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Deformation behaviour and microstructure development of Twin Roll Cast AZ31 strips

机译:双辊铸造AZ31钢带的变形行为和组织发展

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摘要

The new energy efficient method of producing magnesium strips down to 1,0 mm thickness based on Twin Roll Casting (TRC) and Strip Rolling in industrial scale developed at the Institute of Metal Forming at the Til Bergakademie Freiberg in cooperation with the MgF Magnesium Flachprodukte GmbH Freiberg (Germany) is described. The design of rolling schedule was analyzed, based on the control of the recrystallization behaviour, to achieve fine grain in the strip rolling process of the magnesium alloy AZ31. The dynamic recrystallization behaviour of this alloy during hot deformation was determined with help of plane strain compression tests and microscopic examination. The influence of temperature, strain and strain rate on the activation of dynamic recrystallization process during deformation was analyzed. The deformation behaviour was also simulated with semi-empirical models including specific coefficients related to processing parameters (strain, strain rate and temperature). The results show that the grain size of this alloy refine steadily with increasing rolling passes by dynamic recrystallization. The tensile strength and ductility were improved correspondingly
机译:Til Bergakademie Freiberg的金属成形研究所与MgF Magnesium Flachprodukte GmbH合作开发了一种基于工业规模的双辊铸(TRC)和带材轧制的,生产厚度小于1.0 mm的镁带的新型节能方法。描述了弗赖贝格(德国)。在控制再结晶行为的基础上,分析了轧制方案的设计,以在镁合金AZ31的带材轧制过程中获得细晶粒。借助平面应变压缩试验和显微镜检查确定了该合金在热变形过程中的动态再结晶行为。分析了温度,应变和应变速率对变形过程中动态再结晶过程激活的影响。还使用半经验模型模拟了变形行为,该模型包括与加工参数(应变,应变速率和温度)相关的特定系数。结果表明,通过动态再结晶,该合金的晶粒尺寸随着轧制道次的增加而稳定地细化。拉伸强度和延展性相应提高

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