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作 者:罗奔 李闯 杨云川[1] LUO Ben;LI Chuang;YANG Yunchuan(Shenyang Ligong University,College of Materials Science and Engineering,Shenyang 110159,China;State Key Laboratory of Mineral Processing Science and Technology,Beijing 102628,China;Northeastern University College of Resources and Civil Engineering,Shenyang 110004,China)
机构地区:[1]沈阳理工大学材料科学与工程学院,辽宁沈阳110159 [2]矿物加工科学与技术国家重点试验室,北京102628 [3]东北大学资源与土木工程学院,辽宁沈阳110004
出 处:《矿产保护与利用》2020年第2期125-129,共5页Conservation and Utilization of Mineral Resources
基 金:矿物加工科学与技术国家重点试验室开放基金资助(BGRIMM-KJSKL-2017-02)。
摘 要:为了研究菱镁矿粉磨程度的定量表征,以辽宁丹东地区菱镁矿为原料,进行了磨矿试验、粒度检测试验、磨矿细度试验,应用分形理论,建立了用于表征粉磨菱镁矿颗粒粒度分布的体分形维数数学关系。结果表明:体分形维数与磨矿细度呈非线性关系,当体分形维数均值达到极大值,即D3=2.4662时,对应的磨矿细度为-0.074 mm含量81.6%,通过浮选试验发现此时浮选指标最好。该研究实现了菱镁矿粉磨程度的定量表征,建立了体分形维数与选矿浮选的联系。In order to study the quantitative characterization of magnesite grinding degree,grinding test,particle size detection test and grinding fineness test were carried out with the raw material of magnesite derived from Dandong area of Liaoning Province.Based on the fractal theory,a mathematical model of volume fractal dimension was established to characterize the particle size distribution of magnesite grinding.The results showed that the volume fractal dimension has a non-linear relationship with the grinding fineness.When the mean value of volume fractal dimension reaches the maximum value,that is,D3=2.4662,the corresponding grinding fineness of-0.074 mm is 81.6%,while the flotation test obtained the optimal flotation index.Quantitative characterization of magnesite grinding degree was realized,and the relationship between volume fractal dimension and flotation was established in this paper.
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