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首页> 外文期刊>European Physical Journal Plus >Dynamic transverse vibration characteristics of nonuniform nonlocal strain gradient beams using the generalized differential quadrature method
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Dynamic transverse vibration characteristics of nonuniform nonlocal strain gradient beams using the generalized differential quadrature method

机译:使用广义差分正交方法的非均匀非局部应变梯度梁的动态横向振动特性

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摘要

In this study, vibration response of small-scale tapered beams is investigated. Size-dependent effects are modeled in the framework of the nonlocal strain gradient theory and three different types of linearly cross-section variation are proposed by having width variation, thickness variation and a combination of them both. The small-scale beam is formulated using Euler-Bernoulli beam theory, nonlocal strain gradient theory and Hamilton's principle. Equations of motion for all three types of nonuniformity are solved using the generalized differential quadrature method (GDQM). Results are presented and compared to those achieved for simplified models and effects of having different slenderness ratio are presented. Moreover, a comprehensive parametric study is proposed and the effects of varying nonuniformity terms, nonlocal and strain gradient parameters are precisely studied. Accordingly, with the vast application of tapered small-scale beams in many devices, especially scanning tunneling microscopes (STM) and atomic farce microscopes (AFM), this study could be a step forward in understanding, predicting and controlling such kind of behaviors.
机译:在该研究中,研究了小尺度锥形梁的振动响应。通过具有宽度变化,厚度变化和它们两者的组合,提出了三种不同类型的线性横截面变型的尺寸依赖性效果。使用Euler-Bernoulli光束理论,非本体应变梯度理论和汉密尔顿原则制定小规模光束。使用广义差分正交方法(GDQM)解决了所有三种非均匀性的运动方程。结果并比较了所达到的简化模型和具有不同纤细比的效果的结果。此外,提出了一个综合的参数研究,并且精确地研究了不同的不均匀性术语,非局部和应变梯度参数的影响。因此,随着许多设备中的锥形小尺度梁的大量应用,特别是扫描隧道显微镜(STM)和原子频率显微镜(AFM),该研究可以是理解,预测和控制这种行为的前进。

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