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Isothermal oxidation behaviour of thermal barrier coatings with CoCrAlY bond coat irradiated by high-current pulsed electron beam

机译:大电流脉冲电子束辐照的CoCrAlY粘结涂层热障涂层的等温氧化行为

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Thermal sprayed CoCrAlY bond coat irradiated by high-current pulsed electron beam (HCPEB) and thermal barrier coatings (TBCs) prepared with the irradiated bond coat and the ceramic top coat were investigated. The high temperature oxidation resistance of these specimens was tested at 1050℃ in air. Microstructure observations revealed that the original coarse surface of the as-sprayed bond coat was significantly changed as the interconnected bulged nodules with a compact appearance after HCPEB irradiation. Abundant Y-rich alumina particulates and very fine grains were dispersed on the irradiated surface. After high temperature oxidation test, the thermally grown oxide (TGO) in the initial TBCs grew rapidly and was comprised of two distinct layers: a large percentage of mixed oxides in the outer layer and a relatively small portion of Al_2O_3 in the inner layer. Severe local internal oxidation and extensive cracks in the TGO layer were discovered as well. Comparatively, the irradiated TBCs exhibited thinner TGO layer, slower TGO growth rate, and homogeneous TGO composition (primarily consisting of Al_2O_3). The results indicate that TBCs with the irradiated bond coat have a much higher oxidation resistance.
机译:研究了用高电流脉冲电子束(HCPEB)辐照的热喷涂CoCrAlY粘合涂层以及用辐照粘合涂层和陶瓷面涂层制备的热障涂层(TBC)。这些样品的高温抗氧化性能是在1050℃的空气中测试的。微观结构观察表明,喷涂的粘结层的原始粗糙表面发生了显着变化,因为在HCPEB辐照后,相互连接的凸起结节具有紧凑的外观。大量富Y的氧化铝颗粒和非常细的颗粒分散在被辐照的表面上。经过高温氧化测试后,初始TBC中的热生长氧化物(TGO)快速增长,并由两个不同的层组成:外层中混合氧化物的百分比较高,内层中Al_2O_3的比例相对较小。还发现了严重的局部内部氧化和TGO层中的大量裂纹。相比之下,辐照的TBC表现出更薄的TGO层,更慢的TGO生长速率和均一的TGO组成(主要由Al_2O_3组成)。结果表明,具有辐照粘合层的TBC具有更高的抗氧化性。

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