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長期時效條件下Ta/(Ta+Ti)變化對鎳基高溫合金鑄態(tài)組織與性能的影響
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大連理工大學材料科學與工程學院

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國家重點研發(fā)計劃項目(No.2019YFA0705302)


Effect of Ta/(Ta+Ti) Variation on the As-cast Microstructure and Properties of Nickel-based Alloy During Long-term Aging
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School of Materials Science and Engineering,Dalian University of Technology

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    摘要:

    在DD98M鎳基高溫合金的基礎上,保持合金中γ"相形成元素(Ta+Ti)總量不變,利用真空感應熔煉制備A1- Ta/(Ta+Ti)=0、A2- Ta/(Ta+Ti)=0.34、A3- Ta/(Ta+Ti)=0.66、A4- Ta/(Ta+Ti)=1四種合金,并對鑄態(tài)合金進行固溶時效和1273 k下的長期時效。采用X射線衍射(XRD)、掃描電鏡(SEM)、電子探針(EPMA)等測試方法對時效后的組織進行研究,分析高溫長期時效和Ta/(Ta+Ti)變化對合金鑄態(tài)組織和性能的影響規(guī)律。結果表明,長期時效會引起γ"相的部分分解,促進元素擴散,加劇元素偏析。隨長期時效時間的延長,γ"相粗化長大,硬度降低,錯配度絕對值減小,γ"相立方度降低。隨Ta在(Ta+Ti)中占比增加,錯配度絕對值減小,γ"相立方度降低,硬度增加,長期時效條件下Cr、Mo、W、Ta偏析加劇,Ti偏析得到緩解,Ta的加入會將W排擠至γ相。A2和A3合金長期時效后在晶界處有σ相和MC型碳化物析出,A1和A4合金長期時效晶界無析出,即Ta和Ti的協(xié)同作用會促使σ相和MC型碳化物的析出。A2合金有著相對高的γ"相體積分數(shù)、γ"相立方度、硬度和強度,最小的γ"相尺寸和最高的延伸率,因此四種合金中A2合金有著最好的綜合力學性能。

    Abstract:

    Based on DD98M nickel-based superalloy, four kinds of alloys of A1-Ta /(Ta+Ti)=0, A2-Ta /(Ta+Ti)=0.34, A3-Ta /(Ta+Ti)=0.66 and A4-Ta /(Ta+Ti)=1 were prepared by vacuum induction melting, keeping the total amount of γ" phase forming elements of (Ta+Ti) in the alloys unchanged. The as-cast alloys were subjected to solution aging and long-term aging at 1273k. X-ray diffraction (XRD), scanning electron microscopy (SEM) and electron probe (EPMA) were used to study the microstructure of the four alloys after aging. The effects of long-term aging at a high temperature and the change of Ta/(Ta+Ti) on the as-cast microstructure and properties of the alloys were analyzed. The results show that long-term aging causes partial decomposition of γ" phase, promotes element diffusion and intensifies element segregation. With the extension of long-term aging time, the γ" phase coarsens, the hardness decreases, the absolute value of misfit decreases, and the cubic degree of γ" phase decreases. With the increasing proportion of Ta in (Ta+Ti), the absolute value of misfit decreases, the cubic degree of γ" phase decreases, and the hardness increases. Under the long-term aging condition, the segregation of Cr, Mo, W and Ta is intensified, and the segregation of Ti is alleviated. The addition of Ta will squeeze W into the γ phase. After long-term aging, σ phase and MC carbide precipitated at the grain boundaries of A2 and A3 alloys, while no precipitation was observed at the grain boundaries of A1 and A4 alloys, indicating that the synergistic effect of Ta and Ti promotes the precipitation of σ phase and MC carbide. A2 alloys have relatively high γ" phase volume fraction, γ" phase cubed degree, hardness and strength, the smallest γ" phase size and the highest elongation, so A2 alloys have the best comprehensive mechanical properties of the four alloys.

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夏鵬輝,王偉強,史淑艷,鹿超,曹鐵山,閔小華.長期時效條件下Ta/(Ta+Ti)變化對鎳基高溫合金鑄態(tài)組織與性能的影響[J].稀有金屬材料與工程,2024,53(7):2025~2034.[Xia Penghui, Wang Weiqiang, Shi Shuyan, Lu Chao, Cao Tieshan, Min Xiaohua. Effect of Ta/(Ta+Ti) Variation on the As-cast Microstructure and Properties of Nickel-based Alloy During Long-term Aging[J]. Rare Metal Materials and Engineering,2024,53(7):2025~2034.]
DOI:10.12442/j. issn.1002-185X.20230346

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  • 收稿日期:2023-06-04
  • 最后修改日期:2023-09-18
  • 錄用日期:2023-10-07
  • 在線發(fā)布日期: 2024-07-22
  • 出版日期: 2024-07-12