Oxidation of Ceramic Materials Based on HfB2-SiC under the Influence of Supersonic CO2 Jets and Additional Laser Heating

被引:7
作者
Simonenko, Elizaveta P. [1 ]
Kolesnikov, Anatoly F. [2 ]
Chaplygin, Aleksey V. [2 ]
Kotov, Mikhail A. [2 ]
Yakimov, Mikhail Yu. [2 ]
Lukomskii, Ilya V. [2 ]
Galkin, Semen S. [2 ]
Shemyakin, Andrey N. [2 ]
Solovyov, Nikolay G. [2 ]
Lysenkov, Anton S. [3 ]
Nagornov, Ilya A. [1 ]
Mokrushin, Artem S. [1 ]
Simonenko, Nikolay P. [1 ]
Kuznetsov, Nikolay T. [1 ]
机构
[1] Russian Acad Sci, Kurnakov Inst Gen & Inorgan Chem, Leninsky pr 31, Moscow 119991, Russia
[2] Russian Acad Sci, Ishlinsky Inst Problems Mech, 101-1 Pr Vernadskogo, Moscow 119526, Russia
[3] Russian Acad Sci, AA Baikov Inst Met & Mat Sci, Leninskii pr 49, Moscow 119334, Russia
关键词
UHTC; borides; SiC; supersonic carbon dioxide jet; laser heating; oxidation; induction HF-plasmatron; HIGH TEMPERATURE CERAMICS; SHARP LEADING EDGES; MECHANICAL-PROPERTIES; DISSOCIATED AIR; ZRB2-SIC COMPOSITES; OXIDE SCALE; SIC UHTC; BEHAVIOR; RAMAN; SURFACE;
D O I
10.3390/ijms241713634
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The features of oxidation of ultra-high-temperature ceramic material HfB2-30 vol.%SiC modified with 1 vol.% graphene as a result of supersonic flow of dissociated CO2 (generated with the use of high-frequency induction plasmatron), as well as under the influence of combined heating by high-speed CO2 jets and ytterbium laser radiation, were studied for the first time. It was found that the addition of laser radiation leads to local heating of the central region from similar to 1750 to similar to 2000-2200 degrees C; the observed temperature difference between the central region and the periphery of similar to 300-550 degrees C did not lead to cracking and destruction of the sample. Oxidized surfaces and cross sections of HfB2-SiC-C-G ceramics with and without laser heating were investigated using X-ray phase analysis, Raman spectroscopy and scanning electron microscopy with local elemental analysis. During oxidation by supersonic flow of dissociated CO2, a multilayer near-surface region similar to that formed under the influence of high-speed dissociated air flows was formed. An increase in surface temperature with the addition of laser heating from 1750-1790 to 2000-2200 degrees C (short term, within 2 min) led to a two to threefold increase in the thickness of the degraded near-surface area of ceramics from 165 to 380 microns. The experimental results indicate promising applications of ceramic materials based on HfB2-SiC as part of high-speed flying vehicles in planetary atmospheres predominantly composed of CO2 (e.g., Venus and Mars).
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页数:20
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