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首页> 外文期刊>Journal of Mechanical Science and Technology >Effect of interlayer forces for multilayered graphene sheets with different gap thicknesses in using nanoscale molecular mechanics approach
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Effect of interlayer forces for multilayered graphene sheets with different gap thicknesses in using nanoscale molecular mechanics approach

机译:纳米尺度分子力学方法对不同间隙厚度的多层石墨烯片的层间力的影响

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摘要

Graphene sheets are excellent materials to be adopted for powerful applications because of their superior mechanical and electrical properties. This study proposes a multilayered graphene sheet (MLGS) through finite element model (FEM) based on the use of hybrid of beam and spring elements and evaluate its mechanical properties with different gap thicknesses. A three-dimensional coupled FEM for an MLGS is developed through molecular mechanics. The interaction forces of the graphene layer with different gap thicknesses are also considered. The out-of-plane deformation of the bonds is distinguished from the in-plane deformation by considering a circular cross section for the beam elements. The effects of the interlayer forces on Young's modulus and shear modulus of MLGS are investigated. Simulation results from this work are comparable to both experimental tests and numerical studies from literature.
机译:石墨烯片具有出色的机械和电气性能,因此是用于强大应用的出色材料。这项研究基于有限元模型(FEM)提出了一种多层石墨烯片(MLGS),其基于梁和弹簧元件的混合使用,并评估了其在不同间隙厚度下的力学性能。通过分子力学开发了用于MLGS的三维耦合有限元。还考虑了具有不同间隙厚度的石墨烯层的相互作用力。通过考虑梁单元的圆形横截面,可以将键的面外变形与面内变形区分开。研究了层间力对MLGS的杨氏模量和剪切模量的影响。这项工作的模拟结果可与实验测试和文献中的数值研究相媲美。

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