奥斯特瓦尔德成熟
材料科学
四方晶系
成熟
高温合金
相(物质)
弹性能
合金
各向异性
活化能
热力学
动力学
降水
扩散
表面能
指数
凝聚态物理
结晶学
化学物理
冶金
化学
物理化学
纳米技术
物理
复合材料
经典力学
气象学
哲学
有机化学
量子力学
语言学
食品科学
作者
Felix Schleifer,Yueh-Yu Lin,Uwe Glatzel,Michael Fleck
标识
DOI:10.1007/s11661-022-06877-x
摘要
Abstract Coherent tetragonal precipitates, such as the Ni 3 Nb phase γ ″ found in Ni-base superalloys, appear as plate-shaped particles. These shapes are the result of anisotropic elastic misfit strains. We present 3D sharp phase-field simulations that capture this circumstance well due to the inclusion of the elastic effects from the misfit. These simulations reveal that the ripening behavior of γ ″ precipitates deviates significantly from the classical LSW theory of Ostwald ripening. A ripening exponent of 2 rather than 3 describes the simulated γ ″ size evolution at temperatures between 700 °C and 760 °C best. Employing a quantitative distinction argument, we show that 60 pct of this deviation is attributed to the elastically induced size dependence of the precipitate shapes. With increasing precipitate size, the minimization of elastic energy leads to steadily increasing plate aspect ratios. The precipitate ripening kinetics accelerate with increasing aspect ratio. Fitting the newly received square root time dependence to experimental data yields a physically conclusive activation energy of ripening close to the activation energy of Nb diffusion in the alloy.
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