MgO interaction mechanism in sinter
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摘要: 研究了燒結礦中MgO對燒結液相生成、固結成礦的影響機理,以及不同鎂質熔劑對固結強度的影響規律,并在此基礎上進行了燒結杯實驗研究.結果表明:隨著燒結礦中MgO含量的增加,燒結液相開始形成溫度上升,液相流動性和黏結相強度均降低;使用不同種類的鎂質熔劑時,燒結黏結相強度有差異,在1 280℃和1 320℃下,使用蛇紋石時黏結相強度相對最高,其次是使用輕燒白云石的情況,而使用白云石時黏結相強度相對最低;在兼顧燒結礦產量、質量指標及冶金性能的前提下,燒結礦中適宜的MgO質量分數在1.2%左右,鎂質熔劑則適宜選用白云石和蛇紋石組合或者單獨使用輕燒白云石.Abstract: The influence mechanism of MgO on sintering liquid forming and solid phase reaction and the effect of MgO flux on the strength of solid phase were investigated, and sinter pot experiments were carried out. The results show that with the content of MgO in sinter increasing, the initial forming temperature of sinter liquid phase rises, but the fluidity of liquid phase and the strength of bonding phase decrease. When different MgO fluxes are used, the strength of bonding phase in sinter appears diverse. Furthermore, at 1280~C and 1 320~C, the strength of bonding phase when sintered with serpentine is much higher than that with light-burned dolomite and dolomite is the worst. Based on the yield, quality and metallurgical properties of sinter, the desirable mass fraction of MgO is about 1.2% and for MgO flux either the composite of dolomite and serpentine or the light-burned dolomite alone is better.
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Key words:
- sinter /
- MgO content /
- dolomite /
- light-burned dolomite /
- serpentine /
- interaction mechanism
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