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首页> 外文期刊>Surface & Coatings Technology >Isothermal oxidation and thermal cyclic behaviors of YSZ and double-layered YSZ/La2Zr2O7 thermal barrier coatings (TBCs)
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Isothermal oxidation and thermal cyclic behaviors of YSZ and double-layered YSZ/La2Zr2O7 thermal barrier coatings (TBCs)

机译:YSZ和双层YSZ / LA2ZR2O7热阻挡涂层的等温氧化和热循环行为(TBCS)

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摘要

TBCs provide protection of superalloy substrates against harsh environments in gas turbine engines. Typical TBCs consist of two main coating layers called bond and top coat. Recently, zirconates have become attractive top coat materials as an alternative to yttria stabilized zirconia (YSZ) due to their superior thermal properties. Zirconates are deposited on YSZ layer to decrease the thermal conductivity and to minimize the oxygen penetration. Furthermore, their high melting point as well as phase stability and sintering properties render them promising materials for TBC applications. In this regard, YSZ and YSZ/La2Zr2O7 top coats were deposited using EB-PVD technique on HVOF-CoNiCrAlY bond coated Inconel 718 superalloy, in the present research. TBCs were exposed to isothermal oxidation tests in high temperature furnace at 1000 degrees C with different time periods and also, they were subjected to furnace cycling tests at 1150 degrees C. After oxidation and thermal cycling tests, formation of thermally grown oxide (TGO) layers at the interface and crack surfaces were investigated according to analysis results. The results show that double layered TBC system exhibits better oxidation performance in terms of TGO growth and thermal cyclic lifetime compared to single layer TBC system.
机译:热障涂层提供高温合金基底的保护,防止在燃气涡轮发动机恶劣环境。典型热障涂层包括称为键和面漆两个主要涂层。最近,锆已成为有吸引力的顶涂层材料,以替代钇稳定氧化锆(YSZ),由于其优异的热性质。锆沉积YSZ层上,以降低热导率和最小化氧的渗透。此外,它们的熔点高,以及相稳定性和烧结性能使它们有前途的材料为TBC的应用程序。在这方面,YSZ和YSZ / La2Zr2O7面漆上使用HVOF-的CoNiCrAlY键EB-PVD技术涂覆铬镍铁合金718超合金,在本研究进行了沉积。热障涂层暴露于在高温炉中的等温氧化测试在1000摄氏度与不同的时间段,并且还,对它们进行炉循环测试在1150℃下经过氧化和热循环试验中,形成热生长氧化物的(TGO)层在界面处和裂缝表面进行根据分析结果的影响。结果表明,双层TBC系统表现出在比单层TBC系统TGO生长和抗热循环寿命方面更好的氧化性能。

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