首页> 外文期刊>Journal of Applied Mechanics and Technical Physics >FLAPWISE BENDING VIBRATION ANALYSIS OF A DOUBLE TAPERED ROTATING NONLOCAL EULER-BERNOULLI BEAM BY THE DIFFERENTIAL TRANSFORM METHOD
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FLAPWISE BENDING VIBRATION ANALYSIS OF A DOUBLE TAPERED ROTATING NONLOCAL EULER-BERNOULLI BEAM BY THE DIFFERENTIAL TRANSFORM METHOD

机译:通过差分变换方法旋转双锥形旋转非局部欧拉 - 伯努利梁的浮动振动分析

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摘要

Transverse (out-of-plane) vibrations of a rotating nanobeam tapered both in width and thickness are studied on the basis on the Euler-Bernoulli beam theory. The nonuniform nanobeam is modeled with allowance for a small-scale effect contained in the nonlocal Eringen elasticity theory. The axial force due to rotating movement (centrifugal stiffening) of the beam is included into the model. The governing partial differential equation of the structure is solved by implementing the differential transform method (DTM). The variations of the taper ratio, rotational velocity, hub radius, and nonlocal small-scale parameter are taken into consideration. Comparisons of the present results with available data are performed.
机译:基于Euler-Bernoulli光束理论,研究了横向和厚度的横向纳米横截面的横向(平面外)振动。非均匀纳米孔模拟了非本体eringen弹性理论中包含的小规模效应的余量。由于梁的旋转运动(离心加固)引起的轴向力包括在模型中。通过实现差分变换方法(DTM)来解决结构的控制局部微分方程。考虑锥度比,旋转速度,集线器半径和非局部小规模参数的变化。执行具有可用数据的当前结果的比较。

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