Thermal Mechanical Bending Response of Symmetrical Functionally Graded Material Plates

Author:

Han Mengna1,Li Zichan1,Huang Zhicheng1ORCID,Wang Xingguo1,Gao Wenjie1

Affiliation:

1. College of Mechanical and Electronic Engineering, Jingdezhen Ceramic University, Jingdezhen 333001, China

Abstract

This paper investigates the thermal mechanical bending response of symmetric functionally graded material (FGM) plates. This article proposes a thermodynamic analysis model of both the FGM plate and FGM sandwich plate, and the model only involves four control equations and four unknown variables. The control equation is based on the refined shear deformation theory and the principle of minimum potential energy. The Navier method is used to solve the control equation. According to the method, numerical examples are provided for the thermo-mechanical bending of the symmetric FGM plate and FGM sandwich plate under a simply supported boundary condition, and the accuracy of the model is verified. Finally, parameter analysis is conducted to investigate the effects of the volume fraction index, side-to-thickness ratio, thermal load, and changes in core thickness on the thermal mechanical bending behavior of the symmetric FGM plate and FGM sandwich plate in detail. It was found that the deflection of the FGM plate is greater than that of the FGM sandwich plate, while the normal stress of the FGM plate is smaller than that of the FGM sandwich plate. Moreover, the FGM plate and FGM sandwich plate are sensitive to nonlinear temperature changes.

Funder

Natural Science Foundation of China

Science and Technology Projects of the Jiangxi Education Department of China

2023 College Student Innovation Training Program Project of Jingdezhen Ceramic University

Publisher

MDPI AG

Subject

General Materials Science

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