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2010 Journal Article Study of the liquidus and solidus surfaces in the quaternary Fe-Ni-Cu-S system: IV. Construction of a meltability diagram and determination of miscibility gap boundaries for the ternary Cu-Fe-S sulfide systemStarykh, R. V., Sineva, S. I. and Zakhryapin, S. B. (2010). Study of the liquidus and solidus surfaces in the quaternary Fe-Ni-Cu-S system: IV. Construction of a meltability diagram and determination of miscibility gap boundaries for the ternary Cu-Fe-S sulfide system. Russian Metallurgy (Metally), 2010 (11), 1025-1031. doi: 10.1134/S0036029510110066 |
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2010 Journal Article Study of the liquidus and solidus surfaces in the quaternary Fe-Ni-Cu-S system: III. Construction of a meltability diagram and determination of miscibility gap boundaries for the ternary Cu-Ni-S sulfide systemSineva, S. I., Starykh, R. V. and Zakhryapin, S. B. (2010). Study of the liquidus and solidus surfaces in the quaternary Fe-Ni-Cu-S system: III. Construction of a meltability diagram and determination of miscibility gap boundaries for the ternary Cu-Ni-S sulfide system. Russian Metallurgy (Metally), 2010 (5), 448-455. doi: 10.1134/S0036029510050162 |
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2009 Journal Article Study of the liquidus and solidus surfaces in the quaternary Fe-Ni-Cu-S system: II. Constructing a meltability diagram for the ternary Fe-Ni-S sulfide systemStarykh, R. V., Sineva, S. I., Frolenkova, M. V. and Zakhryapin, S. B. (2009). Study of the liquidus and solidus surfaces in the quaternary Fe-Ni-Cu-S system: II. Constructing a meltability diagram for the ternary Fe-Ni-S sulfide system. Russian Metallurgy (Metally), 2009 (5), 447-453. doi: 10.1134/S0036029509050164 |
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2009 Journal Article The study of liquidus and solidus surfaces of the four-component system Fe-Ni-Cu-S. Part 1. Graphing of meltability in the three-component system Fe-Ni-CuSineva, S. I., Starykh, R. V., Frolenkova, M. V. and Zakhryapin, S. B. (2009). The study of liquidus and solidus surfaces of the four-component system Fe-Ni-Cu-S. Part 1. Graphing of meltability in the three-component system Fe-Ni-Cu. Russian Metallurgy (Metally), 2009 (3), 263-270. doi: 10.1134/S0036029509030136 |