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Effect of homogenisation conditions on recrystallisation in the Al-Mg-Mn alloy AA5454

机译:均质条件对Al-Mg-Mn合金AA5454中再结晶的影响

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摘要

The purpose of the present work is to understand the microstructure development and, particularly, to control the progress of recrystallisation in hot strip in the Al-Mg-Mn alloy AA 5454, which is typically used for the manufacture of structural automotive components. The chemical composition, together with the thermomechanical processing history of this material, has a strong influence on the microstructure of the product and the resulting properties as it is supplied to the customer. Electrical conductivity measurements, thermal analysis and electron microscopy have been carried out to characterise the evolution of precipitation state at various stages in the processing route. The conditions of the homogenisation heat treatment have been varied, and the effect on subsequent recrystallisation after hot rolling has been evaluated in both the as cast and rough rolled condition by optical microscopy techniques. Results indicate that the conditions of homogenisation heat treatment and roughing rolling are critical for the generation of a suitable recrystallised microstructure in AA 5454 hot strip. A new two stage homogenisation practice has been developed to expedite post-rolling recrystallisation in this alloy.
机译:本工作的目的是了解微结构的发展,尤其是控制Al-Mg-Mn合金AA 5454中热轧带钢中再结晶的过程,该合金通常用于制造汽车结构件。这种化学成分以及该材料的热机械加工历史,对产品的微观结构以及最终产品的性能都产生了很大的影响。已经进行了电导率测量,热分析和电子显微镜检查,以表征加工过程中各个阶段的沉淀状态演变。均质化热处理的条件已经改变,并且通过光学显微镜技术在铸态和粗轧条件下都评估了热轧后对随后再结晶的影响。结果表明,均质化热处理和粗轧的条件对于在AA 5454热轧带钢中生成合适的再结晶组织至关重要。已经开发出一种新的两阶段均质方法,以加快该合金的轧制后重结晶。

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