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Recrystallization of L-605 Cobalt Superalloy during Hot-Working Process

机译:L-605钴高温合金在热加工过程中的重结晶

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The mechanical behavior of Co-20Cr-15W-10Ni alloy is studied by compression tests at high temperature. Microstructures after deformation are evaluated using SEM-EBSD. Significant grain refinement occurs by dynamic recrystallization for high temperature and low strain rate (T>1100°C, ε<0.1s~(-1)), and at high strain rate (ε-10s~(-1)). Dynamic recrystallization is discontinuous and occurs by grain boundaries nucleation, leading to a necklace structure. The nucleation mechanism is most likely to be bulging of grain boundaries. However, recrystallization occurs also by rotation of annealing twins which can bulge as well. The modeling of mechanical behavior gives a fair quantification of flow softening due to dynamic recrystallization, indicating the progress of dynamic recrystallization with deformation.
机译:通过高温压缩试验研究了Co-20Cr-15W-10Ni合金的力学行为。使用SEM-EBSD评估变形后的微结构。在高温和低应变速率(T> 1100°C,ε<0.1s〜(-1))和高应变速率(ε-10s〜(-1))下,通过动态重结晶可以显着地细化晶粒。动态再结晶是不连续的,并且通过晶界成核而发生,从而导致项链结构。成核机制最有可能是晶界凸起。但是,重结晶也会通过退火孪晶的旋转而发生,退火孪晶也会凸出。机械行为的模型给出了由于动态再结晶引起的流动软化的合理量化,表明了动态再结晶随变形的进展。

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