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Influence of initial state on forgeability and microstructure development of magnesium alloys

机译:初始状态对镁合金的可伸直和微观结构发展的影响

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The paper is focused on magnesium alloys with different initial states-cast or extruded-for forging operations at the example of a wheel hub. The different initial microstructures have an influence on the deformation behaviour and therefore on the final mechanical properties of the components. The forming process of this component was designed with a numerical simulation tool (temperature of the billet, temperature of the die, velocity of the press ram), which need the sensitive material specific parameters for the description of the temperature depending deformation and recrystallization behaviour. All this parameters are necessary for a correct simulation of the whole process. The required parameters (flow stress, dynamic recrystallization kinetic) were determined in a deformation simulator. The models were developed considering preferentially the chemical composition of the AZ system. The content of aluminium is combined with the activation energy for the hot deformation process in the Zener-Hollomon parameter. After the experimental and numerical simulation the wheel hubs were forged on a 10 MN universal oil-hydraulic press at the Institute of Metal Forming for the validation of the laboratory results.
机译:本文的重点是对镁合金具有不同的初始状态浇铸或挤出 - 用于在轮毂的实施例的模锻操作。不同的初始微结构具有上的变形行为,因此对元件的最终机械性能的影响。此组件的形成过程的设计采用了数值模拟工具(钢坯的温度,模具的温度,压力机压头的速度),这就需要敏感材料的具体参数的温度,这取决于变形和再结晶行为的描述。所有这些参数所必需的整个过程的正确模拟。所需的参数(屈服应力,动态再结晶动力学)在变形模拟器进行了测定。该模型被开发优先考虑的AZ系统的化学成分。铝的含量与在Z参数的热变形工艺的活化能组合。实验和数值模拟后的轮毂是伪造上在金属研究所10 MN通用油压冲压成形为实验室结果的验证。

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