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Grain growth and static recrystallization kinetics in Co-20Cr-15W-10Ni (L-605) cobalt-base superalloy

机译:Co-20Cr-15W-10Ni(L-605)钴基高温合金的晶粒长大和静态再结晶动力学

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摘要

The grain size evolution of cold-rolled L-605 cobalt-base superalloy during ultrarapid annealing is investigated in this paper. Cold-worked specimens undergo static recrystallization, leading to grain refinement or grain coarsening depending on the annealing time and temperature. The kinetics of grain growth is found to be independent of the initial deformation. The evolution of grain size can be simply described by a grain growth model for high temperatures and long annealing times, and the mobility of interfaces is estimated by modelling. Fast annealing treatment process is a very promising technique to customize grain size and enhance mechanical strength. In particular, the reduction of annealing time is an efficient method to produce a refined microstructure through static recrystallization.
机译:研究了冷轧L-605钴基高温合金在超快退火过程中的晶粒尺寸演变。冷加工的试样会进行静态重结晶,这取决于退火时间和温度,导致晶粒细化或晶粒粗化。发现晶粒生长的动力学与初始变形无关。晶粒尺寸的变化可以用高温和长退火时间的晶粒生长模型简单地描述,而界面的迁移率可以通过建模来估算。快速退火处理工艺是定制晶粒尺寸和增强机械强度的非常有前途的技术。特别地,减少退火时间是通过静态重结晶产生精细的微结构的有效方法。

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