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金属矿山 ›› 2020, Vol. 50 ›› Issue (05): 210-214.

• 矿物工程 • 上一篇    下一篇

研磨作用下磨矿产品粒度特性研究

郭润楠,杨金林,马少健,帅智超   

  1. 1. 广西大学资源环境与材料学院,广西 南宁 530004;2. 广西有色金属及特色材料加工重点实验室,广西 南宁 530004
  • 出版日期:2020-05-15 发布日期:2020-06-12
  • 基金资助:
    广西自然科学基金项目(编号:2018GXNSFAA281204),国家自然科学基金项目(编号:51874105)。

Study on Particle Size Characteristics of Grinding Products under Grinding

Guo Runnan,Yang Jinlin,Ma Shaojian,Shuai Zhichao   

  1. 1. College of Resources, Environment and Materials, Guangxi University, Nanning 530004, China; 2. Guangxi Key Laboratory of Processing for Nonferrous Metallic and Featured Materials , Nanning 530004, China
  • Online:2020-05-15 Published:2020-06-12

摘要: 磨矿是冲击和研磨共同作用的结果,但前人并未对单一研磨作用进行系统研究。基于此,以2种常见矿物黄铁矿和磁黄铁矿为研究对象,在磨矿介质处于泻落状态条件下,采用相对可磨度、磨矿动力学分 析等方法,研究矿物在研磨作用下磨矿产品粒度分布特征及规律,初步探讨磨机在介质泻落状态时的磨矿特性。结果表明,相同条件下,矿物入料粒度越细,磨矿产品粒度随磨矿时间变化越明显;黄铁矿在很短的时 间会获得较高的磨矿细度,而随着磨矿时间的延长,磁黄铁矿的磨矿细度变化更为明显,磁黄铁矿受磨矿时间影响更大;磨矿产品粒度分布特征对于磨矿一阶线性动力学模型有很好的拟合度。试验结果可为后续研究 泻落状态下磨矿介质的运动规律及磨矿特性提供理论依据。

关键词: 研磨作用, 相对可磨度, 粒度分析, 磨矿动力学

Abstract: Grinding is the result of the combined action of impact and abrasion, but the single abrasion effect wasn't systematically studied in the previous studies. Two common minerals pyrite and pyrrhotite were taken as research objects. The particle size distribution characteristics and rules of grinding products under the action of grinding were studied using the methods of relative grindability and grinding kinetics analysis, so as to preliminarily discuss the grinding characteristics of grinding machine in the falling state. The results showed that under the same conditions, the finer the particle size of mineral feeding, the more obvious the change of grinding product particle size with the grinding time. Pyrite will obtain a higher grinding fineness in a short time, but with the extension of the grinding time, the change of grinding fineness of pyrrhotite is more obvious, and the influence of grinding time on pyrrhotite is greater. The particle size distribution characteristics of the grinding products have a good fit for the first-order linear dynamic model of grinding. Based on the test results, it can provide a theoretical basis for the follow-up study of the motion law and grinding characteristics of the grinding media under the condition of abrasion.

Key words: Grinding action, Relative grindability, Particle size analysis, Grinding kinetics