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Multilayered ruthenium-modified bond coats for thermal barrier coatings

机译:用于热障涂层的多层钌改性粘合涂层

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摘要

Diffusional approaches for fabrication of multilayered Ru-modified bond coats (BCs) for thermal barrier coatings (TBCs) have been developed vialow-activity (LA) chemical vapor deposition andhigh-activity (HA) pack aluminization. Both processes yield BCs comprising two distinct B2 layers, based on NiAl and RuAl; however, the position of these layers relative to the BC surface is reversed when switching processes. The structural evolution of each coating at various stages of the fabrication process and subsequent cyclic oxidation is presented, and the relevant interdiffusion and phase equilibria issues are discussed. Evaluation of the oxidation behavior of these Ru-modified BC structures reveals that each B2 interlayer arrangement leads to the formation of α-Al2O3 TGO at 1100 °C, but the durability of the TGO is somewhat different and in need of further improvement in both cases.
机译:通过低活性(LA)化学气相沉积和高活性(HA)包装渗铝,已经开发出了用于热障涂层(TBC)的多层Ru改性粘结涂层(BCs)的制造扩散方法。两种工艺均产生了基于NiAl和RuAl的BC,包括两个不同的B2层;但是,在切换过程中,这些层相对于BC表面的位置相反。介绍了每个涂层在制造过程的各个阶段的结构演变以及随后的循环氧化,并讨论了相关的相互扩散和相平衡问题。对这些Ru修饰的BC结构的氧化行为的评估表明,每个B2中间层排列都会导致在1100°C时形成α-Al2 O3 TGO,但是TGO的耐久性有所不同两种情况都需要进一步改进。

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  • 来源
    《Metallurgical and Materials Transactions A》 |2006年第11期|3347-3358|共12页
  • 作者单位

    Department of Materials Science and Engineering University of Michigan 48109 Ann Arbor MI;

    Department of Materials Science and Engineering University of Michigan 48109 Ann Arbor MI;

    Department of Materials Science and Engineering University of Michigan 48109 Ann Arbor MI;

    Cranfield University Cranfield MK 43 OAL Bedford United Kingdom;

    Cranfield University Cranfield MK 43 OAL Bedford United Kingdom;

    Howmet Research Corporation 49461 Whitehall MI;

    Materials Department University of California 93106 Santa Barbara CA;

    Materials Department University of California 93106 Santa Barbara CA;

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  • 正文语种 eng
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