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首页> 外文期刊>International Journal of Solids and Structures >A mode -independent energy-based buckling analysis method and its application on substrate-supported graphene
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A mode -independent energy-based buckling analysis method and its application on substrate-supported graphene

机译:一种模式 - 依赖性能量为基础的屈曲分析方法及其在基板上的石墨烯上的应用

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摘要

Stability is an important problem in applications of plate and shell structures as well as newly arisen nano-structures, such as nanotubes and graphene sheets. Most classical methods for stability analysis require buckling modes, which are difficult to be accurately predicted, especially for the structures with complex boundary boundaries and load conditions. In this paper, we propose a half-analytical method to predict the critical buckling of structures, named mode-independent energy-based buckling analysis method (MIEM), in which the buckling mode is not needed to be presupposed. The proposed MIEM shows great superiority in dealing with structure buckling under complicated loads and constraints. Besides, it is more suitable for large-scale nanostructures due to its extremely small amount of calculations, and the calculation amount can be further reduced for periodic structures. With the MIEM, the critical buckling of substrate-supported graphene sheets under complex strain states is investigated comprehensively. Furthermore, a unified criterion to predict the critical buckling of substrate-supported graphene is given by a simple expression, which could be of great help in design and manufacture of graphene-based electronics and devices. The MIEM developed in this paper can be used in buckling analysis of structures such as beams and plates as well. (C) 2017 Elsevier Ltd. All rights reserved.
机译:稳定性是板材和壳体结构的应用以及新出现的纳米结构,例如纳米管和石墨烯片的重要问题。稳定性分析的最古典方法需要屈曲模式,难以准确地预测,特别是对于具有复杂边界边界和负载条件的结构。在本文中,我们提出了一种半分析方法来预测结构的关键屈曲,命名为独立的能量基屈曲分析方法(Miem),其中不需要预设屈曲模式。拟议的MIEM在处理复杂负载和约束下处理结构屈曲方面表现出很大的优势。此外,由于其极小的计算,它更适合大规模纳米结构,并且可以进一步降低计算量以进行周期性结构。通过Miem,全面研究复合应变状态下基板支撑的石墨烯片的关键屈曲。此外,通过简单的表达式给出了预测基板支撑的石墨烯的关键屈曲的统一标准,这在基于石墨烯的电子和器件的设计和制造方面具有很大的帮助。本文开发的MIEM也可用于屈曲分析梁和板等结构。 (c)2017 Elsevier Ltd.保留所有权利。

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