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Fizika i Tekhnika Poluprovodnikov, 2019 Volume 53, Issue 6, Pages 731–735 (Mi phts5471)

XVI International conference ''Thermoelectrics and their applications" - 2018 (ISCTA 2018), St. Petersburg, October, 2018

The influence of non-ideal geometric shape on the uncertainty thermal conductivity measurements by a laser-flash method

A. V. Asacha, G. N. Isachenkoab, A. V. Novotelnovaa, V. E. Fomina, K. L. Samusevicha, I. L. Tkhorzhevskiia

a St. Petersburg National Research University of Information Technologies, Mechanics and Optics
b Ioffe Institute, St. Petersburg

Abstract: The influence of the geometric shape of the samples on the uncertainty of the coefficient of thermal conductivity measurement of materials by the method of a laser flash has been studied. Using a method of mathematical modeling in the Comsol Multiphysics software, a model that simulates the process of measuring the coefficient of thermal conductivity of samples made of graphite, Mg$_{2}$Si$_{0.4}$Sn$_{0.6}$ and bismuth telluride using a laser flash method has been created. Samples of cylindrical shape with plane-parallel sides and samples in the form of a truncated cylinder, as well as samples in the form of a parallelepiped with a square base, were investigated. It is shown that the measurement uncertainty of samples with plane-parallel sides and sizes up to 12.7 mm, does not exceed 2%. For samples in the form of a truncated cylinder with a diameter of 3 mm and at an angle of $\varphi$ = 1.5$^{\circ}$, the measurement uncertainty does not exceed 3%. With an increase in the sample diameter and the $\varphi$ angle, the measurement uncertainty increases significantly.

Received: 07.02.2019
Revised: 10.02.2019
Accepted: 14.02.2019

DOI: 10.21883/FTP.2019.06.47717.26


 English version:
Semiconductors, 2019, 53:6, 723–726

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© Steklov Math. Inst. of RAS, 2024