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On effective thermal properties of wood particles reinforced HDPE composites

  • 01-03-2022
  • Original
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Abstract

The article delves into the effective thermal properties of wood particle reinforced HDPE composites, highlighting their potential as thermal insulators and load-bearing materials. It begins with an introduction to the growing role of plant-based materials in thermoplastic matrices, emphasizing their low cost and environmental benefits. The study then explores the thermal insulating properties of these biocomposites, noting that the low thermal conductivity of plant fillers makes them excellent insulators. The authors employ laser flash analysis to measure the thermal diffusivity and conductivity of the composites, finding that wood particles significantly lower the heat diffusion rate. The article also compares several theoretical models and computational homogenization methods to determine the effective thermal conductivity of the composites. Notably, it introduces a pixel-based homogenization technique that uses real images of specimens to preserve the microstructure of the heterogeneous materials. The study concludes by highlighting the computational homogenization method's flexibility and reliability in determining the effective thermal properties of the composites, even when incorporating defects like porosity. The findings suggest that these biocomposites have promising applications in structural engineering and thermal management.

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Title
On effective thermal properties of wood particles reinforced HDPE composites
Authors
M. S. Sukiman
T. Kanit
F. N’Guyen
A. Imad
F. Erchiqui
Publication date
01-03-2022
Publisher
Springer Berlin Heidelberg
Published in
Wood Science and Technology / Issue 2/2022
Print ISSN: 0043-7719
Electronic ISSN: 1432-5225
DOI
https://doi.org/10.1007/s00226-022-01365-2
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