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首页> 外文期刊>International Journal of Solids and Structures >Indentation behavior of the stiffest membrane mounted on a very compliant substrate: Graphene on PDMS
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Indentation behavior of the stiffest membrane mounted on a very compliant substrate: Graphene on PDMS

机译:在非常柔性的基材上安装在非常柔性的衬底上的缩进行为:PDMS上的石墨烯

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AbstractGraphene is the stiffest membrane and PDMS is one of the very compliant materials. The indentation response of a graphene monolayer mounted on a PDMS substrate (graphene/PDMS) is studied by both experimental and computational investigations. Due to the huge elastic modulus ratio between membrane and substrate (~106) and the very large ratio of indentation depth to membrane thickness (~103), the indentation deformation of graphene in the graphene/PDMS structure is analogous to that of free-standing (F-S) graphene but just with a relatively smaller indentation depth (i.e., the graphene deformation is insensitive to the appearance of PDMS substrate); the graphene can create a screening effect, which causes the PDMS substrate deformation to be insensitive to the tip geometry. In addition, with the aid of finite element method (FEM), the elastic modulus of graphene monolayer can be accurately determined from the overall indentation response of graphene/PDMS using an inverse analysis, which is determined as 0.982TPa (very close to previously reported values). The present approach can be also extended to other 2D materials.]]>
机译:<![cdata [ Abstract 石墨烯是最硬膜,PDMS是非常兼容的材料之一。通过实验和计算研究研究安装在PDMS衬底(石墨烯/ PDMS)上的石墨烯单层的压痕响应。由于膜和底物之间的巨大弹性模量(〜10 6 )以及膜厚度的非常大的缩进深度比(〜10 3 ),石墨烯/ PDMS结构中石墨烯的压痕变形类似于独立(FS)石墨烯,而是仅具有相对较小的压痕深度(即,石墨烯变形对PDMS衬底的外观不敏感);石墨烯可以产生筛选效果,这导致PDMS衬底变形对尖端几何形状不敏感。另外,借助有限元方法(FEM),可以使用逆分析从石墨烯/ PDMS的整体压痕响应精确地确定石墨烯单层的弹性模量,其被确定为0.982TPa(非常接近先前报道价值观)。本方法也可以扩展到其他2D材料。 ]]>

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