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Effects of manganese addition on microstructure and press formability of hot-rolled Mg-Al-Zn alloy sheets

机译:锰对热轧Mg-Al-Zn合金薄板组织和压制成形的影响

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摘要

Differential speed rolling (DSR) has been carried out on AZ31 alloys with Mn additions of 0 to 0.6 wt% for investigating the effects of Mn on microstructure, texture, mechanical properties, and formability. The Al-Mn compounds were formed in the sample with a Mn addition of only 0.2 wt% because of its low solid-solubility limit. There were tiny differences among the DSR-processed AZ31 alloys with different Mn contents, while the AZ31 alloy without Mn addition exhibited a more homogeneous microstructure, a weaker basal texture intensity, and a much superior formability together with a larger likelihood of grain growth during annealing. The Mn dissolving in αMg matrix exerted a far stronger influence on the resulting properties compared with those existing in form of the Al-Mn compounds. The Mn solute atoms induced an increase in c/a ratio, which may suppress activity of nonbasal slips and in turn degrade the deformation capability.
机译:为了研究Mn对显微组织,织构,机械性能和可成形性的影响,已经对AZ31合金进行了差速轧制(DSR),其中Mn的添加量为0至0.6 wt%。由于其固溶度低,在样品中仅添加了0.2 wt%的Mn就形成了Al-Mn化合物。经DSR处理的具有不同Mn含量的AZ31合金之间存在微小差异,而未添加Mn的AZ31合金具有更均匀的微观结构,较弱的基础织构强度和出色的可成形性,并且在退火过程中晶粒生长的可能性更大。与以Al-Mn化合物形式存在的那些相比,溶于αMg基质中的Mn对所得的性能产生更大的影响。 Mn溶质原子引起c / a比的增加,这可能抑制非基础滑移的活动,进而降低变形能力。

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