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Analytical solutions to nonlinear oscillations of micro/nano beams using higher-order beam theory
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نویسنده
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roozbahani m.m. ,heydarzadeh arani n. ,moghimi zand m. ,mousavi mashhadi m.
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منبع
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scientia iranica - 2016 - دوره : 23 - شماره : 5-B - صفحه:2179 -2193
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چکیده
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In this study, the nonlinear oscillations of micro/nano beams, modeled by timoshenko beam theory and actuated by suddenly applied electrostatic forces, are investigated. the effects of electrostatic actuation, residual stress, mid-plane stretching, and fringing field are considered in modeling. in order to develop the governing equations and the boundary conditions, the hamilton's principle is employed. after combining governing equations, the galerkin's decomposition method is used to convert the governing nonlinear partial equation to a nonlinear ordinary differential equation. the homotopy analysis method (ham) is used to present semi-analytical solutions to the strongly nonlinear behavior of system. to verify the present model, in special limiting cases, the results are compared with numerical results; and in low values of beam thickness, the results are compared with those obtained with the assumption of euler-bernoulli beam theory, which are available in literature. some numerical results are presented to investigate the effects of high thicknesses and different values of residual stress on the nonlinear frequency and the midpoint deflection of the beam.
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کلیدواژه
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MEMS; NEMS; Higher-order beam theory; High thickness; Analytical solutions; Nonlinear vibrations
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آدرس
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university of tehran, school of mechanical engineering, college of engineering, ایران, university of tehran, school of mechanical engineering, college of engineering, ایران, university of tehran, school of mechanical engineering, college of engineering, ایران, university of tehran, school of mechanical engineering, college of engineering, ایران
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Authors
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