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Oxygen Permeability Coefficient of High Density Polyethylene/Cu Nanofibers Nanocomposites below Percolation

机译:渗流以下高密度聚乙烯/铜纳米纤维纳米复合材料的透氧系数

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AbstractThe main objective of this study was to relate the elastic modulus of a polymer nanocomposite to its permeability coefficient. The materials studied included high density polyethylene (HDPE) filled with copper nanofibers (Cu-nanofibers). Both of the experimental values of the elastic modulus and the gas permeability coefficient of the HDPE/Cu-nanofibers films were obtained from Grigoriadou et al. and Bikiaris & Triantafyllidis studies. In this study, the Halpin-Tsai model was modified and then used to fit the elastic modulus experimental data. It was found that the modified shape factor (ω′) of the Cu fibers as a function of the composite volume fraction is125exp(−41∅). Then, the model was used to predict the oxygen permeability coefficient of the HDPE/Cu-nanofibers films below the percolation point. It was found that the tensile modulus of the nanocomposites increased by 24% whereas the permeability to oxygen coefficients decreased by 65% compared to pristine HDPE. Also, the results from the models match the experimental data.
机译:摘要这项研究的主要目的是将聚合物纳米复合材料的弹性模量与其渗透系数相关联。研究的材料包括填充有铜纳米纤维(Cu-纳米纤维)的高密度聚乙烯(HDPE)。 HDPE / Cu-纳米纤维薄膜的弹性模量和透气系数的实验值均来自Grigoriadou等人。以及Bikiaris和Triantafyllidis研究。在这项研究中,修改了Halpin-Tsai模型,然后将其用于拟合弹性模量实验数据。已发现,作为复合体积分数的函数,Cu纤维的修正形状因子(ω')为125exp(-41∅)。然后,使用该模型预测渗滤点以下的HDPE / Cu-纳米纤维薄膜的透氧系数。发现与原始HDPE相比,纳米复合材料的拉伸模量提高了24%,而对氧系数的渗透性降低了65%。此外,模型的结果与实验数据匹配。

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