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首页> 外文期刊>Structural Engineering and Mechanics >Bending analysis of bi-directional functionally graded Euler-Bemoulli nano-beams using integral form of Eringen's non-local elasticity theory
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Bending analysis of bi-directional functionally graded Euler-Bemoulli nano-beams using integral form of Eringen's non-local elasticity theory

机译:基于Eringen非局部弹性理论积分形式的双向功能梯度Euler-Bemoulli纳米束弯曲分析

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The main aim of this paper is to investigate the bending of Euler-Bernouilli nano-beams made of bi-directional functionally graded materials (BDFGMs) using Eringen's non-local elasticity theory in the integral form with compare the differential form. To the best of the researchers. knowledge, in the literature, there is no study carried out into integral form of Eringen's non-local elasticity theory for bending analysis of BDFGM Euler-Bernoulli nano-beams with arbitrary functions. Material properties of nano-beam are assumed to change along the thickness and length directions according to arbitrary function. The approximate analytical solutions to the bending analysis of the BDFG nano-beam are derived by using the Rayleigh-Ritz method. The differential form of Eringen's non-local elasticity theory reveals with increasing size effect parameter, the flexibility of the nano-beam decreases, that this is unreasonable. This problem has been resolved in the integral form of the Eringen's model. For all boundary conditions, it is clearly seen that the integral form of Eringen's model predicts the softening effect of the non-local parameter as expected. Finally, the effects of changes of some important parameters such as material length scale, BDFG index on the values of deflection of nano-beam are studied.
机译:本文的主要目的是使用埃林根的非局部弹性理论以积分形式研究由双向功能梯度材料(BDFGM)制成的Euler-Bernouilli纳米光束的弯曲,并比较其微分形式。为了最好的研究人员。众所周知,在文献中,没有对Eringen非局部弹性理论的整体形式进行具有任意功能的BDFGM Euler-Bernoulli纳米梁弯曲分析的研究。假定纳米束的材料特性根据任意函数沿着厚度和长度方向改变。利用Rayleigh-Ritz方法得出了BDFG纳米束弯曲分析的近似解析解。 Eringen的非局部弹性理论的微分形式表明,随着尺寸效应参数的增加,纳米束的柔韧性降低,这是不合理的。这个问题已经以Eringen模型的整体形式得到解决。对于所有边界条件,可以清楚地看到,Eringen模型的积分形式可以预期非局部参数的软化效果。最后,研究了材料长度尺度,BDFG指数等重要参数的变化对纳米束挠度值的影响。

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