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On Thermal Conductivity of Micro- and Nanocellular polymer Foams

机译:微孔和纳米孔聚合物泡沫的导热系数

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Many theoretical and empirical models exist to predict the effective thermal conductivity of polymer foams. However, most of the models only consider the effect of porosity, while the pore size effect is ignored. The objective of this study is to understand the effect of pore size on the thermal conductivity of polymer foams, especially when it reduces to the micro and nanometer scales. A wide range of pore sizes from 1 nm to 1 mm were studied in conjunction with the porosity effect using finite element analysis and molecular dynamics simulation methods. Experimental data was used to validate the modeling result. It is shown that the pore size has significant effect on thermal conductivity, even for microcellular and conventional foams. The contribution of heat conduction through air is negligible when pore size is reduced to the micrometer scale. The extremely low thermal conductivity of nanofoams is attributed to extensive diffusive scattering of heat carriers in the solid phase of polymer matrix, instead of air. This study provides quantitative understanding of the pore size effect on thermal conductivity of polymer foams. It is also shown that poletherimide (PEI) nanofoams could have a thermal conductivity as low as 0.015 W/m-K. POLYM. ENG. SCI., 53:1901-1909, 2013. ? 2013 Society of Plastics Engineers
机译:存在许多理论和经验模型来预测聚合物泡沫的有效导热率。但是,大多数模型仅考虑孔隙率的影响,而忽略了孔径影响。这项研究的目的是了解孔径对聚合物泡沫导热性的影响,尤其是当孔径减小至微米和纳米级时。结合孔隙率效应,使用有限元分析和分子动力学模拟方法研究了从1 nm到1 mm的各种孔径。实验数据用于验证建模结果。结果表明,即使对于微孔泡沫和常规泡沫,孔径对导热系数也有显着影响。当孔径减小到微米级时,通过空气的热传导贡献可忽略不计。纳米泡沫的极低导热率归因于热载体在聚合物基体的固相中而不是空气中的广泛扩散散射。这项研究定量了解了孔径对聚合物泡沫导热性的影响。还显示极热酰亚胺(PEI)纳米泡沫的导热系数可低至0.015 W / m-K。 POLYM。 ENG。 SCI。,53:1901-1909,2013。 2013塑料工程师学会

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