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Effect of Ag, In and Agin Alloying Additions on Microstmcture and Texture of Mg-3Al-1Zn Alloy during Multi-Pass Warm Rolling

机译:AG,AG,AG和Agin合金化合物在多通热轧制期间Mg-3Al-1Zn合金微观和纹理的影响

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In the present investigation the rolling response, microstructure and texture evolution of four Mg alloys during multi-pass warm rolling were evaluated. The nominal composition of the base alloy i.e. 'alloy-1', commercially called AZ31, was Mg-3Al-lZn (wt.%). The alloy-2, 3 and 4 were developed by separate additions of non-rare earth elements Ag and In, and a master alloy 85Ag-15In to make target compositions Mg-3Al-lZn-0.5x, (x = Ag, In, Agin). Samples from all four alloys were subjected to multi-pass warm rolling at 300 °C to accumulative reductions of 50, 75 and 90% with 8 minutes inter-pass annealing. For all four alloys, crack free sheets of less than 1 mm thickness were produced successfully with true strain corresponding to 90% reduction. The as-cast microstructures revealed second phase particles at grain boundaries and grains interiors for all alloys. A slight scatter in the size of the deformed grains was observed for alloy-1, 2 and 3 after rolling reductions of 50, 75 and 90%. However, a sustained decrease in grain size with increasing the rolling reductions was only observed in alloy-4, despite inter-pass annealing. XRD macrotexture results of alloy-2 and 3 presented very strong basal texture showing almost concentric contours around normal direction (ND). Such strong sheet texture is attributed to a preferential alignment of basal planes parallel to the sheet surface. On the other hand alloy-1 and alloy-4 revealed a weaker texture with basal poles spread more towards transverse direction (TD) as compared to rolling direction (RD) and may be due to the activation of some non-basal slip and twinning in addition to basal slip under the same processing parameters.
机译:在本研究中,评价了四镁合金在多通热轧制期间4mg合金的轧制响应,微观结构和质地演化。基础合金的标称组合物I.。'合金-1',商业称为AZ31,是Mg-3al-LZN(重量%)。通过单独添加非稀土元素Ag和In和母合金85Ag-15in来开发合金-2,3和4,以使靶组合物Mg-3Al-LZN-0.5X,(X = Ag,In, agin)。将来自所有四种合金的样品在300℃下进行多通热轧制,累积减少50,75和90%,通过8分钟间退火。对于所有四种合金,成功地生产厚度小于1mm厚度的裂缝片,真正的应变对应于90%的减少。铸造微结构揭示了所有合金的晶界和晶粒内部的第二相颗粒。在轧制减少50,75和90%后,在合金-1,2和3中观察到变形晶粒的尺寸轻微散射。然而,尽管间隙 - 4,但在合金-4中仅观察到粒度随着轧制减少的持续降低。合金-2和3的XRD Macrotexture结果呈现出非常强大的基础纹理,显示在正常方向周围几乎同心的轮廓(ND)。这种强板纹理归因于平行于片材表面的基础平面的优先对准。另一方面,与滚动方向(RD)相比,Alloy-1和合金-4揭示了较弱的纹理,基部杆朝向横向(Td)更朝向横向(Td),并且可能是由于一些非的激活基础滑动和孪晶除了在相同的加工参数下的基底滑移。

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