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Application of High-Velocity Oxygen-Fuel (HVOF) Spraying to Fabrication of Yb2Si2O7 Environmental Barrier Coatings

机译:高速氧气-燃料喷涂在Yb2Si2O7环境隔离涂层制备中的应用

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摘要

From the literature, it is known that due to their glass formation tendency, it is not possible to deposit fully-crystalline silicate coatings when the conventional atmospheric plasma spraying (APS) process is employed. In APS, rapid quenching of the sprayed material on the substrate facilitates the amorphous deposit formation, which shrinks when exposed to heat and forms pores and/or cracks. This paper explores the feasibility of using a high-velocity oxygen-fuel (HVOF) process for the cost-effective fabrication of dense, stoichiometric, and crystalline Yb2Si2O7 environmental barrier coatings. We report our findings on the HVOF process optimization and its resultant influence on the microstructure development and crystallinity of the Yb2Si2O7 coatings. The results reveal that partially crystalline, dense, and vertical crack-free EBCs can be produced by the HVOF technique. However, the furnace thermal cycling results revealed that the bonding of the Yb2Si2O7 layer to the Silicon bond coat needs to be improved
机译:从文献中知道,由于它们的玻璃形成趋势,当采用常规的大气等离子体喷涂(APS)方法时,不可能沉积全结晶的硅酸盐涂层。在APS中,对基材上喷涂材料的快速淬火有助于无定形沉积物的形成,当暴露于热时会收缩并形成孔和/或裂纹。本文探讨了使用高速氧气燃料(HVOF)工艺以经济高效的方式制造致密,化学计量和晶体Yb2Si2O7环保涂层的可行性。我们报告了关于HVOF工艺优化及其对Yb2Si2O7涂层的微观结构发展和结晶度的最终影响的发现。结果表明,可以通过HVOF技术生产部分结晶,致密和垂直的无裂纹EBC。但是,炉子的热循环结果表明,Yb2Si2O7层与硅粘结层之间的粘结性需要改善

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