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Abrasivity and grindability study of mineral ores

机译:耐磨性和矿物的易磨性研究

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The results of the milling experiments of different mineral ores and laboratory wear testing with different abrasives have shown that the abrasivity of treated materials does not depend only on their hardness, but, to a great extent, on the particle shape of the materials. The grindability of materials milled by collision depends on the properties of materials as well on the treatment parameters (specific treatment energy). The aims of this investigation were (1) to study the abrasivity and the grindability of different minerals (granite, quartzite, etc.) and (2) to predict the relative wear resistance of the materials prospective for the grinding media of milling equipment, using a centrifugal type impact wear tester. Experiments conducted with abrasives of different hardness and with particles of different shape have shown that the wear rate of materials used as wear resistant materials in grinding devices depend more on the angularity of abrasive particles than on their hardness. It was shown that the grindability depends more on the composition and properties (fracture toughness, homogeneity of the structure) than on the hardness of the mineral ores. The main size reduction occurs at first collision, later in the multiple milling of mineral materials particle rounding takes place. The angularity parameter has good correlation with the wear rate in the case of the studied commercial steels as well as with metal matrix composites. Experiments with cermets showed that erosion does not practically depend on abrasive particle shape.
机译:铣削试验的结果不同的矿石和实验室穿测试不同的研磨剂显示处理材料的耐磨性只取决于他们的硬度,但是,一个伟大的程度上,颗粒形状的材料。研磨材料的易磨性碰撞取决于材料的性质治疗参数(具体治疗能量)。学习的易磨性和耐磨性不同的矿物(花岗岩、石英岩等)(2)预测的相对耐磨性材料潜在的研磨介质使用离心式铣设备冲击磨损试验机。不同的硬度和研磨剂粒子不同的形状显示磨损率的材料用作耐磨材料磨削设备更依赖生硬的磨料粒子比硬度。更多的取决于组成和性质(断裂韧性的同质性比硬度的矿石结构)矿石。碰撞,之后的多个铣削矿物材料粒子舍入。有角参数具有良好的相关性与磨损率的研究商业钢以及金属矩阵复合材料。几乎侵蚀不取决于磨料粒子的形状。

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