Computational Linear and Nonlinear Free Vibration Analyses of Micro/Nanoscale Composite Plate-Type Structures With/Without Considering Size Dependency Effect: A Comprehensive Review

IF 9.7 2区 工程技术 Q1 COMPUTER SCIENCE, INTERDISCIPLINARY APPLICATIONS Archives of Computational Methods in Engineering Pub Date : 2024-06-10 DOI:10.1007/s11831-024-10132-4
Zummurd Al Mahmoud, Babak Safaei, Saeid Sahmani, Mohammed Asmael, AliReza Setoodeh
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Abstract

Recently, the mechanical performance of various mechanical, electrical, and civil structures, including static and dynamic analysis, has been widely studied. Due to the neuroma's advanced technology in various engineering fields and applications, developing small-size structures has become highly demanded for several structural geometries. One of the most important is the nano/micro-plate structure. However, the essential nature of highly lightweight material with extraordinary mechanical, electrical, physical, and material characterizations makes researchers more interested in developing composite/laminated-composite-plate structures. To comprehend the dynamical behavior, precisely the linear/nonlinear-free vibrational responses, and to represent the enhancement of several parameters such as nonlocal, geometry, boundary condition parameters, etc., on the free vibrational performance at nano/micro scale size, it is revealed that to employ all various parameters into various mathematical equations and to solve the defined governing equations by analytical, numerical, high order, and mixed solutions. Thus, the presented literature review is considered the first work focused on investigating the linear/nonlinear free vibrational behavior of plates on a small scale and the impact of various parameters on both dimensional/dimensionless natural/fundamental frequency and Eigen-value. The literature is classified based on solution type and with/without considering the size dependency effect. As a key finding, most research in the literature implemented analytical or numerical solutions. The drawback of classical plate theory can be overcome by utilizing and developing the elasticity theories. The nonlocality, weight fraction of porosity, or the reinforcements, and its distribution type of elastic foundation significantly influence the frequencies.

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考虑/不考虑尺寸依赖效应的微/纳米级复合材料板型结构的线性和非线性自由振动计算分析:全面回顾
近年来,各种机械、电气和土木结构的力学性能,包括静力和动力分析,得到了广泛的研究。由于神经瘤在各种工程领域和应用中的先进技术,开发小尺寸结构对多种结构几何形状提出了很高的要求。其中最重要的是纳米/微板结构。然而,高度轻量化材料具有非凡的机械、电气、物理和材料特性的本质使得研究人员对开发复合材料/层压复合材料板结构更感兴趣。为了准确地理解线性/非线性自由振动响应的动力学行为,以及表征非局部、几何、边界条件等参数对纳米/微米尺度下自由振动性能的增强,揭示了将各种参数纳入各种数学方程,并通过解析解、数值解、高阶解和混合解来求解所定义的控制方程。因此,本文的文献综述被认为是第一次在小尺度上研究板的线性/非线性自由振动行为,以及各种参数对有量纲/无量纲固有/基频和本征值的影响。文献是根据溶液类型和考虑/不考虑大小依赖效应进行分类的。作为一个关键发现,文献中的大多数研究都采用了解析或数值解。利用和发展弹性理论可以克服经典板理论的缺陷。弹性地基的非定域性、孔隙率、加筋及其分布类型对频率有显著影响。
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来源期刊
CiteScore
19.80
自引率
4.10%
发文量
153
审稿时长
>12 weeks
期刊介绍: Archives of Computational Methods in Engineering Aim and Scope: Archives of Computational Methods in Engineering serves as an active forum for disseminating research and advanced practices in computational engineering, particularly focusing on mechanics and related fields. The journal emphasizes extended state-of-the-art reviews in selected areas, a unique feature of its publication. Review Format: Reviews published in the journal offer: A survey of current literature Critical exposition of topics in their full complexity By organizing the information in this manner, readers can quickly grasp the focus, coverage, and unique features of the Archives of Computational Methods in Engineering.
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