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Kinetics of Phosphorus Transfer during Industrial Electroslag Remelting of G20CrNi2Mo Bearing Steel

机译:G20CrNi2Mo轴承钢工业电渣重熔过程中磷的迁移动力学。

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Phosphorus is undesirable in steel for it greatly decreases ductility and causes embrittlement in most cases. The kinetic behavior of phosphorus transfer was investigated during electroslag remelting (ESR) of G20CrNi2Mo bearing steel. Four heat treatments were carried out using an industrial furnace with a capacity to refine 2400 kg ingot. It was found the P content in the four ingots were all higher than that in the electrodes, indicating rephosphorization occurs during ESR. A kinetic model based on film and penetration theory was developed to elucidate the variation of phosphorus from metal film to droplet and metal pool. The model indicates that the rate-determining step of phosphorus transfer is at the slag side. Rephosphorization mainly occurs in the metal film and falling droplet. In addition, the effect of P in the slag and electrode, as well as the temperature of the slag pool on the P content in the metal pool were discussed. In order to achieve a low-P ingot of no more than 0.015%, the corresponding maximum P content in slag under the condition of a certain P content in the electrode was proposed.
机译:磷在钢中是不可取的,因为它会大大降低延展性并在大多数情况下导致脆化。研究了G20CrNi2Mo轴承钢的电渣重熔(ESR)过程中磷迁移的动力学行为。使用能够精炼2400公斤铸锭的工业炉进行了四个热处理。发现四个晶锭中的P含量均高于电极中的P含量,表明ESR过程中发生了再磷化。建立了基于膜和渗透理论的动力学模型,以阐明磷从金属膜到液滴和金属池的变化。该模型表明,磷传输的速率确定步骤在炉渣侧。再磷化主要发生在金属膜和下落的液滴中。此外,还讨论了炉渣和电极中磷的影响以及炉渣温度对金属池中磷含量的影响。为了获得不超过0.015%的低P锭,提出了在电极中一定P含量的条件下炉渣中相应的最大P含量。

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