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首页> 外文期刊>Particulate Science and Technology: An International Journal >Use of Nanoindentation, Finite Element Simulations, and a Combined Experimental/Numerical Approach to Characterize Elastic Moduli of Individual Porous Silica Particles
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Use of Nanoindentation, Finite Element Simulations, and a Combined Experimental/Numerical Approach to Characterize Elastic Moduli of Individual Porous Silica Particles

机译:使用纳米压痕,有限元模拟和组合的实验/数值方法表征单个多孔二氧化硅颗粒的弹性模量

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This article describes the use of a combination of experimental nanoindentation and finite element numerical simulations to indirectly determine the elastic modulus of individual porous, micron-sized silica (SiO2) particles. Two independent nanoindentation experiments on individual silica particles were employed, one with a Berkovich pyramidal nanoindenter tip, the other with a flat punch nanoindenter tip. In both cases, 3D finite element simulations were used to generate nanoindenter load-displacement curves for comparison with the corresponding experimental data, using the elastic modulus of the particle as a curve-fitting parameter. The resulting indirectly determined modulus values from the two independent experiments were found to be in good agreement, and were considerably lower than the published values for bulk or particulate solid silica. The results are also consistent with previously reported modulus values for nanoindentation of porous thin film SiO2. Based on a review of the literature, the authors believe that this is the first article to report on the use of nanoindentation and numerical simulations in a combined experimentalumerical approach to determine the elastic modulus of individual porous silica particles.
机译:本文介绍了结合使用实验纳米压痕和有限元数值模拟间接确定单个多孔,微米级二氧化硅(SiO2)颗粒的弹性模量的方法。在单个二氧化硅颗粒上进行了两次独立的纳米压痕实验,一个具有Berkovich金字塔形纳米压痕尖端,另一个具有平冲头纳米压痕尖端。在这两种情况下,均使用3D有限元模拟来生成纳米压头载荷-位移曲线,以与相应的实验数据进行比较,并使用粒子的弹性模量作为曲线拟合参数。发现由两个独立实验得到的间接确定的模量值具有很好的一致性,并且大大低于散装或颗粒状固体二氧化硅的公开值。该结果也与先前报道的多孔薄膜SiO 2纳米压痕的模量值一致。基于对文献的回顾,作者认为这是第一篇报道纳米压痕和数值模拟在组合实验/数值方法中确定单个多孔二氧化硅颗粒弹性模量的文章。

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