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Effect of protected electroslag remelting on cleanliness of G20CrNi2Mo bearing steel

机译:保护电渣重熔对G20CRNI2MO轴承钢清洁度的影响

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摘要

To meet the high cleanliness requirements of bearing steel used in high-speed railway trains, a new production process combining vacuum induction melting and electroslag remelting (ESR) was used to produce G20CrNi2Mo bearing steel. To investigate the effect of remelting on the cleanliness of the steel, two kinds of G20CrNi2Mo steels were prepared using an ESR furnace with and without high-purity argon protection. The results show that the G20CrNi2Mo electrodes smelted using a vacuum induction furnace have very high cleanliness 0.010[ P%]-0.004[ S%]0.0012[ O%]-0.0041[ N%]). Unprotected ESR leads to an increased oxygen content, while protected ESR prevents any increase in oxygen content. Both protected and unprotected ESR results in significant desulphurisation, with desulphurisation rates reaching over 50%. The protected ESR process removes Al2O3-SiO2-MnO inclusions, and the remaining inclusions in the steel can be divided into two categories, Al2O3 and Al2O3-MnS.
机译:为满足高速铁路列车中使用的轴承钢的高清洁度要求,使用结合真空感应熔融和电渣重熔(ESR)的新生产过程来生产G20CRNI2MO轴承钢。 为了探讨重熔对钢清洁度的影响,使用具有和无高纯度保护的ESR炉制备两种G20CrNi2MO钢。 结果表明,使用真空感应炉熔化的G20CRNI2MO电极非常高的清洁度0.010 [P%] - 0.004 [S%] 0.0012 [O%] - 0.0041 [n%])。 未受保护的ESR导致氧含量增加,同时受保护的ESR可防止氧含量的任何增加。 受保护和未受保护的ESR都导致显着的脱硫,脱硫率超过50%。 受保护的ESR工艺除去Al2O3-SiO2-MNO夹杂物,钢中的剩余夹杂物可分为两类,Al2O3和Al2O3-Mns。

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