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Effects of AlMnCa and AlMnFe Alloys on Deoxidization of Low Carbon and Low Silicon-Aluminum Killed Steels 被引量:8
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作者 ZHAN Dong-ping ZHANG Hui-shu JIANG Zhou-hua 《Journal of Iron and Steel Research International》 SCIE EI CAS CSCD 2008年第3期15-18,共4页
To confirm the effects of AlMnCa and AlMnFe alloys on the deoxidization and modification of Al2O3 inclusions, experiments of 4-heat low carbon and low silicon aluminum killed steels deoxidized by AlMnCa and AlMnFe all... To confirm the effects of AlMnCa and AlMnFe alloys on the deoxidization and modification of Al2O3 inclusions, experiments of 4-heat low carbon and low silicon aluminum killed steels deoxidized by AlMnCa and AlMnFe alloys were done in a MoSi2 furnace at 1 873 K. It is found that the 1^# AlMnCa alloy has the best ability of deoxidization and modification of Al2O3 inclusions than 2^# AlMnCa and AlMnFe alloys. Steel A deoxidized by 1^# AlMnCa alloy has the lowest total oxygen content in the terminal steel, which is 37× 10^-6. Most of the inclusions in the steel deoxidized by 1^# AlMnCa alloy are spherical CaO-eontaining compound inclusions, and 89.1% of them are smatter than 10 μm. The diameter of the inclusion bigger than 50 μm is not found in the final steels deoxidized by AlMnCa alloys. Whereas, for the steels deoxidized by AlMnFe alloys, most inclusions in the terminal steel are Al2O3 or Al2O3-MnO inclusions, and a few of them are spherical, and only 76.8% of them are smaller than 10 μm. Some in- clusions bigger than 50μm are found in the steel D deoxidized by AlMnFe alloy. 展开更多
关键词 STEELMAKING deoxidization inclusion AlMnCa alloy almnfe alloy
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轨道交通用Al-Si-Cu合金成分优化及其对力学性能的影响
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作者 许永祥 龚家林 +3 位作者 张楠 刘逸群 李向平 夏震 《轨道交通材料》 2026年第1期56-59,64,共5页
文章旨在通过优化成分开发高性能轨道交通用Al-Si-Cu合金。通过金相显微镜、扫描电镜的表征以及拉伸试验机的测试,结合差热分析和Pandat模拟相图,研究了提高Cu、Ti元素含量及添加微量Mn元素对Al-Si-Cu合金显微组织和力学性能的影响。结... 文章旨在通过优化成分开发高性能轨道交通用Al-Si-Cu合金。通过金相显微镜、扫描电镜的表征以及拉伸试验机的测试,结合差热分析和Pandat模拟相图,研究了提高Cu、Ti元素含量及添加微量Mn元素对Al-Si-Cu合金显微组织和力学性能的影响。结果表明,Cu的质量分数由1.28%提高至1.80%,Ti的质量分数由0.03%提高至0.06%,添加微量Mn元素后,Al-Si-Cu合金中的长针状AlFe相转变为短条状AlMnFe相,热处理态合金的抗拉强度、屈服强度和延伸率分别为358.3 MPa、273.8MPa和8.6%,相应提高了17.9%、8.1%和75.5%。 展开更多
关键词 Al-Si-Cu合金 成分优化 almnfe 力学性能
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