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首页> 外文期刊>Journal of Chemistry >Dynamic Recrystallization and Recovery Behaviors in Austenite of a Novel Fe-1.93Mn-0.07Ni-1.96Cr-0.35Mo Ultrahigh Strength Steel
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Dynamic Recrystallization and Recovery Behaviors in Austenite of a Novel Fe-1.93Mn-0.07Ni-1.96Cr-0.35Mo Ultrahigh Strength Steel

机译:一种新型Fe-1.93mn-0.07Ni-1.96CR-0.35Mo超高强度钢的奥氏体动态再结晶和恢复行为

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Due to the complex composition and high proportion of alloys in traditional ultrahigh strength steel, the dilemma caused by ultrahigh strength and low toughness in casting and forging processes requiring subsequent heat treatment can be mitigated with an efficient and economical rolling process. In this work, the effect of deformation parameters on dynamic recrystallization (DRX) and dynamic recovery (DRV) is discussed through stress-strain analysis, the DRV mathematical model is obtained, and then the dynamic recrystallization activation energy, Zener–Hollomon equation, and hot working equation are obtained. The critical strain of DRX detected by the P-J method is , which indicates that dynamic recrystallization of this novel steel is relatively easy to achieve by the rolling process. These models and conclusions have potential to be generalized for the formulation of process specification and process configuration without requiring extensive material testing.
机译:由于传统的超高强度钢中的合成的复杂组合物和高比例的合金,可以减轻铸造和锻造过程中的超高强度和低韧性的困境,可以通过高效且经济的轧制工艺来减轻需要随后热处理的铸造和锻造工艺。 在这项工作中,通过应力 - 应变分析讨论了变形参数对动态再结晶(DRX)和动态恢复(DRV)的影响,获得DRV数学模型,然后是动态再结晶激活能量,齐纳 - 霍梅森方程和 获得热工作方程。 通过P-J方法检测的DRX的临界应变是通过轧制工艺相对容易地实现这种新型钢的动态再结晶。 这些模型和结论具有潜力,可以推广用于制定工艺规范和工艺配置,而无需广泛的材料测试。

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