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Influences of the Interface Roughness and the Bond Coat Spray Method on the Adhesion Strength in an Air Plasma Sprayed Thermal Barrier Coatings

机译:界面粗糙度和粘结涂层喷涂方法对空气等离子喷涂热障涂层粘合强度的影响

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摘要

In this work, in order to study the effect of the interface roughness between the bond coating and the top coating, two kinds of the CoNiCrA1Y powder with the different particle size were used for spraying the bond coating material. In addition, the bond coat was sprayed by either the low-pressure plasma spray (LPPS) method or the high Velocity oxy-fuel (HVOF) one. The adhesion strength of the TBC top coat was evaluated as a function of the isothermal exposure time by means of the modified 4-point bending test. In addition, in-situ observations of the initiation and propagation of delamination cracks were carried out. The experimental results indicated that the delamination cracks initiated and propagated at the intersplat boundaries in the top-coating for the as-sprayed TBC specimens. After isothermal exposure at 1000℃, the microcracks were generated in the top-coating and the thermal grown oxides (TGO) grew at the top-coating/bond-coating interface. The delamination of the thermal exposed specimen occurred by the mixed fracture mode of the microcracks and top-coating/TGO or TGO/bond-coating interfaces. There was little difference of the adhesion strength by the bond-coating process in the as-sprayed conditions. On the other hand, the LPPSed bond coat specimen which has the rough interface exhibited lower adhesion strength compared with other specimens after thermal exposure due to the remarkable growth of the mixed oxide type of the TGO.
机译:在这项工作中,为了研究粘结涂层和面涂层之间的界面粗糙度的影响,使用了两种粒径不同的CoNiCrA1Y粉末喷涂粘结涂层材料。另外,通过低压等离子喷涂(LPPS)方法或高速氧-燃料(HVOF)喷涂粘合剂涂层。通过改进的四点弯曲试验,将TBC面漆的粘合强度作为等温暴露时间的函数进行评估。此外,还进行了分层裂纹萌生和扩展的现场观察。实验结果表明,喷涂后的TBC试样的分层裂纹在顶涂层的板间边界处开始并扩展。在1000℃下等温暴露后,在表面涂层中产生了微裂纹,并且在表面涂层/粘结涂层的界面处生长了热生长氧化物(TGO)。热裂纹样品的分层是由微裂纹和面漆/ TGO或TGO /粘结涂层界面的混合断裂模式引起的。在喷涂条件下,通过粘合剂涂布工艺的粘合强度几乎没有差异。另一方面,由于TGO的混合氧化物类型的显着增长,具有粗糙界面的LPPS粘合涂层样品在热暴露后比其他样品表现出较低的粘合强度。

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