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A Fractal Model for Effective Thermal Conductivity of Isotropic Porous Silica Low-k Materials 被引量:2

A Fractal Model for Effective Thermal Conductivity of Isotropic Porous Silica Low-k Materials
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摘要 We establish a new model based on fractal theory and cubic spline interpolation to study the effective thermal conductivity of isotropic porous silica low-k materials. A 3D fractal model is introduced to describe the structure of the silica xerogel and silica hybrid materials (such as methylsilsesquioxane, MSQ). Combined with fractal structure, a more suitable medium approximation is developed to study the isotropic porous silica xerogel and MSQ materials. Cubic spline interpolation for fitting discrete predictions from the fractal model is used to obtain the continuous function of the effective thermal conductivity versus porosity. Compared with other common models, the effective thermal conductivity predicted by our model presents better agreement with the experimental data for all porosity. These results indicate that the proposed model is valid. We establish a new model based on fractal theory and cubic spline interpolation to study the effective thermal conductivity of isotropic porous silica low-k materials. A 3D fractal model is introduced to describe the structure of the silica xerogel and silica hybrid materials (such as methylsilsesquioxane, MSQ). Combined with fractal structure, a more suitable medium approximation is developed to study the isotropic porous silica xerogel and MSQ materials. Cubic spline interpolation for fitting discrete predictions from the fractal model is used to obtain the continuous function of the effective thermal conductivity versus porosity. Compared with other common models, the effective thermal conductivity predicted by our model presents better agreement with the experimental data for all porosity. These results indicate that the proposed model is valid.
出处 《Chinese Physics Letters》 SCIE CAS CSCD 2010年第4期163-166,共4页 中国物理快报(英文版)
基金 Supported by the National Natural Science Foundation of China under Grant No 60476011.
关键词 Soft matter liquids and polymers Condensed matter: electrical magnetic and optical Condensed matter: structural mechanical & thermal Chemical physics and physical chemistry Soft matter, liquids and polymers Condensed matter: electrical, magnetic and optical Condensed matter: structural, mechanical & thermal Chemical physics and physical chemistry
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