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Model of Calculating Activity of Nitrogen and Vanadium in FeCVN Molten Metal

PENG Jun , WANG Shijun , DONG Yuanchi , LIU Lixia , ZHOU Yun , CHEN Erbao

钢铁研究学报(英文版)

The solubility of nitrogen in the FeCVN system was measured at 1 708 K and the model of calculating activity (action concentration) of nitrogen (N) and vanadium (V) was derived according to the phase diagram and the coexistence theory of the metal melt structure. The solubility expression of nitr...

关键词: metal melt;coexistence theory;action concentration;activity

Thermodynamic Properties of FeCN and FeCBN Melts

CHEN Erbao , WANG Shijun , DONG Yuanchi , WU Baoguo , ZHOU Yun

钢铁研究学报(英文版)

The saturated solubility of carbon and nitrogen in FeCN and FeCBN melts was measured experimentally at 1 485 ℃ to obtain the activity interaction coefficients between components in these melts. A new method was used to treat experimental results. Using thermodynamic derivation and calculation, ...

关键词: FeCN melt;FeCBN melt;FeCB melt;interaction coefficient;thermodynamic property

Thermodynamic Properties of Carbon and Manganese in MnC and MnFeC Melts

CHEN Erbao , WANG Shijun

钢铁研究学报(英文版)

Carbon solubility in MnFe melts (xMn=0083-0706, xFe=0034-0715) was measured experimentally at various temperatures. By thermodynamic derivation and calculation, the relationship between activity coefficient of carbon in infinite dilute solution of manganese in MnC system and temperature was ob...

关键词: MnFeC melt;activity interaction parameter;thermodynamic property;carbon;manganese

Relationship Between Activity Interaction Parameters in FeC System and Temperature

CHEN Erbao , LIU Maoliu , WANG Shijun

钢铁研究学报(英文版)

Carbon solubility in FeMn melts (xFe=0102 3-0789 9, xMn=0055 1-0638 0) was measured experimentally at various temperatures. Using GibbsDuhem equation, in combination with the experimental results in this work, quoting experimental data reported in references, and by strict thermodynamic deriva...

关键词: FeC system;activity interaction parameter;activity coefficient;carbon