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A model of grain refinement and strengthening of Al alloys due to cold severe plastic deformation

机译:冷严重塑性变形导致铝合金晶粒细化和强化的模型

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This paper presents a model which quantitatively predicts grain refinement and strength/hardness of Al alloys after very high levels of cold deformation through processes including cold rolling, equal channel angular pressing (ECAP), multiple forging (MF), accumulative roll bonding (ARB) and embossing. The model deals with materials in which plastic deformation is exclusively due to dislocation movement within grains, which is in good approximation the case for many metallic alloys at low temperature, for instance aluminium alloys. In the early stages of deformation, the generated dislocations are stored in grains and contribute to overall strength. With increase in strain, excess dislocations form and/or move to new cell walls/grain boundaries and grains are refined. We examine this model using both our own data as well as the data in the literature. It is shown that grain size and strength/hardness are predicted to a good accuracy.
机译:本文提出了一个模型,该模型通过冷轧,等通道角挤压(ECAP),多次锻造(MF),累积轧制(ARB)等工艺,在非常高水平的冷变形后定量预测铝合金的晶粒细化和强度/硬度和压花。该模型处理的材料中,塑性变形完全是由于晶粒内的位错运动引起的,这与许多低温金属合金(例如铝合金)的情况非常相似。在变形的早期,产生的位错存储在晶粒中,并有助于整体强度。随着应变的增加,过量的位错形成和/或移动到新的细胞壁/晶粒边界,并且晶粒被细化。我们使用我们自己的数据以及文献中的数据来检查此模型。结果表明,可以预测晶粒尺寸和强度/硬度的准确性很高。

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