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首页> 外文期刊>Journal of Materials Engineering and Performance >Investigation of Dynamic and Static Recrystallization Behavior During Thermomechanical Processing in a API-X70 Microalloyed Steel
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Investigation of Dynamic and Static Recrystallization Behavior During Thermomechanical Processing in a API-X70 Microalloyed Steel

机译:API-X70微合金钢热机械加工过程中动态和静态再结晶行为的研究

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摘要

Recovery and recrystallization phenomena and effects of microalloying elements on these phenomena are of great importance in designing thermomechanical processes of microalloyed steels. Control of these phenomena can lead to manufacturing of products with suitable structures and desirable properties. The aim of this study was to investigate the microstructural evolution occurring during thermomechanical processing through hot compression testing. The niobium carbonitride approximate solution temperature was initially determined to guess the optimum reheating temperature. Then continuous and interrupted compression tests were utilized to physically model the dynamic and static recrystallization (SRX) behavior of the steel during thermomechanical processing. The parameters of the flow stress model and the activation energy of dynamic recrystallization (DRX) were calculated and the effects of deformation conditions on peak strain of DRX were evaluated. In addition, a kinetic study of the static softening of austenite indicated that the plateau occurred in recrystallization fraction-time curves below 1025 °C. This was considered in determining the Static Recrystallization Critical Temperature (SRCT) and construction of the Recrystallization Retardation-Temperature Time (RRTT) diagram for this steel.
机译:回收和再结晶现象以及微合金元素对这些现象的影响在设计微合金钢的热机械过程中非常重要。控制这些现象可以导致制造具有合适的结构和期望的性能的产品。这项研究的目的是通过热压缩试验研究热机械加工过程中发生的微观结构演变。最初确定碳氮化铌的近似溶液温度以猜测最佳的再加热温度。然后使用连续和间断的压缩测试对钢在热机械加工过程中的动态和静态再结晶(SRX)行为进行物理建模。计算了流动应力模型的参数和动态再结晶的活化能,并评估了变形条件对DRX峰值应变的影响。此外,对奥氏体静态软化的动力学研究表明,在低于1025°C的重结晶分数-时间曲线中出现了平稳期。在确定静态再结晶临界温度(SRCT)和构建该钢的再结晶延迟-温度时间(RRTT)图时考虑了这一点。

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