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Delamination property of modeled air plasma sprayed-thermal barrier coatings under shear loading: effect of difference in chemical composition of bond coat

机译:剪切载荷下模型空气等离子体喷涂 - 热阻挡涂层的分层性能:粘合涂层化学成分的影响

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In order to understand the effect of the difference in chemical composition and microstructure of bond coat (BC) layer on delamination properties, pushout tests were performed on modeled air plasma-sprayed thermal barrier coatings (APS-TBCs). Nickel-platinum-aluminides (Ni-Pt-Al), hafnium modified nickel-platinum-aluminides (Ni-Pt-Al-Hf) and NiCoCrAlY alloys were used as BC alloy. Hafnium and aluminum oxide were formed in needle like shape when the Ni-Pt-Al-Hf alloy was used. Vickers hardness of BC alloy decreased up to 50 hours heat exposure and then increased with increasing heat exposure time. Interfacial delamination toughness increased and then decreased with the increase in heat exposure time.
机译:为了理解粘合涂层(BC)层的化学成分和微观结构对分层性质的影响,对模型的空气等离子体喷涂的热阻挡涂层(APS-TBCS)进行PUSPOUT试验。镍 - 铂 - 铝化物(Ni-PT-Al),铪改性镍 - 铂 - 铝化物(Ni-Pt-Al-Hf)和NicoCraly合金用作BC合金。当使用Ni-Pt-Al-HF合金时,在针状物中形成铪和氧化铝。 BC合金的维氏硬度降低至50小时的热暴露,然后随着热暴露时间的增加而增加。界面分层韧性增加,随后随着热暴露时间的增加而降低。

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