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Molecular dynamics study of the influence of aggregation and percolation in Al2O3/polyethylene oxide nanofluids on the effective thermal conductivity

机译:Al2O3 /聚环氧乙烷纳米流体中聚集和渗流对有效导热系数影响的分子动力学研究

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Nanocomposites and nanofluids have the potential to be used widely as effective coolant materials. The motivation for this study is a belief that aggregation and percolation of nanoparticles in coolants could help explain the considerable variability in the values of thermal conductivity observed in systems containing similar components. This paper reports the results of the molecular dynamics study of the impact of aggregation and percolation of nanoparticles on the thermal conductivity in nanofluids containing aluminum oxide (α-alumina) nanospheres surrounded by polymer, polyethylene oxide (PEG400). The Reverse Non-Equilibrium Molecular Dynamics (RNEMD) [1] approach implemented in the open source code Molecular Dynamics Simulator LAMMPS [2] was utilized for the simulations. The values of the effective thermal conductivities obtained from the RNEMD simulations increased with growing aggregation from 0.4 W/m•K to 0.8 W/m•K for the structures with no aggregation and with a percolation channel, respectively. Equilibrium Molecular Dynamics (EMD) simulations of these system were also performed as an alternative method to study the thermal conductivity. The existence of the elastic modes in the nanoparticles/matrix superstructure was confirmed. These non-propagating elastic modes do not influence directly the heat flow but their presence in nanocomposites and nanofluids affects the applicability of EMD as an adequate tool for determining the value of thermal conductivity in such systems.
机译:纳米复合材料和纳米流体有潜力被广泛用作有效的冷却剂材料。进行这项研究的动机是相信,冷却剂中纳米颗粒的聚集和渗滤可以帮助解释在包含相似成分的系统中观察到的热导率值的显着变化。本文报道了分子动力学研究结果,这些结果涉及纳米粒子的聚集和渗滤对包含被聚合物,聚环氧乙烷(PEG400)包围的氧化铝(α-氧化铝)纳米球的纳米流体中热导率的影响。在仿真中使用了在开源代码分子动力学模拟器LAMMPS [2]中实现的反向非平衡分子动力学(RNEMD)[1]方法。对于没有聚集和具有渗流通道的结构,从RNEMD模拟获得的有效热导率值随着聚集的增加而从0.4 W / m•K增加到0.8 W / m•K。这些系统的平衡分子动力学(EMD)模拟也被用作研究导热性的替代方法。证实了在纳米颗粒/基质超结构中存在弹性模式。这些非传播弹性模式不会直接影响热流,但是它们在纳米复合材料和纳米流体中的存在会影响EMD作为确定此类系统中热导率值的适当工具的适用性。

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