材料科学
降水
高温合金
晶界
合金
非平衡态热力学
热力学
冶金
动能
缓慢冷却
磷
微观结构
气象学
物理
量子力学
作者
Anwen Zhang,Sha Zhang,Fang Liu,Qi Feng,Xiaoyu Yao,Yuanguo Tan,Dan Jia,Wenru Sun
标识
DOI:10.1016/j.jmst.2019.02.006
摘要
Effect of segregation behaviors of P at different cooling rates on the precipitation of γ″ and γ′ phases and the corresponding strength are investigated. The precipitation of γ″ and γ′ phases during cooling is sensitive to P concentration. With increasing the concentration of P, the amount of γ″ and γ′ particles increases after air cooling. With decreasing the cooling rate, the accelerating effect of P on the precipitation of γ″ and γ′ phases decreased first and then increased, which demonstrates the concentration of P dissolved in the grain interior decreases first and then increases. The different effects of P on γ″ and γ′ phases with different cooling rates were analyzed by the kinetic characteristic of nonequilibrium grain-boundary segregation. The characteristic of nonequilibrium grain-boundary segregation of P in superalloy is further confirmed, and the phenomenon caused by critical cooling rate is captured.
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