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Stress Analysis of a Functionally Graded Micro/Nanorotating Disk with Variable Thickness Based on the Strain Gradient Theory

机译:基于应变梯度理论的功能梯度可变厚度微/纳米旋转盘应力分析

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摘要

In this paper, mechanical response of a microanorotating disk made of functionally graded materials (FGMs) with variable thickness is investigated. Through utilizing variational method and considering the strain gradient theory, the governing equations and the boundary conditions are derived. In order to verify the developed formulation, in special limiting cases, the results are compared with those available in the literature. These comparisons show an excellent correspondence. Employing numerical techniques, some numerical results are presented to investigate the effect of variations of properties and thickness on the response of the small scale rotating disk. It is found that the non-homogeneity constants have a remarkable effect on the stress distribution in the FG rotating disk. Furthermore, the amount of stress could be reduced in the rotating disk through fabricating it with variable thickness.
机译:在本文中,研究了由可变厚度的功能梯度材料(FGM)制成的微型/纳米盘的机械响应。利用变分法并考虑应变梯度理论,推导了控制方程和边界条件。为了验证开发的配方,在特殊的限制情况下,将结果与文献中的结果进行比较。这些比较显示出极好的对应关系。利用数值技术,给出了一些数值结果,以研究性能和厚度变化对小尺寸转盘响应的影响。发现非均匀性常数对FG转盘中的应力分布有显着影响。此外,通过制造厚度可变的旋转盘可以减少应力。

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