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Hot corrosion behavior of Pt-modified Ni- and Co-based alloys and coatings

机译:铂改性的镍和钴基合金和涂层的热腐蚀行为

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摘要

High temperature degradation by hot corrosion (650-1000°C) and/or oxidation (\u3e1000°C) can severely reduce the longevity of advanced gas turbine engine components. The protection of high-temperature components against hot corrosion or oxidation is typically conferred by the application of either a diffusion or overlay metallic coating that is able to form a continuous, adherent, and slow-growing oxide scale. There are currently no coatings that provide adequate protection to both hot corrosion and oxidation. Indeed, there is a particular need for such protective coatings because many advanced aero, marine, and industrial gas-turbines operate in both hot corrosion and oxidation regimes in their duty cycle. Recent work at Iowa State University (ISU) has showed that a wide range Pt+Hf-modified gamma\u27-Ni3Al + gamma-Ni alloy compositions form a very adherent and slow-growing Al 2O3 scale. In fact, the results reported suggest that Pt+Hf-modified gamma\u27 + gamma coatings offer a viable superior alternative to beta-NiAl(Pt)-based coatings. The main thrust of this study was to assess and establish optimum target gamma\u27 + gamma coating compositions for extending the service life of high-temperature gas turbine components exposed to hot corrosion and oxidation conditions. Both high temperature hot-corrosion (HTHC-900°C) and low temperature hot-corrosion (LTHC-705°C) behaviors of the Pt+Hf-modified gamma\u27 + gamma alloys were assessed. The salt used to bring about hot corrosion was Na 2SO4. Quite interestingly, it was found that the HTHC resistance of gamma\u27 + gamma alloys improved with up to about 10 at.% Pt addition, but then decreased significantly with increasing Pt content up to 30 at.% (the maximum level studied); however, under LTHC conditions the resistance of gamma\u27 + gamma alloys improved with increasing Pt content up to 30 at.%. To further improve hot corrosion resistance of Pt+Hf-modified gamma\u27 + gamma alloys, the effects of systematic additions of Cr, Si, and Cr+Si were assessed. The effects pre-oxidation treatments were also studied to further improve the hot corrosion resistance. In addition, high-temperature oxidation behavior of various modified of gamma\u27 + gamma alloys was studied in air at 1150°C under both isothermal and cyclic oxidation conditions. Certain modified versions of gamma\u27 + gamma coating composition(s) exhibited excellent resistance to both hot corrosion and oxidation. Finally, the HTHC and LTHC resistance of novel Pt+Hf-modified gamma\u27 + gamma-based diffusion coatings using a pack cementation process developed at ISU were studied and compared with state-of-the-art commercial coatings. It was found that the Pt+Hf-modified gamma\u27 + gamma coating exhibited superior resistance to both types of hot corrosion with the preoxidation treatment; while, only Pt-modified beta exhibited excellent LTHC resistance with no pre-oxidation treatment. This study also involved evaluating the hot corrosion resistance of various commercially available Pt-modified beta-NiAl diffusion aluminides and CoCrAlY-based overlay coatings for marine gas turbine engine components under both HTHC and LTHC conditions. The Al-Pt-rich beta aluminide exhibited improved resistance to both types of hot corrosion compared to the various Ni-rich beta aluminide and CoCrAlY coatings.
机译:由于热腐蚀(650-1000°C)和/或氧化(\ u3e1000°C)而导致的高温降解会严重降低先进燃气涡轮发动机组件的使用寿命。通常通过施加能够形成连续的,粘附的和缓慢生长的氧化皮的扩散或覆盖金属涂层来赋予高温组分抵抗热腐蚀或氧化的保护。当前,没有任何一种涂层可以提供对热腐蚀和氧化的足够保护。实际上,由于许多先进的航空,船舶和工业燃气轮机在其工作循环中都在热腐蚀和氧化两种状态下运行,因此特别需要这种保护涂层。爱荷华州立大学(ISU)的最新工作表明,广泛的Pt + Hf改性的γ\ u27-Ni3Al +γ-Ni合金成分形成了非常粘附且生长缓慢的Al 2O3鳞片。实际上,报道的结果表明,Pt + Hf改性的γ\ u27 +γ涂层提供了基于β-NiAl(Pt)的涂层的可行替代方案。这项研究的主要目的是评估和确定最佳的目标伽玛强度+伽玛涂层成分,以延长暴露于热腐蚀和氧化条件下的高温燃气轮机组件的使用寿命。评估了Pt + Hf改性的γ\ u27 +γ合金的高温热腐蚀(HTHC-900°C)和低温热腐蚀(LTHC-705°C)行为。用于引起热腐蚀的盐是Na 2 SO 4。有趣的是,发现γ\ u27 +γ合金的HTHC耐性在添加约10 at。%的Pt时有所改善,但随后随着Pt含量增加至30 at。%(研究的最大水平)而显着下降;但是,在LTHC条件下,随着Pt含量增加到30 at。%,γ\ u27 +γ合金的电阻得到改善。为了进一步提高Pt + Hf改性的γ\ u27 +γ合金的抗热腐蚀性能,评估了系统添加Cr,Si和Cr + Si的效果。还研究了预氧化处理的效果,以进一步提高耐热腐蚀性。此外,还研究了各种改性的γ\ u27 +γ合金的高温氧化行为,它们在等温和循环氧化条件下于1150°C的空气中进行研究。 γ/ u27 +γ涂料组合物的某些改性形式对热腐蚀和氧化均显示出极好的耐受性。最后,研究了在ISU开发的新型Pt + Hf改性gamma \ u27 + gamma扩散涂层的HTHC和LTHC耐受性,并将其与最新的工业涂料进行了比较。结果发现,经预氧化处理后,Pt + Hf改性的γ\ u27 +γ涂层对两种类型的热腐蚀均表现出优异的抗性。同时,只有Pt修饰的beta表现出优异的LTHC抗性,并且不进行预氧化处理。这项研究还涉及在HTHC和LTHC条件下,评估各种可商购的Pt改性的β-NiAl扩散铝化物和基于CoCrAlY的船用燃气轮机发动机组件的表面涂层的耐热腐蚀性。与各种富含镍的β铝化物和CoCrAlY涂层相比,富含Al-Pt的β铝化物对两种类型的热腐蚀均表现出更高的抵抗力。

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    Deodeshmukh, Vinay Prakash;

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  • 年度 2007
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  • 原文格式 PDF
  • 正文语种 en
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