A stress approach model for elastodynamic problems of functionally graded plates

IF 4.4 2区 工程技术 Q1 MECHANICS
Mirna Teresita Armendáriz Hernández , Alberto Díaz Díaz , Axel Fernando Domínguez Alvarado , Carlos Humberto Rubio Rascón
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引用次数: 0

Abstract

This paper aims to develop the first stress approach model for elastodynamic problems of functionally graded plates. The new model is called SAM-FG7, and like many other plate models, it is an alternative to solid finite elements to avoid high computational cost calculations for thickness ratios ranging from moderately thick to thin. SAM-FG7 stress approximation is intended to improve the stress results of models based on a displacement approach; the approximation is also an enhancement of that of the static shell model SAM-FG applied to plates since it considers two additional generalized forces. In statics, the SAM-FG7 stress field verifies the 3D equilibrium conditions, and the generalized equations are obtained by using the minimum complementary energy principle. For dynamic problems, a consistent derivation of the generalized motion equations is obtained by applying the method proposed by Bouteiller et al. (2022). SAM-FG7 features seven generalized displacements, i.e., two more fields than SAM-FG. Its equations were implemented and solved in COMSOL Multiphysics 6.2 finite element software. To validate the model, eigenfrequencies and modal stresses for a family of square functionally graded plates are calculated and compared with those given by solid finite elements and other models found in the literature. In order to demonstrate the accuracy of the model in more complicated problems, perforated functionally graded plates with transversely isotropic materials are considered; free vibration and frequency response analyses are made. SAM-FG7 predictions accurately approximate solid finite element results.
功能梯度板弹性动力学问题的应力逼近模型
本文旨在建立功能梯度板弹性动力学问题的第一个应力方法模型。新模型被称为SAM-FG7,与许多其他板模型一样,它是固体有限元的替代方案,可以避免对中等厚度到较薄的厚度比进行高计算成本的计算。SAM-FG7应力近似旨在改进基于位移法的模型应力结果;由于考虑了两种额外的广义力,该近似也是应用于板的静态壳模型SAM-FG的改进。在静力学方面,SAM-FG7应力场验证了三维平衡条件,并利用最小互补能量原理得到了广义方程。对于动力学问题,采用Bouteiller等人(2022)提出的方法,得到了广义运动方程的一致推导。SAM-FG7具有7个广义位移,即比SAM-FG多两个油田。在COMSOL Multiphysics 6.2有限元软件中对其方程进行了实现和求解。为了验证该模型,计算了一类方形功能梯度板的特征频率和模态应力,并与实体有限元和文献中发现的其他模型给出的特征频率和模态应力进行了比较。为了证明模型在更复杂问题中的准确性,考虑了具有横向各向同性材料的穿孔功能梯度板;进行了自由振动和频率响应分析。SAM-FG7预测准确地接近实体有限元结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
7.00
自引率
7.30%
发文量
275
审稿时长
48 days
期刊介绍: The European Journal of Mechanics endash; A/Solids continues to publish articles in English in all areas of Solid Mechanics from the physical and mathematical basis to materials engineering, technological applications and methods of modern computational mechanics, both pure and applied research.
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