Hot corrosion behavior of rare earth zirconates and yttria partially stabilized zirconia thermal barrier coatings

Thermal barrier coatings (TBCs) of yttria stabilized zirconia (YSZ) and rare earth zirconates of La 2Zr 2O 7 (LZ) and La 2(Zr 0.7Ce 0.3) 2O 7 (LZ7C3) were deposited by electron beam-physical vapor deposition (EB-PVD). The present study compares the hot corrosion performances of YSZ, LZ and LZ7C3 coa...

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Veröffentlicht in:Surface & coatings technology 2010-08, Vol.204 (21), p.3652-3661
Hauptverfasser: Xu, Zhenhua, He, Limin, Mu, Rende, He, Shimei, Huang, Guanghong, Cao, Xueqiang
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Sprache:eng
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Zusammenfassung:Thermal barrier coatings (TBCs) of yttria stabilized zirconia (YSZ) and rare earth zirconates of La 2Zr 2O 7 (LZ) and La 2(Zr 0.7Ce 0.3) 2O 7 (LZ7C3) were deposited by electron beam-physical vapor deposition (EB-PVD). The present study compares the hot corrosion performances of YSZ, LZ and LZ7C3 coatings in the presence of molten mixture of Na 2SO 4 + V 2O 5 at 1173 K for 100 h. X-ray diffraction (XRD) indicates that the reaction between NaVO 3 and Y 2O 3 produces YVO 4, leaching Y 2O 3 from YSZ and causing the progressive destabilization transformation from t′ to m-ZrO 2. The excess La 2O 3 in the as-deposited LZ coating can aggravate the degradation of LZ coating by both NaVO 3 and Na 2SO 4, resulting in very rapid disintegration of the coating. In contrast, the LZ7C3 coating is still perfect without significant degradation, which exhibits the best performance for hot corrosion resistance among all the coatings. Phase transformation and chemical interaction are the primarily corrosive mechanisms for deterioration of YSZ and LZ coatings.
ISSN:0257-8972
1879-3347
DOI:10.1016/j.surfcoat.2010.04.044