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鋼真空感應熔煉過程痕量元素揮發的動力學

Evaporation Dynamics of Trace Elements during Vacuum Induction Melting of Steel

  • 摘要: 研究了鎳鉻鉬鋼中痕量元素在真空感應熔煉過程中揮發的動力學,給出了確定揮發元素在氣相邊界層擴散傳質系數的方法,提出了揮發元素在液/氣界面揮發反應的速率常數計算公式。試驗及計算結果表明,Sn、As在鋼的真空感應熔煉過程中的揮發過程受液相邊界層中的擴散及液/氣界面揮發反應混合控制,K23值均在10-3~10-2cm/s數量級。Sn、As在液/氣界面的揮發反應可能包括元素自身的揮發及其氧化物的揮發反應。

     

    Abstract: The evaporation dynamics of trace elements in nickel chrominium molybydenum steel during vacuum induction melting have been studied. The way to determine the transport coefficient of gas boundary layer has been developed. The formula to calculate the specific rate constant of element evaporating from the gas/metal surface has been deduced. The results of experiment and calculation show that Sn or As evaporation process during vacuum induction melting of steel is controlled by transport in both the metal boundary layer and the evaporation from the metal surface, in which K23 value is at the level of 10-3~10-2cm/s. The Sn or As loss reaction from the gas/metal surface includes probably the evaporations of itself and its oxide.

     

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