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Hot corrosion behavior of plasma sprayed powder-solution precursor hybrid thermal barrier coatings

机译:等离子喷涂粉末溶液前体混合热阻挡涂层的热腐蚀行为

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In recent times, plasma sprayed powder-solution precursor hybrid composite thermal barrier coatings have been developed to harness the dual benefits of both conventional atmospheric plasma spraying (APS) and solution precursor plasma spraying (SPPS) processes. In this study, hot corrosion behavior of plasma sprayed powder solution precursor composite (PSP-SPC) YSZ TBCs in molten salt mixtures of 90 wt.% Na2SO4 + 5 wt.% V2O5 + 5 wt.% NaCl and 50 wt.% Na2SO4 + 50 wt.% V2O5 at 900 degrees C was investigated. The employed coating showed a bimodal microstructure comprising coarse splats derived from the powder feedstock as in the APS process and fine splats resulting from the solution precursor as typical of SPPS process. The PSP-SPC coatings showed a significantly higher resistance to spallation than APS, SPPS and EB-PVD coatings in both the salt environments. These coatings showed shorter life in vanadate environment compared to that of the chloride environments as the former promotes the formation of monoclinic ZrO2 and YVO4 phases more than the latter.
机译:最近,已经开发出等离子体喷涂粉末溶液前体混合热阻挡涂层以利用常规大气等离子体喷涂(APS)和溶液前体等离子体喷涂(SPP)工艺的双重益处。在该研究中,等离子体喷涂粉末溶液的热腐蚀行为前体复合物(PSP-SPC)YSZ TBC在熔融盐混合物中的90重量%Na 2 SO 4 + 5重量%Na 2 SO 4 + 5重量%NaCl和50重量%Na 2 SO 4 +调查了50重量%。%V2O5在900摄氏度下进行。所用的涂层显示了双峰微观结构,包括衍生自粉末原料的粗Splats,如APS工艺和由溶液前体作为SPPS工艺的典型溶液前体引起的细脾脏。 PSP-SPC涂层显示出比盐环境中的AP,SPP和EB-PVD涂层显着更高的脱模性。与前者促进单斜棉和YVO4相比,这些涂料相比,这些涂料在氯化物环境中较短的钒酸盐环境寿命更短。

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