首页> 外文期刊>Journal of Thermal Spray Technology >Isothermal Oxidation Behavior of VC and Columnar Structured Thermal Barrier Coatings Deposited by Suspension Plasma Spray Technology
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Isothermal Oxidation Behavior of VC and Columnar Structured Thermal Barrier Coatings Deposited by Suspension Plasma Spray Technology

机译:悬浮等离子喷涂技术沉积的VC和柱状结构热障涂层的等温氧化行为

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摘要

The effects of different thermal barrier coating (TBC) top coat structures and substrate alloys on the isothermal oxidation behaviors of TBC systems were investigated at 1080 A degrees C in lab air. The tested TBC systems consisted of two nickel-based superalloy substrates (CMSX-4 and IN738LC), a platinum aluminide bond coat and two 8YSZ top coats (vertical cracked and columnar structured). Samples with IN738LC substrate demonstrated longer isothermal oxidation lives than the counterparts with CMSX-4 substrate. Outward refractory elemental diffusion in coating systems with CMSX-4 substrate and void formation at the interface between thermally grown oxide and bond coat was found to be responsible for the early failure of TBCs. Columnar structured YSZ top coat seemed to provide better protection of the bond coating and substrate, marginally delaying the failure of the both coating systems with IN738LC and CMSX-4.
机译:在1080 A的实验室空气中研究了不同的热障涂层(TBC)面漆结构和基材合金对TBC系统的等温氧化行为的影响。经过测试的TBC系统由两个镍基高温合金基底(CMSX-4和IN738LC),一个铝化铂粘结涂层和两个8YSZ面涂层(垂直裂纹和柱状结构)组成。具有IN738LC底物的样品比具有CMSX-4底物的样品具有更长的等温氧化寿命。发现在具有CMSX-4基材的涂料体系中向外难熔元素扩散以及在热生长的氧化物和粘结涂层之间的界面处形成空隙是造成TBC早期失效的原因。柱状结构的YSZ面漆似乎为粘合涂层和基材提供了更好的保护,从而在一定程度上延迟了采用IN738LC和CMSX-4的两种涂层体系的失效。

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