Mechanism of Spheroidization of Carbide in RE-Complex Modified Vanadium White Iron
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摘要: 探索了用變質方法改善釩白口鑄鐵中碳化物的形貌和分布。用稀土綜合變質劑對釩白口鑄鐵進行了變質處理,使釩白口鐵中方塊狀先共晶碳化物和條狀共晶碳化物變為圓整時球狀碳化物,韌性和機械性能明顯提高。
研究表明,一定的釩量是碳化物獲得球化的必要條件。變質過程中產生的大量的高熔點的硫化物、氮化物是VC非均質形核的基體,對VC以離異共晶方式生長起著重要作用。稀土的脫硫脫氧作用,提高了VC—熔體間的界面能,降低了VC的表面能的各向異性,使VC各個生長錐以在致相等的速度增長,從而長成球形。同時,高的界面能有利于在生長過程中球面的穩定性。
稀土綜合變質劑正是綜合了提供非均質形核基體與提高VC—熔體界面能、降低界面能各向異性的優點,而且前者與后者之間互相促進,因而發揮了較強的球化作用。Abstract: The effects of RE-complex modification on morphology of the carbide in-vanadium white iron was studied.After modification both the cubic-shape hyper eutectic Vc and strip-like eutectic Vc change into perfectly spheroidal carbide and the toughness and abrasion resistance of vanadium white iron is pronouncedly improved.
The experimental results showed that to get spheroidal carbide a certain minimum content of vanadium in white iron is necessary.The sulphide and nitride with higher melting point formed during modification process are the substrate of heterogeneous nucleation of Vc and this is of great importance for carbide to grow in divorced eutectic.The desulphurizing and deoxidizing effects of rare earth elements raises the VC/melt interfacial tension and at the same time decreases the difference in the interfacial tension of advancing planes of different indices.Therefore the basal planes of growth pyramids advance at about equal speed, and finally the carbide grows as a spheroid.Furthermore,the higher interfacial tension makes the spheroidal surface of VC stable during growth process. -

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