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首页> 外文期刊>Diffusion and Defect Data. Solid State Data, Part B. Solid State Phenomena >Microstructure and isothermal oxidation resistance of Thermal Barrier Coatings deposited by LPPS, CVD and PS-PVD methods on Inconel 617 nickel superalloy
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Microstructure and isothermal oxidation resistance of Thermal Barrier Coatings deposited by LPPS, CVD and PS-PVD methods on Inconel 617 nickel superalloy

机译:LPPS,CVD和PS-PVD方法在Inconel 617镍超合金上沉积的热障涂层的组织和抗等温氧化性能

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The paper presents results of research into thermal barrier coatings characterized by high oxidation resistance which afe presently used in the aerospace industry. Bond coat were formed by overaluminizing of the MCrAlY coating, deposited by low pressure plasma spraying (LPPS). The top coat of yttria-stabilized zirconia was deposited by plasma spray physical vapour deposition (PS-PVD). For comparison purposes additionally formed were MCrAlY bond coat, which were not subsequently aluminized. The investigation showed that during CVD overaluminizing there was formed an additional layer built of the β-NiAl phase, which protects substrate from oxidation. High chromium content in the substrate provides hot corrosion resistance. The top coat was characterized by columnar structure, similar to that obtained in the EB-PVD process. The isothermal oxidation tests showed that thickness of the TGO layer into overaluminized bond coat was significantly thicker in comparison with conventional LPPS-sprayed MCrAlY bond coat.
机译:本文介绍了目前在航空航天工业中使用的具有高抗氧化性的隔热涂层的研究成果。通过过度铝化MCrAlY涂层形成粘合涂层,该涂层通过低压等离子体喷涂(LPPS)沉积。通过等离子喷涂物理气相沉积(PS-PVD)沉积氧化钇稳定的氧化锆的外涂层。为了进行比较,还形成了MCrAlY粘结涂层,该涂层随后未镀铝。研究表明,在CVD过铝化过程中,形成了由β-NiAl相构成的附加层,该附加层可保护基材免受氧化。基材中铬含量高,可提供抗热腐蚀性能。面涂层的特征是柱状结构,类似于在EB-PVD工艺中获得的结构。等温氧化测试表明,与传统的LPPS喷涂MCrAlY粘合涂层相比,过铝化粘合涂层中TGO层的厚度明显更厚。

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