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Formation and Control of CaS Inclusion in Gear Steel 20MnCr5

机译:齿轮钢20MnCr5中CaS夹杂物的形成与控制

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The modification of (CaO)m(Al_2O_3)n inclusion and the fact of CaS inclusion formation in gear steel 20MnCr5 after calcium treatment have been studied by thermodynamic equilibrium calculation. Based on the thermodynamic equilibrium, when the liquid steel containing 0.035% [Al], the mass fraction of sulfur is lower than 0.00628% and the ratio of w(Ca)/w(Al) is higher than 0.483, the lower melting point 12(CaO)-7(Al_2O_3) inclusion will form in the molten steel. Calculated results show that with calcium treatment of liquid steel the stable CaS forms easily and the aluminum deoxidizing product Al_2O_3 is easily modified to low-melting calcium aluminate 12(CaO); 7(Al_2O_3). In order to completely modify the Al_2O_3 to low-melting calcium aluminate (CaO) (Al_2O_3) and 12(CaO)-7(Al_2O_3), the calcium treatment of liquid steel should carry out in conditions of low [S] and > 1600 °C, and the sulfur wire feeding operation after soft argon stirring in refining process, it is available to obviously decrease the occurrence of nozzle blocking.
机译:通过热力学平衡计算研究了钙处理后齿轮钢20MnCr5中(CaO)m(Al_2O_3)n夹杂物的改性及CaS夹杂物形成的事实。基于热力学平衡,当钢液中含有[Al] 0.035%时,硫的质量分数低于0.00628%,w(Ca)/ w(Al)之比高于0.483,则熔点较低12钢水中会形成(CaO)-7(Al_2O_3)夹杂物。计算结果表明,对液态钢进行钙处理后,容易形成稳定的CaS,铝脱氧产物Al_2O_3易于改性为低熔点铝酸钙12(CaO)。 7(Al_2O_3)。为了将Al_2O_3完全改性为低熔点铝酸钙(CaO)(Al_2O_3)和12(CaO)-7(Al_2O_3),液态钢的钙处理应在低[S]和> 1600°的条件下进行C,和在精炼过程中在软氩气搅拌后的硫线送入操作,可以明显减少喷嘴堵塞的发生。

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