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首页> 外文期刊>Journal Of The South African Institute Of Mining & Metallurgy >Comparison of physical properties of oxidative sintered pellets produced with UG2 or metallurgical-grade South African chromite: a case study
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Comparison of physical properties of oxidative sintered pellets produced with UG2 or metallurgical-grade South African chromite: a case study

机译:UG2或冶金级南非铬铁矿生产的氧化烧结球团的物理性能比较:案例研究

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摘要

The physical properties of oxidative sintered pellets produced from typical South African UG2 ore are compared with the physical properties of pellets produced with conventional South African metallurgical-grade chromite ore (from the Lower Group 6 or the Middle Group 1 and 2 seams). A statistical evaluation of the cured (sintered) compressive strengths proved that pellets prepared from UG2 ore are likely to have the same, or better, compressive strength than pellets prepared from metallurgical-grade chromite ore. The cured abrasion strength of the UG2 pellets was also superior to that of the metallurgical-grade pellets. Scanning electron microscopy (SEM) backscatter, secondary electron, and elemental X-ray mapping were used to determine the reasons for the general superior strength of the UG2 pellets. The case study UG2 ore also required 13 kwh/t less energy for milling to attain the required particle size distribution prior to pehetization, which can lead to substantial cost savings. Results presented in this paper can be utilized by ferrochromium (FeCr) producers to better quantify the advantages and disadvantages associated with the use of UG2 ore for FeCr production.
机译:将典型的南非UG2矿石生产的氧化烧结球团的物理性能与常规的南非冶金级铬铁矿矿石(来自第6组下部或第1组和第2组中间缝)生产的球团的物理性能进行了比较。对固化(烧结)抗压强度的统计评估证明,由UG2矿石制备的球团可能具有与由冶金级铬铁矿矿石制得的球团相同或更好的抗压强度。 UG2颗粒的固化耐磨强度也优于冶金级颗粒。扫描电子显微镜(SEM)的反向散射,二次电子和元素X射线图被用来确定UG2颗粒总体强度高的原因。案例研究UG2矿石还需要减少13千瓦时/吨的碾磨能量,才能在球化之前获得所需的粒度分布,这可以节省大量成本。铬铁(FeCr)生产商可以利用本文介绍的结果更好地量化与使用UG2矿石生产FeCr相关的优缺点。

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