4.7 Article

Comprehensive microstructural characterization and CMAS infiltration resistance of ytterbium disilicate coatings with lamellar and quasi-columnar structures

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CORROSION SCIENCE
卷 221, 期 -, 页码 -

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PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.corsci.2023.111316

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Environmental barrier coating; Ytterbium disilicate coating; CMAS corrosion; Atmospheric plasma spray; Plasma spray-physical vapor deposition

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CMAS deposits pose a significant threat to the service life of EBC. This study investigates the response of Yb2Si2O7 coatings with lamellar and quasi-columnar structures to CMAS attack. The dual-phase structure significantly enhances the apatite-forming capability and improves the coating's resistance to CMAS infiltration. The presence of amorphous silica in PS-PVD coatings hinders the formation of an apatite sealing layer.
Degradation by CMAS deposits represents a considerable threat to the EBC service life. Current work contributes to understanding the response of Yb2Si2O7 coatings with lamellar and quasi-columnar structures to CMAS attack. It is revealed that the dual-phase structure in APS coating drastically improved the overall coating resistance to CMAS infiltration by enhancing the apatite-forming capability. The amorphous silica in PS-PVD coatings limited the formation of apatite sealing layer. With a continuous degradation of sand-phobic morphology, molten CMAS rapidly penetrated inside the entire coating. This study highlights that microstructure modulation of Yb2Si2O7 coating is a promising strategy for CMAS infiltration mitigation.

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