一种研究弹性地基上FGM厚板弯曲的准三维理论

IF 2.1 3区 工程技术 Q2 ENGINEERING, CIVIL
Abdelghani Belarouci, A. Fekrar
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引用次数: 3

摘要

本文提出了一种新的准三维剪切变形理论,用于分析Pasternak弹性地基上功能梯度材料厚板的弯曲,该地基的变量数限制为5。所采用的数学模型根据幂律P-FGM、E-FGM和S-FGM考虑了厚度的拉伸,提出了一种基于不定积分变量的位移范围。FGM中成分的组成和体积分数应该随厚度的变化而变化。本文利用虚功原理和naver方法求解了这类板的运动控制方程。给出了基于帕斯捷尔纳克地基的FG板的平衡方程。所得结果与其他作者的结果进行了比较。通过对比研究发现,考虑厚度拉伸效应的准三维理论比其他理论能更准确地预测弯曲行为。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A new quasi-3D theory for the study of the bending of thick FGM's plates on elastic foundation
In this work, a new theory quasi-3D shear deformation is presented to analyze the bending of thick FGM (functionally graded materials) plates resting on Pasternak elastic foundations, whose number of variables is limited to five. The mathematical model used presents a new range of displacement based on indeterminate integral variables where the stretching of thickness is taken into account according to the power laws P-FGM, E-FGM and S-FGM. The compositions and volume fractions of the constituents in the FGM are supposed to change through the thickness. The principle of virtual work, as well as the Naiver method, is used in this study to solve the governing equations of motion to study these types of plates. The equilibrium equations according to the FG plate resting on Pasternak foundations are presented. The results obtained are compared to those determined by the other authors. It was observed from the comparative studies that quasi-3D theories that take into account thickness stretching effects can predict bending behavior more accurately than other theories.
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来源期刊
Smart Structures and Systems
Smart Structures and Systems 工程技术-工程:机械
CiteScore
6.50
自引率
8.60%
发文量
0
审稿时长
9 months
期刊介绍: An International Journal of Mechatronics, Sensors, Monitoring, Control, Diagnosis, and Management airns at providing a major publication channel for researchers in the general area of smart structures and systems. Typical subjects considered by the journal include: Sensors/Actuators(Materials/devices/ informatics/networking) Structural Health Monitoring and Control Diagnosis/Prognosis Life Cycle Engineering(planning/design/ maintenance/renewal) and related areas.
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