Microstructure stability of GH4169 and GH4169C alloys with high content of phosphorus and niobium
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摘要: 為研究高鈮高磷GH4169C高溫合金在高溫長期時效過程中的組織穩定性,通過場發射掃描電鏡和數顯布氏硬度計對GH4169和GH4169C兩合金分別經600、650、704及720℃時效30~10000 h的顯微組織和硬度變化進行對比分析。結果表明:在服役溫度(650℃)范圍內長期時效,GH4169合金和GH4169C合金均表現優異的穩定性;在服役溫度以上長期時效,GH4169合金和GH4169C合金穩定性較差,短時間內,合金組織就出現失穩。對比而言,704℃時GH4169C合金組織穩定性較GH4169合金高,而720℃時GH4169C合金組織穩定性劣于GH4169合金。分析認為,GH4169C合金由于提高Nb含量和P含量使的γ'相穩定性增加,得以在服役溫度以上(704℃)表現比GH4169合金更為優異的組織穩定性,但Nb含量的提高也引起啄相含量的增加,導致組織穩定性下降。在超高溫(720℃)下,GH4169C合金穩定性劣于GH4169合金。由此推知,相比GH4169合金,改型GH4169C合金在使用溫度上有所提高,但提高有限,在超高溫下,其穩定性反而降低。Abstract: To study the microstructural stability of GH4169C alloy with high content of phosphorus and niobium, the microstruc-ture and hardness of GH4169C alloy and GH4169 alloy after long time aging were comparatively analyzed in this paper. These two su-peralloys were subjected to aging treatment at 600, 650, 704 and 720℃ for different times from 30 h to 10000 h. The microstructural evolution of the alloys was characterized by using a field emission scanning electron microscope and a Brinell hardness tester. The re-sults indicate that, at the service temperature of 650℃, GH4169 alloy and GH4169C alloy show excellent structure stability. Howev-er, above the service temperature, GH4169 alloy and GH4169C alloy have poor structure stability. In a short period of time, the two alloys lose stability. In contrast, the microstructure stability of GH4169C alloy is higher than that of GH4169 alloy with aging at 704℃, while GH4169C alloy shows a lower stability compared with GH4169 alloy at 720℃. It is thought that the stability of γ'phase in GH4169C alloy increases with increasing Nb and P contents. GH4169C alloy shows a better microstructure stability than GH4169 alloy at 704℃. However, the content of δphase will also increase with increasing Nb content, leading to the decrease in microstructure sta-bility of GH4169C alloy. At ultrahigh temperature (720℃), the microstructure stability of GH4169C alloy is inferior to GH4169 al-loy. This means that, compared with GH4169 alloy, the modified GH4169C alloy can be used in a higher temperature, whereas the temperature increase is limited, the microstructure stability of GH4169C alloy will decrease at ultrahigh temperature.
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Key words:
- nickel base superalloys /
- niobium /
- phosphorus /
- aging /
- microstructure
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