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Development of a Pre-Oxidation Treatment to Improve the Adhesion between Thermal Barrier Coatings and NiCoCrAlY Bond Coatings

机译:开发一种预氧化处理以改善热障涂层与NiCoCrAlY粘结涂层之间的粘附力

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摘要

High-temperature coating systems, consisting of a René N5 superalloy, a Ni–23Co–23Cr–19Al–0.2Y (at.%) bond coating (BC), and a yttria (7 wt%)-stabilized zirconia (YSZ) thermal barrier coating (TBC), were thermally cycled to failure for seven different controlled pre-oxidation treatments and one commonly employed industrial pre-oxidation treatment to establish the preferred microstructures of the thermally-grown oxide (TGO) on a NiCoCrAlY bond coating after pre-oxidation. It was found that the failure of the coating system occurred along the TGO/BC interface when the TGO attained a critical thickness, except if a NiAl2O4 spinel layer developed contiguous to the TBC/TGO interface. Then, the coating system failed at a smaller TGO thickness along the NiAl2O4/α-Al2O3 interface. The value for the TGO thickness at failure increased for a larger area fraction of Y-rich oxide pegs at the TGO/BC interface after pre-oxidation. A desired slow-growing oxide layer on the BC surface was promoted when the presence of the oxides NiAl2O4, θ-Al2O3, Y3Al5O12 at the TGO surface after pre-oxidation was avoided. The α-Al2O3 layer, which developed adjacent to the BC upon thermal cycling, grew at a low rate if the initial oxide at the onset of oxidation consisted of θ-Al2O3 instead of α-Al2O3. Based on these results a pre-oxidation treatment is proposed for which the lifetime of the entire coating system during service is enhanced.
机译:高温涂层系统,由RenéN5高温合金,Ni–23Co–23Cr–19Al–0.2Y(at。%)粘结涂层(BC)和氧化钇(7 wt%)稳定的氧化锆(YSZ)组成进行7种不同的受控预氧化处理和一种常用的工业预氧化处理,将热障涂层(TBC)热循环失败,以在预涂后在NiCoCrAlY粘结涂层上建立热生长氧化物(TGO)的优选微结构。氧化。发现当TGO达到临界厚度时,沿TGO / BC界面发生了涂层系统的失效,除非NiAl2 O4 尖晶石层与TBC / TGO界面相邻。然后,沿NiAl2 O4 /α-Al2 O3 界面的较小的TGO厚度,涂层系统失效。预氧化后,在TGO / BC界面处,较大的富Y氧化物钉销的面积分数增加时,失效TGO厚度值增加。当存在氧化物NiAl2 O4 ,θ-Al2 O3 ,Y3 Al5 <时,促进了BC表面所需的缓慢生长的氧化物层。避免了预氧化后TGO表面的/ sub> O12 。如果在氧化开始时初始氧化物由θ-Al2 O3 <组成,则在热循环时在BC附近发展的α-Al2 O3 层以低速率生长。 / sub>代替α-Al2 O3 。基于这些结果,提出了预氧化处理,对于该预氧化处理,延长了整个涂层系统在使用期间的寿命。

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