1873K时镁对钢中氧化物、硫化物的共同变质机理

Mechanism of modifying oxide and sulphide by Mg in liquid iron at 1873 K

  • 摘要: 探讨了1873 K时不同氧硫条件下镁对钢中夹杂物变质的影响.在本实验条件下,Mg在钢液中优先变质氧化物夹杂,随后变质硫化物夹杂,低硫实验钢中镁脱氧产物转变顺序为Al2O3→MgAl2O4→Mg-Al-O-S.镁合金加入1或5min,就可实现氧化物的完全变质,但硫化物的变质则要缓慢的多.当高硫实验钢中元素含量满足一定条件时,镁可以将氧化物、硫化物同时变质成为复合氧硫夹杂物,夹杂物按照Al2O3→MgO→MgO+MgAl2O4+MgS转变,但由于其变质产生的MgO-MgAl2O4产物层阻碍了变质反应的进一步发生.这种夹杂物可以起到固定硫的作用,同时有效控制夹杂物直径的增大.

     

    Abstract: Effect of magnesium addition on the compositions of inclusion was studied in the different oxygen and sulfur contents at 1873 K. Under the present condition,magnesium deoxidation products of low-S content experiment steel can be changed in the order Al2O3→MgAl2O4→Mg-Al-O-S,and it is consistent with the results of thermodynamics calculation. But magnesium is preferred to react with oxide,comparing with sulfide. It reaches the reaction endpoint after 1 or 5 min,and it is faster than reacting with sulfide. When the content of all elements in high-S content experiment steel satisfy certain conditions,the oxide and sulphide can be modified simultaneously by magnesium. And the complex oxysulfides would be generated. The inclusions in experimental steel can be changed in the order Al2O3→MgO→MgO + MgAl2O4+ MgS,but the product layer of MgO-MgAl2O4depressed the further reaction. Sulphur in molten metal can be fixed in this way,and diameter of the inclusions is well under control at the same time.

     

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