The Oxidation Behavior of ZrB2-SiC Ceramic Composites Fabricated by Plasma Spray Process
Поведение при окислении керамических композитов ZrB2–SiC, изготовленных методом плазменного напыления
2021-01-14
SCID: 54.1/e2658v76
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SiO2/ZrO2 oxide scaleX-ray diffraction (XRD)ZrB2-SiC ceramic compositeshigh-pressure plasma spray (HPPS)oxidation behaviorplasma spray processscanning electron microscopy (SEM)/EDXtransmission electron microscopy (TEM)
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Abstract (AI)
Our goal is to develop a structural ceramic for high-temperature applications in which silicon carbide-based materials (SiCs) are used as matrix composites. The potential of SiCs to deposit a mixture of SiC and zirconium diboride (ZrB2) plasma spray coating is analyzed. To deposit thermal barrier layers containing up to 50 vol.% SiC, a high-pressure plasma spray (HPPS) process was used. Although the SiC cannot be deposited by thermal spray, a mixture of SiC and zirconium diboride (ZrB2) was deposited because these two compounds form a eutectic phase at a temperature below SiC decomposition. The preference was two different forms, 3 mm and 1 mm, of graphite substrates with different thickness values. A comparison of the morphology of SiC-ZrB2 coatings before and after thermal treatment was performed by applying heat to the surface of a gas torch and traditional furnace between 800 °C and 1200 °C. The growth of the oxide scale was calculated with X-ray diffraction (XRD), scanning electron microscopy (SEM)/energy dispersive X-ray analysis (EDX), transmission electron microscopy (TEM), and density. The oxide scale consists of a SiO2 layer with ZrO2 groups. The findings indicate a greater potential for the studied material in protecting against high-temperature oxidation and in a wide variety of aerospace applications.
Key Findings
1
High-pressure plasma spray (HPPS) can deposit thermal barrier layers containing up to 50 vol.% SiC when co-deposited with ZrB2, exploiting a eutectic formed below SiC decomposition temperature.
2
Morphology and oxide-scale growth were characterized by XRD, SEM/EDX, TEM and density measurements to evaluate high-temperature behavior.
3
Oxidation testing (800–1200 °C, gas torch and furnace) shows the formed oxide scale is composed of a SiO2 layer with ZrO2 groups.
4
Pure SiC cannot be deposited by thermal spray, but a SiC–ZrB2 mixture is depositable due to the eutectic lowering processing temperature.
5
The SiC–ZrB2 plasma-sprayed coatings demonstrate promising high-temperature oxidation protection, indicating potential for aerospace structural applications.
Research Object
ZrB2–SiC ceramic composite plasma-spray coatings (deposited on graphite substrates)
Research Subject
High-temperature oxidation behavior and oxide-scale growth/composition (formation of SiO2 layer with ZrO2 phases) of the ZrB2–SiC plasma-sprayed coatings after thermal exposure
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2021-01-14
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