Effect of Copper on the Microstructure and Properties of Phosphorus Cast Iron for the Anode of Aluminum Electrolyzer
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[1] V. Kukartsev,et al. Effect of Cast Iron Structure and Properties on Contact Quality with an Aluminum Electrolyzer Carbon Anode , 2017, Metallurgist.
[2] S Raţiu,et al. Multivariate research in areas of phosphorus cast–iron brake shoes manufacturing using the statistical analysis and the multiple regression equations , 2017 .
[3] Erika Ardelean,et al. Utjecaj sadržaja ugljika, mangana i silicija na tvrdoću fosfornog lijevanog željeza rabljenog u izradi kočionih papuča tračničkih vozila , 2016 .
[4] Yashwant Mehta,et al. Effect of Silicon and Nitrogen on the Microstructure and Mechanical Behavior of High-Phosphorous Steels , 2016, Metallography, Microstructure, and Analysis.
[5] Ch. F. Han,et al. Effects of Molybdenum on the Wear Resistance and Corrosion Resistance of Carbidic Austempered Ductile Iron , 2015, Metallography, Microstructure, and Analysis.
[6] D. Suh,et al. Is low phosphorus content in steel a product requirement? , 2015 .
[7] N. Stepanova,et al. Effect of Copper on the Friction Properties of Gray Cast Iron , 2014 .
[8] Lichao Feng,et al. Exploring Cu2O/Cu cermet as a partially inert anode to produce aluminum in a sustainable way , 2014 .
[9] H. He. Formation law of dense NiFe2O4–NiAl2O4–FeAl2O4 ceramic layer on surface of NiFe2O4 based ceramic inert anode for aluminium electrolysis , 2014 .
[10] S. Ghasemi,et al. Fabrication and Characterization of Nickel Ferrite Based Inert Anodes for Aluminum Electrolysis , 2014, Journal of Materials Engineering and Performance.
[11] M. Waly,et al. Selection of Cast Iron Grade for Stub-Anode Fixation in Aluminum Electrolytic Cells , 2010 .
[12] K. Choe,et al. The Effect of Cu on the Microstructure and the Elevated Temperature Properties of Ferritic Heat Resistant Cast Iron , 2010 .
[13] L. A. Vukolov,et al. Indications of train wheel serviceability state during wheel interaction with brake shoes made of polymer composites, metalloceramics, and cast iron , 2008 .
[14] H. Abbasi,et al. Effect of phosphorus as an alloying element on microstructure and mechanical properties of pearlitic gray cast iron , 2007 .
[15] T. Srivatsan,et al. The influence of phosphorus on shrinkage porosity in cast irons , 1999 .
[16] B. Moon,et al. Alloy design for a low thermal expansion cast iron with enhanced mechanical properties , 1999 .
[17] R. W. Peterson,et al. Anode Cast Iron Thickness Optimization , 2016 .
[18] M. M. Ali,et al. A Study of Anodic Voltage Drop in Aluminum Reduction Cell by Finite Element Analysis , 2016 .
[19] E. Ardelean,et al. THE INFLUENCE OF CARBON , MANGANESE AND SILICON CONTENT UPON THE HARDNESS OF PHOSPHORUS CAST IRON USED IN MANUFACTURING ROLLING STOCK BRAKING SHOES , 2016 .
[20] Qiu Hua-don. Discussion on Countermeasures of Desulfuration and Recarburization for Phosphorus Cast-iron Used for Anode Assembling , 2015 .
[21] A. Nofal,et al. Characterization of New Cast Iron Alloys for the Stub-Anode Connection in the Aluminium Reduction Cells , 2013 .
[22] M. Goodway,et al. Phosphorus in Low Carbon Iron: Its Beneficial Properties , 1988 .