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Effect of Hot Isostatic Pressing and Heat Treatment on Microstructure and Properties of K4169 Superalloy
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1.Powder Metallurgy Research Institute, Central South University, Changsha 410083, China;2.AECC South Industry Company Limited, Zhu'zhou 412002, China

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TG146.1+5;TG132.3+3

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    Abstract:

    The microstructure and properties of K4169 alloy after hot isostatic pressing (HIP), HIP+homogenization+solution aging (N1) and homogenization+HIP+solution aging (N2) were investigated. Results show that after HIP, the Laves phase is transformed into carbides, and the dendritic segregation and pore defects are eliminated. The γ″ strengthening phase sizes of N1 and N2 samples are 70.71 and 106.76 nm, respectively. The N2 sample precipitates a large amount of δ phase due to the enrichment of element Nb at the grain boundary after HIP. The HIP process improves the tensile properties of K4169 alloy at room temperature and 700 ℃. The rupture life of N1 and N2 samples at 650 ℃/620 MPa is 205.88 and 36.87 h, respectively. In the tensile test, the carbide is broken into micropores due to stress concentration, and the cracks are initiated and propagated from the micropores. In the creep rupture test, the crack is propagated along the grain boundary, and the precipitated δ phase is separated from the matrix under the action of stress to produce micropores, thus weakening the grain boundary and reducing the creep rupture property of the alloy.

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[Yang Jingyu, Su Jie, Tan Liming, Liu Feng, Li Qianyi, Yu Shiya, Hao Xin, Zhang Longfei, Ma Xin, Yi Chushan, Liu Yong, Huang Lan. Effect of Hot Isostatic Pressing and Heat Treatment on Microstructure and Properties of K4169 Superalloy[J]. Rare Metal Materials and Engineering,2025,54(5):1299~1306.]
DOI:10.12442/j. issn.1002-185X.20240022

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History
  • Received:January 13,2024
  • Revised:April 01,2024
  • Adopted:April 16,2024
  • Online: May 23,2025
  • Published: May 22,2025