Die Haupt Verteilung Und Verwendung von Silizium Mangan

Aug 09, 2023Eine Nachricht hinterlassen

1, Haupt Verteilung

Silizium Mangan ist reichlich vorhanden in dem Südwesten der Region von China.

2% 2c Hauptzweck

Silicon manganese alloy is mainly used as an intermediate material for deoxidizer and alloying agent in steel production, and is also the main raw material for medium and low carbon ferromanganese production. Silicon manganese alloy is an alloy composed of manganese, silicon, iron, and a small amount of carbon and other elements. It is a widely used and high-yield ferroalloy. Its consumption ranks second among electric furnace ferroalloy products. The silicon and manganese in silicon manganese alloy have a strong affinity for oxygen. When silicon manganese alloy is used in steelmaking, the deoxygenation products MnSiO3 and MnSiO4 produced are melted at 1270 degree and 1327 degree , respectively. They have the advantages of low melting point, large particles, easy floatation, and good deoxygenation effect. Under the same conditions, using manganese or silicon alone for deoxidation results in a burning loss rate of 46 percent and 37 percent , respectively, while using silicon manganese alloy for deoxidation results in a burning loss rate of 29 percent for both. Therefore, it has been widely used in steelmaking, with a production growth rate higher than the average growth rate of ferroalloys, and has become an indispensable composite deoxidizer and alloy additive in the steel industry.

Silicon manganese alloys with carbon content below 1.9 percent are still used as semi-finished products for the production of medium to low carbon ferromanganese and electro silicothermic manganese metal. In ferroalloy production enterprises, the silicon manganese alloy used for steelmaking is usually referred to as commercial silicon manganese alloy, the silicon manganese alloy used for smelting low-carbon iron is referred to as self used silicon manganese alloy, and the silicon manganese alloy used for smelting metal is referred to as high silicon silicon silicon manganese alloy. Manganese can be combined with silicon to synthesize silicides MnSiO3, MnSiO, and MnSiO3. From the silicon manganese state diagram, it can be seen that the stability max silicide is MnSi. Due to the negative value of free energy generated by silicides of manganese, which is much greater than the negative value of free energy generated by carbides of manganese, the higher the silicon content in silicon manganese alloys, the lower the carbon content.

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