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Bonding Strength of Top Coat and Its Fracture Mechanism in Thermal Barrier Coatings with Thermal Fatigue

机译:热障涂层热障涂层底层粘接强度及其断裂机制

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The bonding strength of top coat in thermal barrier coatings (TBCs) with different bond layers has been measured with thermal fatigue and its fracture behavior has been investigated considering the effects of a thermally grown oxide (TGO) layer and resintering of the top coat. Two kinds of TBCs with different thicknesses of approximately 80 and 280 urn in bond layer were prepared by two different methods of air plasma spray (APS) and high velocity oxygen flow (HVOF). Top layer (3Y-TZP) was coated on both bond layers using the APS process. Thermal fatigue tests were conducted at temperature of 1100°C with dwell time of 10 hr, which tests were done till 20 cycles. The HVOF process provides a relatively homogeneous microstructure in the bond layer, compared with the APS process. The formation of TGO layer is influenced by the exposed time, independent of the bond layer thickness and the bond layer species. TBCs with the bond layer prepared by the APS process show higher bonding strength than those by the HVOF process in as-prepared TBCs (before thermal fatigue), showing 15-18 MPa for the APS process and 13-16 MPa for the HVOF process. Whereas the fracture in TBCs with the HVOF bond coat are originated at the interface between the top coat and the bond coat, the fracture within the top coat in TBCs with the APS bond coat However, after the thermal fatigue, the bonding strength value is increased to 18 - 20 MPa in both cases even though the TGO layer is formed, showing the fracture paths within the top coat in both cases.
机译:通过热疲劳测量具有不同粘合层的热阻挡涂层(TBC)中的顶部涂层的粘合强度,并且考虑了热生长氧化物(TGO)层和顶层重振的影响,研究了其骨折行为。通过两种不同的空气等离子体喷雾(APS)和高速氧气流(HVOF)制备两种具有不同厚度约80和280URN的TBC。使用APS工艺涂覆顶层(3Y-TZP)在两个粘合层上。热疲劳试验在1100℃的温度下进行,停留时间为10小时,该试验完成为20个循环。与APS工艺相比,HVOF工艺在粘合层中提供相对均匀的微观结构。 TGO层的形成受暴露时间的影响,与粘合层厚度和粘合层物种无关。具有通过APS方法制备的粘合层的TBC显示比制备的TBC(在热疲劳之前)中的HVOF方法更高的粘合强度,显示出15-18MPa用于APS工艺和用于HVOF法的13-16MPa。虽然具有HVOF粘合涂层的TBC中的骨折起源于顶部涂层和粘合涂层之间的界面,但是在TBCS中的顶部涂层内的裂缝与APS粘合涂层在热疲劳之后,粘接强度值增加即使形成TGO层,两种情况下两种情况下的18-20MPa也显示出两种情况下的顶部涂层内的断裂路径。

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