Effects of high Ru and high Cr on the microstructural stability of Ni-base superalloys
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摘要: 在多組元的鎳基高溫合金中分別和同時加入高Cr和高Ru,經固溶處理后,在800~1100℃下進行10~1300h時效處理,觀察組織并分析Ru、Cr以及二者交互作用對合金組織穩定性的影響.結果表明:在無Cr和Ru的合金中,經過1000℃/1300h時效處理后無TCP相析出;加入高Cr的合金僅20h就在晶界發現了TCP相,50h后在枝晶干出現TCP相;在1000℃時效,TCP相比其他溫度更易析出.在同時加Cr和Ru的合金中,經過1000℃/1000h時效后并未發現TCP相的析出.這說明高含量的Cr促進了TCP相的形成,而高Ru的添加在高Cr合金中也能有效地抑制TCP相的析出,提高組織穩定性.Abstract: Four experimental multi-component Ni-base superalloys were designed to investigate the influence of high Ru and high Cr on the microstructural stability at high temperature. These alloys were solution-treated and then aged at 800-1 100℃ for 10-1 300 h. The experimental results showed that no TCP phases were found in the Ru-free or Cr-free alloy after aging at 1 000℃ for 1 300 h. For the alloy with high level of Cr addition, TCP phases were observed to precipitate along grain boundaries and in dendrite cores after 20 h and 50 h at 1000℃, respectively; after aging at 1000℃ for 1000 h, no TCP phases were observed in the alloy with high levels of Cr and Ru additions. It is indicated that the high level of Cr addition promotes the precipitation of TCP phases, while high level of Ru addition efficiently lowers the propensity for the formation of TCP phases in the high Cr-containing alloy, and thus improve the microstructural stability.
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Key words:
- Ni-base superalloys /
- ruthenium /
- chromium /
- microstructural stability
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