Preview

Proceedings of the Institute of Mathematics of the NAS of Belarus

Advanced search

Numerical calculation of the effective thermal conductivity coefficient of particle-filled composite materials

Abstract

   A comprehensive method has been developed for finding the effective thermal conductivity coefficients of dispersed-filled composite materials, taking into account their structure and depending on the thermophysical properties of temperature. Computational experiments were carried out.

About the Author

A. N. Aulas
Institute of Mathematics of the National Academy of Sciences of Belarus
Belarus

Minsk



References

1. Dulnev G. N., Zarichnyak Y. P. Thermal conductivity of mixtures and composite materials. Leningrad, Energiya, 1974 (in Russian).

2. Lyukshin B. A. [et al.]. Dispersion-filled polymer composites for technical and medical purposes. Novosibirsk, Izdatelstvo SO RAN, 2017 (in Russian).

3. Zarubin V. S. Engineering methods for solving thermal conductivity problems. Moscow, Energoatomizdat, 1983 (in Russian).

4. Nikitin A. V., Liopo V. A. Avdeychik S. V. Struck V. A. Model representations of thermal conductance in polymer nanocomposites. Scientific reports BSU. Ser. Mathematics. Physics, 2014, vol. 34, no. 5(176), pp. 150–160 (in Russian).

5. Kuptsov S. M. Determination of the thermal conductivity coefficient of thermal insulation materials using the plate method. Moscow, RGU nefti i gaza, 2003 (in Russian).

6. Samarskii A. A. The theory of difference schemes. Moscow, Nauka, 1977 (in Russian).

7. Zinoviev V. E. Thermophysical properties of metals at high temperatures. Moscow, Metallurgiya, 1989 (in Russian).


Review

For citations:


Aulas A.N. Numerical calculation of the effective thermal conductivity coefficient of particle-filled composite materials. Proceedings of the Institute of Mathematics of the NAS of Belarus. 2024;32(1):86-96. (In Russ.)

Views: 50


Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 License.


ISSN 1812-5093 (Print)