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首页> 外文期刊>Journal of Mining Scinece >Effect of Intergrowth Boundaries between Mineral Species of Ferruginous Quartzite on Ore Pretreatment
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Effect of Intergrowth Boundaries between Mineral Species of Ferruginous Quartzite on Ore Pretreatment

机译:铁素石英矿石矿物种类在矿石预处理中的影响

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摘要

In focus is the nature of intergrowth boundaries between basic minerals (magnetite, hematite and quartz) composing ferruginous quartzite of Kursk Magnetic Anomaly. The data of investigation of intergrowth boundaries between contact minerals on nanotribometer Ti-950, dynamic nanotester TNI and micro-hardness tester PMT-3M before and after mechanical treatment are presented. The studied physical properties and structural conditions of basic minerals demonstrate diversity and complexity of intergrowth boundaries. It is found that strength of interphase boundaries and features of jointing are interrelated with their types and structure. It is shown that treatment of ferruginous quartzite simply by compression will result in generation of hard-to-dissociate aggregates, sludging of the ground material and reduction in the recovery of a target mineral in the end product. Based on the strength of contact phases, it is recommended to adjust grinding mode, or to apply efficient mechanical treatment.
机译:在重点是基本矿物质(磁铁矿,赤铁矿和石英)构成Kursk磁性异常的晶体矿物(磁铁矿,赤铁矿和石英)之间的性质。提出了纳米射线计Ti-950上的接触矿物质之间的栖剂间界面的数据,动态纳米酯TNI和微硬度测试仪在机械处理之前和之后进行。基本矿物学的研究的物理性质和结构条件展示了栖息界界的多样性和复杂性。结果发现,与它们的类型和结构相互关联的相干边界和特征的强度。结果表明,仅通过压缩处理铁素石英岩将产生硬质脱离聚集体,对地面材料的削减和降低最终产品中的靶矿物质的恢复。基于接触阶段的强度,建议调整研磨模式,或应用有效的机械处理。

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