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Hot Workability Analysis and Development of a Processing Map for Homogenized 6069 Al Alloy Cast Ingot

机译:均质6069铝合金铸锭的热加工性能分析与工艺图的开发。

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The hot workability of homogenized 6069 Al alloy cast ingot was examined via hot compression tests. These tests were conducted using Gleeble-3500 thermal simulation machine within a temperature range of 300-550 degrees C and a strain rate range of 0.001-10 s(-1). The compression data were then used to construct a processing map, through which a safe processing region was identified. The safe processing region could be divided into dynamic recovery and dynamic recrystallization domains. The variation in microstructure was related to the variation in efficiency of power dissipation, as indicated by microstructure observations. Dynamic recovery was observed in regions associated with the intermediate efficiency of power dissipation, whereas partial dynamic recrystallization occurred in regions with high efficiency. Flow instability was found to be related to flow localization. The strain rate sensitivity m map showed that flow localization occurred because of the deformation conditions with low m values. The kinetic analysis revealed a decrease in apparent activation energy with increased temperature in the partial dynamic recrystallization region.
机译:通过热压缩试验检查了均质的6069铝合金铸锭的热加工性能。这些测试是使用Gleeble-3500热模拟机在300-550摄氏度的温度范围和0.001-10 s(-1)的应变速率范围内进行的。然后将压缩数据用于构建加工图,通过该加工图确定安全的加工区域。安全加工区可分为动态恢复区和动态重结晶区。如微观结构观察所示,微观结构的变化与功耗效率的变化有关。在与功率消耗的中间效率相关的区域中观察到动态恢复,而在高效区域中发生部分动态重结晶。发现流动不稳定性与流动局部化有关。应变率敏感性m图显示,由于m值较低的变形条件而发生了流动局部化。动力学分析表明,部分动态重结晶区的表观活化能随温度升高而降低。

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