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Dynamic growth of ultra-fine austenite grains deformed above Adatemperature in a Nb-V-Ti steel

机译:在Nb-V-Ti钢中的高于浸润性超细奥氏体晶粒的动态生长

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Generally, three typical behaviors are recognized in hot-deformation of austenite. However, considering that those austenite grains involved in single-pass deformation are mostly on the scale of dozens of micrometers or even much larger than that, it is meaningful to investigate hot-deformation behaviors of austenite grains smaller than 10μm. In the current paper, austenite grains of different sizes were prepared through repetitive treatment of rapid reheating and quenching with changing the holding temperature and/or holding time. Kinds of true stress-true strain curves at 900°C and 950°C indicate that austenitic deformation can be gradually coordinated by grain boundary behaviors, such as grain boundary sliding and/or diffusion. Simultaneously, the macroscopic deformation is more likely to be dominated through co-operation grain boundary sliding (CGBS).
机译:通常,在奥氏体的热变形中识别出三种典型行为。然而,考虑到从单通变形中涉及的那些奥氏体谷物主要在数十个微米或甚至大于那个中的等级上,研究小于10μm的奥氏体晶粒的热变形行为是有意义的。在本发明的纸张中,通过重复处理快速再加热和淬火,改变保持温度和/或保持时间来制备不同尺寸的奥氏体晶粒。 900°C和950℃的类型真正应力 - 真菌曲线表明奥氏体变形可以通过晶界行为逐渐协调,例如晶界滑动和/或扩散。同时,宏观变形更可能通过合作晶界滑动(CGB)来支配。

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