Analytical Modeling of the Bending Behavior of Plaster/Cork Functionally Graded Core Sandwich Beams: Analysis and Experimental Validation

IF 1.7 4区 工程技术 Q3 ENGINEERING, MECHANICAL Iranian Journal of Science and Technology-Transactions of Mechanical Engineering Pub Date : 2023-11-29 DOI:10.1007/s40997-023-00732-z
Sara Medjmadj, Souad Ait Taleb, Abdelmadjid Si Salem
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Abstract

An analytical modeling to predict the bending behavior of functionally graded core sandwich beams designed with plaster and cork inclusion core and polymer skins is carried out within the framework of the present study. In addition, a microscopic analysis of the beams core using scanning electron microscope (SEM) was conducted in order to better understand the microstructural material degradation and the interaction of the cork aggregates within the plaster matrix. Accordingly, the main objective of this work is to complement the experimental observations through a theoretical prediction using high-order beam theories. In this respect, the originality of this study is to confront the modeling based on different material laws of functionally graded material (FGM)-based sandwich beams advocated in the literature to the experimental observations. Therefore, the emphasized results in terms of deflection, stiffness and stresses are compared with a good agreement to the experimental data and the advocated laws of the normalized standards. As main findings, the outcomes analysis provides a practical validated equations enabling reliable prediction of the elastic flexural response of plaster/cork FGM core sandwich beams.

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石膏/软木功能分级芯芯夹层梁弯曲行为的分析模型:分析与实验验证
在本研究的框架内,对石膏和软木包芯和聚合物外壳设计的功能分级芯夹芯梁的弯曲行为进行了分析建模。此外,利用扫描电子显微镜(SEM)对梁芯进行了微观分析,以便更好地了解微观结构材料降解和石膏基体内软木骨料的相互作用。因此,本工作的主要目的是通过利用高阶光束理论的理论预测来补充实验观测。在这方面,本研究的创新之处在于将文献中倡导的基于不同材料规律的功能梯度材料(FGM)夹层梁建模与实验观察相对抗。因此,在挠度、刚度和应力方面的强调结果与实验数据和归一化标准所倡导的规律相吻合。作为主要发现,结果分析提供了一个实用的验证方程,可以可靠地预测石膏/软木FGM核心夹层梁的弹性弯曲响应。
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来源期刊
CiteScore
2.90
自引率
7.70%
发文量
76
审稿时长
>12 weeks
期刊介绍: Transactions of Mechanical Engineering is to foster the growth of scientific research in all branches of mechanical engineering and its related grounds and to provide a medium by means of which the fruits of these researches may be brought to the attentionof the world’s scientific communities. The journal has the focus on the frontier topics in the theoretical, mathematical, numerical, experimental and scientific developments in mechanical engineering as well as applications of established techniques to new domains in various mechanical engineering disciplines such as: Solid Mechanics, Kinematics, Dynamics Vibration and Control, Fluids Mechanics, Thermodynamics and Heat Transfer, Energy and Environment, Computational Mechanics, Bio Micro and Nano Mechanics and Design and Materials Engineering & Manufacturing. The editors will welcome papers from all professors and researchers from universities, research centers, organizations, companies and industries from all over the world in the hope that this will advance the scientific standards of the journal and provide a channel of communication between Iranian Scholars and their colleague in other parts of the world.
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