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·846· 工程科学学报,第41卷,第7期 (马绍良,许敏,林玉胜,等.大型铝电解槽直接生产铝硅合 1995.5(2):75 金的研究.有色金属(冶炼部分),2011(5):20) (黄英科,肖辉照,彭德泉.电解法直接制取A-Si-Ti合金 [78]Yang GQ,Yang S,Yang Q F,et al.A review on production of 工业试验.中国有色金属学报,1995,5(2):75) Al-Si-Ti alloy by electrolysis.Foundry,1999(4):51 [82]Liao C F,Luo LS,Wang X.Preparation of Al-Cu intermediate (杨冠群,杨升,杨巧芳,等电解法生产铝硅钛多元合金述 alloy by molten-salt electrolytic.Nonferrous Met Sci Eng,2015, 评.铸造,1999(4):51) 6(3):1 [79]Zhou R M,Zhang Z M,Wang J N,et al.Direet production of (廖春发,罗林生,王旭.熔盐电解法制备A-Cu中间合金 the aluminum-manganese alloy with the addition of the black 有色金属科学与工程,2015,6(3):1) manganese in industrial aluminum electrolytic cells.Tangshan [83]Tang H.Study on Preparation of Al-Cu-Y Intermediate Alloy and Inst Eng Technol,1988(2):33 Electrochemical Mechanism by Molten Salt Electrolysis Disserta (周瑞铭,张自铭,王家乃,等.在工业铝电解槽中添加氧化 tion].Ganzhou:Jiangxi University of Science and Technology, 锰直接生产铝-锰合金.唐山工程技术学院学报,1988(2): 2016 33) (汤浩.熔盐电解法制备A-C-Y中间合金及电化学机理研 [80]Yin Y J,Chen F H,Wen C Z.Industrial test of preparing Al- 究[学位论文].赣州:江西理工大学,2016) Mn alloy by electrolysis.Jiangxi Metall,1988.9(3):43 [84]Luo LS.Research on Mechanism and Preparation of Al-Cu-Nd (尹英健,陈芳华,温承志.电解法制取铝锰合金工业试验 Alloy by Molten Salt Electrolysis Dissertation ]Ganzhou:Jian- 研究.江西冶金,1988,9(3):43) gxi University of Science and Technology,2015 [81]Huang Y K,Xiao H Z.Peng D Q.Industrial test of preparing (罗林生.熔盐电解法制备A-Cu-Nd三元合金及机理研究 Al-Si-Ti alloy by electrolysis.Trans Nonferrous Met Soc China, [学位论文].赣州:江西理工大学,2015)工程科学学报,第 41 卷,第 7 期 (马绍良, 许敏, 林玉胜, 等. 大型铝电解槽直接生产铝硅合 金的研究. 有色金属(冶炼部分), 2011(5): 20) [78] Yang G Q, Yang S, Yang Q F, et al. A review on production of Al鄄鄄 Si鄄鄄Ti alloy by electrolysis. Foundry, 1999(4): 51 (杨冠群, 杨升, 杨巧芳, 等. 电解法生产铝硅钛多元合金述 评. 铸造, 1999(4): 51) [79] Zhou R M, Zhang Z M, Wang J N, et al. Direct production of the aluminum鄄manganese alloy with the addition of the black manganese in industrial aluminum electrolytic cells. J Tangshan Inst Eng Technol, 1988(2): 33 (周瑞铭, 张自铭, 王家乃, 等. 在工业铝电解槽中添加氧化 锰直接生产铝鄄鄄锰合金. 唐山工程技术学院学报, 1988(2): 33) [80] Yin Y J, Chen F H, Wen C Z. Industrial test of preparing Al鄄鄄 Mn alloy by electrolysis. Jiangxi Metall, 1988, 9(3): 43 (尹英健, 陈芳华, 温承志. 电解法制取铝锰合金工业试验 研究. 江西冶金, 1988, 9(3): 43) [81] Huang Y K, Xiao H Z, Peng D Q. Industrial test of preparing Al鄄鄄 Si鄄鄄Ti alloy by electrolysis. Trans Nonferrous Met Soc China, 1995, 5(2): 75 (黄英科, 肖辉照, 彭德泉. 电解法直接制取 Al鄄鄄 Si鄄鄄 Ti 合金 工业试验. 中国有色金属学报, 1995, 5(2): 75) [82] Liao C F, Luo L S, Wang X. Preparation of Al鄄鄄Cu intermediate alloy by molten鄄salt electrolytic. Nonferrous Met Sci Eng, 2015, 6(3): 1 (廖春发, 罗林生, 王旭. 熔盐电解法制备 Al鄄鄄Cu 中间合金. 有色金属科学与工程, 2015, 6(3): 1) [83] Tang H. Study on Preparation of Al鄄鄄Cu鄄鄄Y Intermediate Alloy and Electrochemical Mechanism by Molten Salt Electrolysis [Disserta鄄 tion]. Ganzhou: Jiangxi University of Science and Technology, 2016 (汤浩. 熔盐电解法制备 Al鄄鄄Cu鄄鄄Y 中间合金及电化学机理研 究[学位论文]. 赣州: 江西理工大学, 2016) [84] Luo L S. Research on Mechanism and Preparation of Al鄄鄄 Cu鄄鄄 Nd Alloy by Molten Salt Electrolysis [Dissertation]. Ganzhou: Jian鄄 gxi University of Science and Technology, 2015 (罗林生. 熔盐电解法制备 Al鄄鄄 Cu鄄鄄 Nd 三元合金及机理研究 [学位论文]. 赣州: 江西理工大学, 2015) ·846·
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