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자료유형
학술저널
저자정보
Kai Chen (University of Science and Technology Beijing) Jianxin Dong (University of Science and Technology Beijing) Zhihao Yao (University of Science and Technology Beijing)
저널정보
대한금속·재료학회 Metals and Materials International Metals and Materials International Vol.27 No.5
발행연도
2021.1
수록면
970 - 984 (15page)

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The creep behavior and damage mechanisms of 718 alloys were investigated at 800–900 °C in air. The fracturemorphology and microstructure evolution were observed by optical, scanning and transmission electron microscope. Besides,the creep damage tolerance (λ) and creep strain evolution curve were also calculated. The results showed that the creep curvesof 718 alloys at 800 or 850 °C consisted of primary and tertiary stages, while the steady-state region became apparent at900 °C. The apparent creep activation energy of 718 alloy was in the range from 446.3 to 491.8 kJ/mol. The alloy presentedductile fracture at 800 °C due to the nucleation, growth and linkage of creep voids. However, the failure of alloys at 850 or900 °C presented necking to a point due to the microstructure degradation. Further investigations showed the softening ofmaterials and the loss of mechanical performance could be mainly attributed to the coarsening or decrease of strengtheningprecipitates. Above 850 °C, it was found that γ′ phases would dissolve into matrix and stress promoted the re-dissolution ofγ′ phases or led to the break of δ phases. Moreover, the creep strain evolution curves indicated that 718 alloys kept a relativestable state at 800–900 °C when the strain fraction was below 1.

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