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铜/铒对铸造铝硅合金低温拉伸性能的影响

Effects of Cu/Er on Tensile Properties of Cast Al-Si Alloy at Low Temperature.

作者信息

Zhang Huidi, Chen Bin, Hao Jianfei, Wu Huishu, Chen Ming, Li Weirong, Li Runxia, Wang Biao

机构信息

Faculty of Materials Science and Engineering, Dongguan University of Technology, Dongguan 523808, China.

Faculty of Materials Science and Engineering, Shenyang University of Technology, Shenyang 110870, China.

出版信息

Materials (Basel). 2023 Jan 17;16(3):902. doi: 10.3390/ma16030902.

Abstract

The current protocol presents the effects of the addition of Cu, rare earth Er, and Cu-Er composite elements on the microstructure of the Al-10Si-0.3Mg alloy. The variations in their low-temperature tensile properties were also investigated. The addition of rare earth Er elements, Cu elements, and Cu-Er composite elements increased the strength of all three groups of alloys when stretched at low temperatures (-60 °C). Further, the elongation of the alloy increased with the addition of Er, while the elongation of the other two groups decreased. The low-temperature (-60 °C) tensile strength of the alloy with the same composition was higher than that at room temperature (20 °C), but the elongation decreased. Notably, by adding rare earth Er to the Al-10Si-0.3Mg alloy, the three-dimensional morphology was changed from coarse dendritic to fine fibrous, the secondary dendritic arm spacing (SDAS) of the alloy was reduced, and the grains were refined. The AlCu phase, Al-Si-Cu-Mg quaternary phase, and Cu-rich phase appeared in the alloy with the addition of Cu elements, but the Si phase morphology and α-Al dendrites were not significantly improved. Interestingly, the Si phase morphology of the alloy was improved by adding Cu-Er composite elements, and SDAS was reduced. Still, the AlCu phase, Al-Si-Cu-Mg quaternary phase, and Cu-rich phase were not much improved.

摘要

本实验方案展示了添加铜(Cu)、稀土铒(Er)以及铜铒(Cu-Er)复合元素对Al-10Si-0.3Mg合金微观结构的影响。同时还研究了它们低温拉伸性能的变化。添加稀土铒元素、铜元素以及铜铒复合元素均提高了三组合金在低温(-60°C)拉伸时的强度。此外,添加铒元素使合金的伸长率增加,而其他两组的伸长率下降。相同成分合金的低温(-60°C)拉伸强度高于室温(20°C)时的拉伸强度,但伸长率降低。值得注意的是,向Al-10Si-0.3Mg合金中添加稀土铒后,其三维形态从粗大的树枝晶变为细小的纤维状,合金的二次枝晶间距(SDAS)减小,晶粒得到细化。添加铜元素的合金中出现了AlCu相、Al-Si-Cu-Mg四元相和富铜相,但Si相形态和α-Al枝晶没有明显改善。有趣的是,添加铜铒复合元素改善了合金的Si相形态,减小了SDAS。不过,AlCu相、Al-Si-Cu-Mg四元相和富铜相没有太大改善。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/72c1/9917727/6a1da106ed25/materials-16-00902-g001.jpg

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