Prediction of thermal conductivity of polymer-based composites by using support vector regression

被引:0
作者
GuiLian Wang
CongZhong Cai
JunFang Pei
XingJian Zhu
机构
[1] Chongqing University,Department of Applied Physics
来源
Science China Physics, Mechanics and Astronomy | 2011年 / 54卷
关键词
polymer matrix composites; thermal conductivity; support vector regression; regression analysis; prediction;
D O I
暂无
中图分类号
学科分类号
摘要
Support vector regression (SVR) combined with particle swarm optimization (PSO) for its parameter optimization, was proposed to establish a model to predict the thermal conductivity of polymer-based composites under different mass fractions of fillers (mass fraction of polyethylene (PE) and mass fraction of polystyrene (PS)). The prediction performance of SVR was compared with those of other two theoretical models of spherical packing and flake packing. The result demonstrated that the estimated errors by leave-one-out cross validation (LOOCV) test of SVR models, such as mean absolute error (MAE) and mean absolute percentage error (MAPE), all are smaller than those achieved by the two theoretical models via applying identical samples. It is revealed that the generalization ability of SVR model is superior to those of the two theoretical models. This study suggests that SVR can be used as a powerful approach to foresee the thermal property of polymer-based composites under different mass fractions of polyethylene and polystyrene fillers.
引用
收藏
相关论文
共 88 条
  • [1] Misri S.(2010)Mechanical properties and fabrication of small boat using woven glass/sugar palm fibres reinforced unsaturated polyester hybrid composite IOP Conf Ser Mater Sci Eng 11 012015-012027
  • [2] Leman Z.(2010)Polymer-based composites with high dielectric constant and low dielectric loss Prog Chem 22 1619-1625
  • [3] Sapuan S. M.(2010)Polymer-based composite scaffolds for tissue engineering J Appl Biomater Biomech 8 57-67
  • [4] Lu P. J.(2010)Influence of filler size and morphology in controlling the thermal emissivity of aluminium/polymer composites for space applications Mater Sci Eng B 168 40-44
  • [5] Wang Y. L.(2008)Enhanced thermal conductivity of polymer matrix composite via high solids loading of aluminum nitride in epoxy resin J Am Ceram Soc 91 1169-1174
  • [6] Sun Z. G.(2001)Thermal interaction between polymer-based composite friction materials and counterfaces J Appl Polym Sci 81 364-369
  • [7] Gloria A.(2006)Enhanced thermal conductivity of polymer composites filled with hybrid filler Compos Part A-Appl Sci Manuf 37 727-734
  • [8] De Santis R.(2010)Heat conduction enhanced shape-stabilized paraffin/HDPE composite PCMs by graphite addition: Preparation and thermal properties Sol Energy Mater Sol Cells 94 1636-1642
  • [9] Ambrosio L.(2009)Thermal conductivity of polymer composites with close-packed structure of nano and micro fillers Compos Part A-Appl Sci Manuf 40 724-730
  • [10] Babrekar H. A.(2000)Polymer-layered silicate nanocomposites: preparation, properties and uses of a new class of materials Mater Sci Eng Rep 28 1-63