提高铁矿石开采和加工厂粗破碎效率的创新解决方案

Q4 Engineering
A.G. Lipatov, V.O. Furin, A.A. Kholodkov, A.G. Zhuravlev
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引用次数: 0

摘要

为了提高采矿和浓缩工厂的破碎和加工设施的能力,这些工厂开发了坚硬和磨蚀性矿石的矿床,其中大部分集中在库尔斯克磁异常区内,需要解决破碎过程中的一些技术挑战。为此,在分析粗、中、细矿石破碎特性的基础上,制定了要求,并在此基础上对KKD-1500/180-2P型破碎机进行了研发升级。由于这一升级,对坚硬和高磨蚀性矿石的破碎室外形进行了优化,使粗破碎吞吐量提高了8-10%,还原比提高了29%。由于地幔垂直调节的增加,保证了KKD破碎产品的级配更加稳定,同时两次补衬的时间增加了92%,减少了KKD破碎机补衬的维修和维护成本48-50%。此外,破碎机堵塞的数量减少了25%,这进一步确保了矿石给料到后续破碎和研磨阶段的稳定性。改造后的KKD-1500/180-2P破碎机在中、细破碎阶段的现场试验证明了以下技术经济效果:由于减少了破碎机的封闭侧设置(CSS),二次破碎中产品尺寸减小,减少了二次(细)破碎的循环时间,减少了二次和三次破碎阶段的循环负荷,这有助于将中、细破碎的吞吐量提高3-5%。粗、中、细破碎机的维护和运行成本的节省估计在20%左右。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Innovative solutions to improve the efficiency of coarse crushing in iron ore mining and processing plants
The need to increase the capacity of crushing and processing facilities of mining and concentrating operations plants that develop deposits of hard and abrasive ores, most of which are concentrated within the Kursk Magnetic Anomaly, required solving a number of technological challenges in the crushing process. For this purpose, requirements were formulated as a result of analyzing characteristics of coarse, medium and fine ore crushing, based on which Uralmashplant JSC executed research and development activities aimed at upgrading the KKD-1500/180-2P crushers. As the result of this upgrade, the crushing chamber profile for hard and highly abrasive ores has been optimized to achieve an 8-10% increase in coarse crushing throughput capacity and a 29% increase in the reduction ratio. Due to the increased vertical adjustment of the mantle, more stable gradation of the KKD crushing product was ensured, while the time between relining was increased by 92% with a 48-50% reduction of repair and maintenance costs for relining of the KKD crushers. In addition, a 25% reduction in the number of the crusher blockages was noted, which further ensures the stability of the ore feed to the subsequent crushing and grinding stages. Field tests of the upgraded KKD-1500/180-2P crushers proved the following technical and economic effects in the medium and fine crushing stages: an increase in the volume of undersized material in scalping, a reduction in the product size in secondary crushing as a result of decreasing the crusher's closed side settings (CSS), a reduced cycle time of tertiary (fine) crushing with a decreased circulating load in secondary and tertiary crushing stages, which helped to increase the medium and fine crushing throughput capacity by 3-5%. The savings in maintenance and operating costs for the coarse, medium and fine crushers are estimated to be around 20%.
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来源期刊
Gornaya Promyshlennost
Gornaya Promyshlennost Engineering-Industrial and Manufacturing Engineering
CiteScore
1.10
自引率
0.00%
发文量
100
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