含镍复合材料生产技术分析

B. Kelamanov, D. Yessengaliyev, O. Sariev, Askhat Akuov, Yerulan Samuratov, T. Zhuniskaliyev, Yerbol Kuatbay, Yerbol Mukhambetgaliyev, Olga Kolesnikova, Assel Zhumatova, Zukhra Karaidarova, A. Abdirashit
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摘要

文章介绍了通过使用焦炭和半焦炭烧结含镍原料与含碳原料的混合材料获得复合材料的结果。烧结过程的料层高度为 240 毫米,下层温度为 T = 1200 °C。筛分分析结果表明(分量为 10 毫米),使用焦炭的合适复合材料的产率为 68.3%,使用半焦的产率为 67.0%。复合材料中镍和铬的平均含量分别为 1.42% 和 3.07%。通过从 2 米高处跌落到钢制托盘上,测定使用各种还原剂的复合材料的强度特性,结果发现所获得的复合材料具有较高的机械性能,强度分别为 81% 和 89.2%。本文介绍了所研究的复合材料在研究点的元素组成和热分析结果。复合材料的矿物成分以蛇纹石和褐铁矿的形式呈现,空岩由石英和滑石组成。通过非等温动力学方法计算了热分析活化能。用含镍原料生产复合材料的实验结果将为在试验测试和工业开发阶段获得复合材料的最佳成分提供建议,开发的技术用于加工哈萨克斯坦共和国的镍矿石。对于贫镍镍矿石的加工而言,获得最佳的技术和技术经济指标以确保所生产产品中镍的低成本是非常重要的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Technological Analysis of the Production of Nickel-Containing Composite Materials
The article presents the results of obtaining a composite material by sintering nickel-containing raw materials mixed with carbon-containing materials, namely using coke and semi-coke. The sintering process was performed at a charge layer height of 240 mm and the temperature of the lower layer was T = 1200 °C. The results of the sieve analysis showed (a fraction of 10 mm) that the yield of a suitable composite material using coke was 68.3% and with semi-coke 67.0%. The average nickel and chromium content in the composite materials was 1.42% and 3.07%, accordingly. As a result of determining the strength characteristics of the obtained composite materials with various reducing agents by dropping from a height of 2 m onto a steel pallet, it was found that the obtained composite materials have high mechanical properties in terms of strength of 81% and 89.2%. The results of the elemental composition at the studied points and the thermal analysis of the studied composite material are presented. The mineralogical composition of the composite material is presented in the form of serpentine and nontronite, and the empty rock is made of quartz and talc. The activation energy of thermal analysis by the method of non-isothermal kinetics were calculated. The results of experiments on the production of composite materials from nickel-containing raw materials will be recommended for obtaining the optimal composition of composite materials at the stage of pilot tests and industrial development of the developed technology for processing nickel ores of the Republic of Kazakhstan. For the processing of nickel-poor nickel ores, it is of great importance to obtain optimal technological and technical and economic indicators that ensure low cost of nickel in the resulting product.
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