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首页> 外文期刊>Microporous and mesoporous materials: The offical journal of the International Zeolite Association >Mechanical properties of hierarchical porous silica thin films: Experimental characterization by nanoindentation and Finite Element modeling
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Mechanical properties of hierarchical porous silica thin films: Experimental characterization by nanoindentation and Finite Element modeling

机译:分层多孔二氧化硅薄膜的机械性能:纳米压痕和有限元建模的实验表征

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摘要

Porous thin films considered for applications like separation, sensing and microelectronic have to sustain mechanical stresses during their integration process or in working conditions. Thanks to recent progress in processing methods, it is now possible to precisely control the porosity and combine ordered mesopores with randomly-distributed macropores to achieve hierarchically porous materials. The mechanical properties of thin films containing different types of porosity (ordered meso, random macro and hierarchical) have been investigated by means of nanoindentation. In particular a method recently proposed by Li and Vlassak (H. Li, J.J. Vlassak, Journal of Materials Research 24 (2009) 1114-1126) is applied to account for the substrate effect. Residual indent impressions were imaged by Atomic Force Microscopy (AFM) to provide some insights in the mechanical behavior of the films. In addition, experimental indentation moduli are compared to theoretical predictions obtained via Finite Element (FE) analysis. The different porous structures have been modeled by FE to obtain the effective elastic properties from which the indentation modulus can be inferred. Finally, the experimental-model differences are discussed.
机译:考虑用于分离,传感和微电子等应用的多孔薄膜必须在其集成过程或工作条件下承受机械应力。由于加工方法的最新进展,现在可以精确地控制孔隙率,并将有序的中孔与随机分布的大孔结合在一起,从而获得分层的多孔材料。已经通过纳米压痕研究了包含不同类型孔隙率(有序介观,随机宏观和分层)的薄膜的机械性能。特别地,最近应用由Li和Vlassak提议的方法(H.Li,J.J.Vlassak,Journal of Materials Research 24(2009)1114-1126)来解决基底效应。残留的压痕印模由原子力显微镜(AFM)成像,以提供有关膜的机械性能的一些见解。此外,将实验压痕模量与通过有限元(FE)分析获得的理论预测值进行了比较。通过FE对不同的多孔结构进行了建模,以获得有效的弹性,可以从中推断出压痕模量。最后,讨论了实验模型的差异。

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