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JOURNALS // Teplofizika vysokikh temperatur // Archive

TVT, 2020 Volume 58, Issue 3, Pages 419–425 (Mi tvt11307)

This article is cited in 1 paper

Heat and Mass Transfer and Physical Gasdynamics

Heat-resistance tests of high-temperature composite materials via laser heating in a supersonic flow

K. J. Arefyevab, S. V. Kruchkovab, A. V. Glushnevac, A. S. Savel'evc, É. E. Sonc, A. S. Boreyshod, M. Yu. Khomskyd

a Bauman Moscow State Technical University
b Central Institute of Aviation Motors, State Scientific Center of Russian Federation, Moscow
c Joint Institute for High Temperatures, Russian Academy of Sciences, Moscow
d Lasers Sistems Ltd., St.-Petersburg

Abstract: A method is proposed for the study of the heat resistance of samples of high-temperature composite materials via local laser heating of their surface in a supersonic flow. The performed studies allow the strategic selection of high-temperature materials based on the intensity of erosion with simultaneous laser and gasdynamic effects. The ablation rates of composite materials were experimentally determined at implemented surface temperatures of $2100$$2300$ K and blowing with a supersonic flow at a Mach number $\rm M = 2$. The effect of the various additive materials, including carbides and oxides of $\rm Hf$, $\rm Si$, $\rm Ta$, and $\rm Zr$, on the ablation rate was studied. The data can be used as recommendations in the selection of formulations for high-temperature composite materials.

UDC: 620.11

Received: 12.12.2019
Revised: 24.12.2019
Accepted: 24.12.2019

DOI: 10.31857/S0040364420030023


 English version:
High Temperature, 2020, 58:3, 393–399

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© Steklov Math. Inst. of RAS, 2024