Skip to main navigation menu Skip to main content Skip to site footer

Physics and Mathematics

February 6, 2026; Zurich, Switzerland: XI International Scientific and Practical Conference «GRUNDLAGEN DER MODERNEN WISSENSCHAFTLICHEN FORSCHUNG»


SIZE EFFECT OF THERMAL CONDUCTIVITY IN HETEROGENEOUS MEDIA


DOI
https://doi.org/10.36074/logos-06.02.2026.033
Published
06.02.2026

Abstract

The analysis of thermal energy distribution within composite architectures reinforced with discrete particulate inclusions represents a rigorous and formidable scientific challenge. This complexity originates primarily from the exceedingly intricate multi-scale interactions occurring between filler particles of diverse geometries and the surrounding matrix phase, particularly when subjected to transient heat transfer conditions.

References

  1. Segurado, J., & LLorca, J. (2006). Computational micromechanics of composites: the effect of particle spatial distribution. Mechanics of materials, 38(8-10), 873-883. https://doi.org/10.1016/j.mechmat.2005.06.026.
  2. Liang, S., Yu, J., Gu, Y., Zhou, Y., & Liu, W. (2025). Defect detection in composite materials based on multi-scale wavelet transform and sparse principle component thermography. Engineering Research Express, 7(4), 0452h1. https://doi.org/ 10.1088/2631-8695/ae2c46

Most read articles by the same author(s)