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Size-dependent forced vibration of non-uniform bi-directional functionally graded beams embedded in variable elastic environment carrying a moving harmonic mass

机译:嵌入在可变弹性环境中的非均匀双向功能梯度梁的尺寸依赖性强制振动携带移动谐波质量

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In this study, general non-uniform material-varying micro-beam models under a moving harmonic load/mass are investigated. Material variation is modeled by combining axial and thickness material grading models using exponential, linear, parabolic and sigmoidal functions. Beam is assumed to be resting on an elastic foundation and in this linear foundation model, foundation modulus is assumed to vary axially with respect to space variable in a non-linear manner ignoring the effect of mass density of foundation on the behavior of micro-beam. Cross-section variation through the length is formulated for both thickness and width variation. Governing equations for such comprehensive beam model is achieved using Hamilton's principle in conjunction with modified couple stress theory to add the scale-effects and solved by discussing explicit and implicit finite element methods with using various-steps and Wilson-theta method. Current methodology is verified using previous studies on simplified problems. A comprehensive parametric study is presented in order to indicate the influence of each design, material and fundamental terms on the forced vibration behavior of such structures under a moving harmonic/constant load/mass. It is shown that by appropriately choosing the material variation in bidirectional functionally graded beams dynamic vibration behavior of such structures could change significantly. Moreover, it is shown that varying cross-section, elastic foundation and type of harmonic moving mass can change the dynamic reaction of the general micro-beam model. From the influence of modified couple stress term on mechanical behavior of such structures it is concluded that this term has crucial effect in varying the dynamic deflections and it is important to acknowledge it in analyzing such structures. (C) 2019 Elsevier Inc. All rights reserved.
机译:在该研究中,研究了在移动谐波载荷/质量下的一般非均匀材料改变的微束模型。通过使用指数,线性,抛物线和S形功能组合轴向和厚度材料分级模型来建模材料变化。假设梁在弹性基础上搁置,并且在该线性基础模型中,假设基础模量以非线性方式相对于空间变量逐渐变化,忽略了质量密度基础对微梁行为的影响。通过长度的横截面变化被配制成厚度和宽度变化。使用Hamilton的原理与修改的夫妇应力理论结合使用哈密尔顿的原则来实现这种综合梁模型的控制方程,以添加尺度效应,并通过使用各种步骤和Wilson-Theta方法讨论显式和隐含的有限元方法来解决。使用先前的简化问题研究验证了当前方法。提出了一个综合的参数研究,以指示在移动谐波/恒定负载/质量下的这种结构的强制振动行为上的每个设计,材料和基本术语的影响。结果表明,通过适当地选择双向的双向功能梯度光束中的材料变化,这种结构的动态振动行为可能显着变化。此外,示出了变化的横截面,弹性基础和谐波移动质量的类型可以改变通用微束模型的动态反应。根据修改的夫妇应激术语对这种结构的力学行为的影响,得出结论认为该术语在改变动态偏转方面具有至关重要的影响,并且重要的是要承认分析这种结构。 (c)2019 Elsevier Inc.保留所有权利。

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