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Nonlocal elasticity analysis of moderately thick porous functionally graded plates in a hygro-thermal environment

机译:高潮热环境中适度厚多孔功能梯度板的非局部弹性分析

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摘要

This work proposes a novel quasi three-dimensional (3D) approach for the bending analysis of moderately thick plates with a functionally graded material (FGM), in presence of porosities due to some incorrect manufacturing processes. Such porosities can appear within the plate in two forms, namely, even and uneven distributions. The modeled system has a polymer matrix where both shear and transverse factors coexist. The bending equations of the problem are obtained from the Hamiltonian principle. In order to apply the quantum effects for the nanosystem, the well-known nonlocal theory of Eringen is here assumed, while checking for its numerical accuracy. A physically-consistent analysis of the nanostructures would investigate possible surrounding effects. Thus, the thermal and humidity influence is accounted for the 3D problem, whose governing equations are solved through a semi-analytical polynomial method (SAPM), as recently proposed in literature for different applications. The proposed method is based on a simple procedure with very accurate numerical outcomes, whose performance is checked against the available literature. After computing the deflection relations, a systematic study is performed for the bending response of nanoporous FGMs in a hygro-thermal surrounding environment, with promising results for practical applications.
机译:这项工作提出了一种新的三维(3D)方法,用于在具有功能梯度的材料(FGM)的中间厚板的弯曲分析,由于一些不正确的制造方法,孔隙率存在于孔隙率。这种孔隙率可以以两种形式出现在板内,即均匀和不均匀的分布。建模系统具有聚合物基质,其中剪切和横向因素共存。问题的弯曲方程是从哈密顿原则获得的。为了应用纳米系统的量子效应,这里的eringen的众所周知的非局部理论在检查其数值准确性时,在这里假设。对纳米结构的物理一致的分析将研究可能的周围效果。因此,占3D问题的热和湿度影响,其控制方程通过半分析多项式方法(SAPM)解决,该方法在不同应用中的文献中提出。该方法基于具有非常准确的数值结果的简单过程,其性能对可用文献进行检查。在计算偏转关系之后,对纳米多孔FGM的弯曲响应进行了系统研究,在Hygro-热周围环境中,具有实际应用的有希望的结果。

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