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首页> 外文期刊>Physica, E. Low-dimensional systems & nanostructures >Postbuckling analysis of multi-layered graphene sheets under non-uniform biaxial compression
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Postbuckling analysis of multi-layered graphene sheets under non-uniform biaxial compression

机译:非均匀双轴压缩下多层石墨烯片的后屈曲分析

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摘要

In this article, the nonlinear buckling characteristics of multi-layered graphene sheets are investigated. The graphene sheet is modeled as an orthotropic nanoplate with size-dependent material properties. The graphene film is subjected by non-uniformly distributed in-plane load through its thickness. To include the small scale and the geometrical nonlinearity effects, the governing differential equations are derived based on the nonlocal elasticity theory in conjunction with the von Karman geometrical model. Explicit expressions for the postbuckling loads of single-and double-layered graphene sheets with simply supported edges under biaxial compression are obtained. For numerical results, six types of armchair and zigzag graphene sheets with different aspect ratio are considered. The present formulation and method of solution are validated by comparing the results, in the limit cases, with those available in the open literature. Excellent agreement between the obtained and available results is observed. Finally, the effects of nonlocal parameter, buckling mode number, compression ratio and non-uniform parameter on the postbuckling behavior of multi-layered graphene sheets are studied.
机译:本文研究了多层石墨烯片的非线性屈曲特性。石墨烯片被建模为具有尺寸依赖性材料特性的正交各向异性纳米板。石墨烯薄膜在其整个厚度上承受非均匀分布的面内载荷。为了包括小规模和几何非线性效应,基于非局部弹性理论结合von Karman几何模型,导出了控制微分方程。获得了在双轴压缩下具有简单支撑边缘的单层和双层石墨烯片的屈曲后载荷的明确表达式。对于数值结果,考虑了六种不同纵横比的扶手椅和曲折石墨烯片。通过比较极限情况下的结果与公开文献中提供的结果,可以验证本解决方案和方法的有效性。观察到获得的结果与可获得的结果之间的极好的一致性。最后,研究了非局部参数,屈曲模数,压缩比和非均匀参数对多层石墨烯片后屈曲行为的影响。

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