, such as, nanodevices, actuators, sensors, rods, nanocables, and nanostructured aerospace systems." @default.
- W3048184912 created "2020-08-13" @default.
- W3048184912 creator A5006621471 @default.
- W3048184912 creator A5014053893 @default.
- W3048184912 creator A5040692828 @default.
- W3048184912 creator A5054146652 @default.
- W3048184912 creator A5062840927 @default.
- W3048184912 date "2020-08-07" @default.
- W3048184912 modified "2023-09-26" @default.
- W3048184912 title "Nonlocal Torsional Vibration of Elliptical Nanorods with Different Boundary Conditions" @default.
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- W3048184912 doi "https://doi.org/10.3390/vibration3030015" @default.