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Thermal Fatigue Behavior of Air-Plasma Sprayed Thermal Barrier Coating with Bond Coat Species in Cyclic Thermal Exposure

机译:结合涂层种类的气溶胶喷涂热障涂层在循环热暴露中的热疲劳行为

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摘要

The effects of the bond coat species on the delamination or fracture behavior in thermal barrier coatings (TBCs) was investigated using the yclic thermal fatigue and thermal-shock tests. The interface microstructures of each TBC showed a good condition without cracking or delamination after flame thermal fatigue (FTF) for 1429 cycles. The TBC with the bond coat prepared by the air-plasma spray (APS) method showed a good condition at the interface between the top and bond coats after cyclic furnace thermal fatigue (CFTF) for 1429 cycles, whereas the TBCs with the bond coats prepared by the high-velocity oxygen fuel (HVOF) and low-pressure plasma spray (LPPS) methods showed a partial cracking (and/or delamination) and a delamination after 780 cycles, respectively. The TBCs with the bond coats prepared by the APS, HVOF and LPPS methods were fully delaminated (>50%) after 159, 36, and 46 cycles, respectively, during the thermal-shock tests. The TGO thickness in the TBCs was strongly dependent on the both exposure time and temperature difference tested. The hardness values were found to be increased only after the CFTF, and the TBC with the bond coat prepared by the APS showed the highest adhesive strength before and after the FTF.
机译:使用循环热疲劳和热冲击试验研究了粘结涂层种类对热障涂层(TBC)中分层或断裂行为的影响。火焰热疲劳(FTF)1429个循环后,每个TBC的界面微观结构均表现出良好的状态,没有破裂或分层。在进行了1429次循环炉热疲劳(CFTF)之后,通过空气等离子喷涂(APS)方法制备的带有粘结涂层的TBC在顶涂层和粘结涂层之间的界面处表现出良好的状态,而制备了带有粘结涂层的TBC通过高速氧气燃料(HVOF)和低压等离子喷涂(LPPS)方法,分别显示了780次循环后的部分开裂(和/或分层)和分层。在热冲击试验中,分别通过159、36和46次循环,通过APS,HVOF和LPPS方法制备的具有粘结涂层的TBC完全分层(> 50%)。 TBC中的TGO厚度强烈取决于暴露时间和测试的温差。发现仅在CFTF之后才增加硬度值,并且具有通过APS制备的粘结涂层的TBC在FTF之前和之后显示出最高的粘合强度。

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