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Orientation factor analysis of deformation mechanisms under special processing techniques in AZ31 magnesium alloys

Ping YANG

金属学报(英文版)

Experiments show that special processing techniques such as asymmetrical rolling (ASR), equal channel angular pressing (ECAP) and equal channel angular rolling (ECAR) can weaken the basal texture of the magnesium alloys and therefore improve their plasticity. However, the deformation mechanisms related are different. In this paper, we determine the deformation mechanisms activated during ASR, ECAP and ECAR by calculation of orientation factors. Analysis shows that during ASR the shear stress σ13 on the rolling plane of the samples obviously weakens the basal slip and tension twinning that all produce basal texture and improve plasticity due to the promotion of tilt basal texture. During ECAP the shear stress  σs on the intersecting plane of two channels promotes tension twinning in the basal
oriented grains, whereas under ECAR the shear stress σ13   induced by roller friction on the rolling plane produces the shear stress  σs on the intersection plane of the two channels that also promotes tension twinning. Although the shear strain is lower in ECAR than in ECAP, the channel clearance in ECAR facilitates tension twinning.

关键词: Magnesium , asymmetrical rolling , equal channel angular pressing , equal channel angular rolling , deformation

异步轧制搓轧区几何参数

汤德林 , 刘相华

钢铁 doi:10.13228/j.boyuan.issn0449-749x.20140511

为研究异步轧制搓轧区的几何参数,根据力平衡方程和秒流量相等的原则,建立了无张力条件下不同变形区组态的中性角和搓轧区比例计算模型,并按中性角取值对不同变形区组态进行划分。在三区组态的条件下,分析讨论了异速比、摩擦因数、轧件厚度和压下率对搓轧区比例的影响。搓轧区比例是决定异步轧制在降低轧制力、最小可轧厚度和得到细化组织工艺条件的重要参数,搓轧区比例计算模型的建立,为异步轧制工艺参数的设定提供了理论依据。中性角和搓轧区比例计算式经过试验验证,与实际值吻合。

关键词: 异步轧制 , 变形区组态 , 中性角 , 搓轧区比例

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