Aging Behaviour of Al-Mg-Si Alloys Subjected to Severe Plastic Deformation by ECAP and Cold Asymmetric Rolling

S. Faré, N. Lecis, M. Vedani
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引用次数: 39

Abstract

A study was carried out on aging behaviour of a 6082 alloy processed by two different severe plastic deformation techniques: ECAP and asymmetric rolling. Both techniques were able to generate an ultrafine-grained structure in samples processed at room temperature. It was stated that severe straining promotes marked changes in the postdeformation aging kinetics. The peaks of β′′/β′ transition phases were anticipated and of progressively reduced intensity over the coarse grained alloy. A further peak accounting for onset of recrystallization also appeared in the most severely deformed samples. Full consistency in peak shape and position was found when comparing materials processed by ECAP and asymmetric rolling. Isothermal aging treatments performed at 180°C revealed that in the severely deformed samples, aging became so fast that the hardness curves continuously decreased due to overwhelming effects of structure restoration. On the contrary, aging at 130°C offers good opportunities for fully exploiting the precipitate hardening effects in the ultrafine-grained alloy.
Al-Mg-Si合金剧烈塑性变形的ECAP和冷非对称轧制时效行为
对6082合金在ECAP和非对称轧制两种不同塑性变形工艺下的时效行为进行了研究。这两种技术都能够在室温下处理的样品中产生超细晶粒结构。结果表明,严重的应变促进了变形后时效动力学的显著变化。在粗晶合金中,β′/β′转变相峰的强度逐渐降低。在最严重变形的样品中也出现了再结晶的进一步峰值。将ECAP加工的材料与非对称轧制加工的材料进行比较,发现峰形和峰位完全一致。180°C等温时效处理表明,在严重变形的试样中,由于组织恢复的压倒性影响,时效变得非常快,硬度曲线不断下降。反之,130℃时效为充分发挥超细晶合金的析出相硬化效应提供了良好的机会。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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