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Effective thermal conductivity of condensed polymeric nanofluids (nanosolids) controlled by diffusion and interfacial scattering

机译:受扩散和界面散射控制的聚合高分子纳米流体(纳米固体)的有效导热系数

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Thermal properties of polymeric nanosolids, obtained by condensing the corresponding nanofluids, are investigated using photothermal techniques. The heat transport properties of two sets of polyvinyl alcohol (PVA) based nanosolids, TiO2/PVA and Cu/PVA, prepared by condensing the respective nanofluids, which are prepared by dispersing nanoparticles of TiO2 and metallic copper in liquid PVA, are reported. Two photothermal techniques, the photoacoustic and the photopyroelectric techniques, have been employed for measuring thermal diffusivity, thermal conductivity and specific heat capacity of these nanosolids. The experimental results indicate that thermal conduction in these polymer composites is controlled by heat diffusion through the embedded particles and interfacial scattering at matrixa€“particle boundaries. These two mechanisms are combined to arrive at an expression for their effective thermal conductivity. Analysis of the results reveals the possibility to tune the thermal conductivity of such nanosolids over a wide range using the right types of nanoparticles and right concentration.
机译:使用光热技术研究了通过冷凝相应的纳米流体而获得的聚合物纳米固体的热性能。报道了通过缩合各自的纳米流体而制备的两组基于聚乙烯醇(PVA)的纳米固体TiO 2 / PVA和Cu / PVA的热传递性质,所述纳米流体是通过将TiO 2和金属铜的纳米颗粒分散在液体PVA中而制备的。已经采用两种光热技术,即光声技术和光热电技术,来测量这些纳米固体的热扩散率,热导率和比热容。实验结果表明,这些聚合物复合材料的热传导受包埋颗粒的热扩散和基质颗粒边界处的界面散射的控制。将这两种机制结合起来即可得出有效导热系数的表达式。结果分析表明,使用合适的纳米颗粒类型和合适的浓度,可以在很宽的范围内调节此类纳米固体的热导率。

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