Effect of Heating Rate on the Annealing Behavior of Aluminium Alloys

P. Chakravarty, J. J. Sidor
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Abstract

This contribution presents a study on the effect of heating rate maintained during annealing treatment on the final microstructure and mechanical properties of cold rolled Al1050 sheet. This study is focused on microstructure and texture evolution of Al1050 annealed at various heating rates, annealing temperatures, and holding times. It was observed that the longer exposure time for deformed microstructure affects the Vickers hardness values, grain size, and texture intensity. It seems that the crystallographic texture evolution is not affected by heating rate on quantitative level since the same set of orientations tended to evolve in all studied cases. The sample annealed at slow heating rate in a box-type furnace produced recrystallized microstructure with fine grain size, and comparatively lower texture intensity & hardness.
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加热速率对铝合金退火行为的影响
本文研究了退火过程中加热速率对冷轧Al1050薄板最终组织和力学性能的影响。研究了Al1050在不同加热速率、退火温度和保温时间下的微观组织和织构演变。观察到,变形组织暴露时间的延长会影响合金的维氏硬度值、晶粒尺寸和织构强度。在定量水平上,晶体织构的演变似乎不受升温速率的影响,因为在所有研究情况下都倾向于演化出同一组取向。在箱式炉中慢速退火后,试样产生晶粒细小的再结晶组织,织构强度和硬度相对较低。
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