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Experimental investigation of the effect of energy on the ore breakage

机译:能量对矿石破碎影响的实验研究

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The comminution in Semi-Autogenous (SAG) mills depends on the impact conditions. It will be worthwhile to determine the efficient impact parameters. Drop weight test is employed to simulate the ball-flat impacts and study the effect of collision energy on ore breakage. Specimens are the copper ores of SAG mill feed of Sarcheshmeh copper complex. Minimum energy required for breakage is determined for each size. The size distribution of the broken ore due to the different specific input energies is determined and a relation is presented to predict it. Since the production of fine particles is important in SAG mill process, t(10) is measured and discussed. The results of present work can be used to optimize the comminution in SAG mills by controlling the milling parameters such as the mill speed, liner height and profile, feed size and ball size to achieve the efficient mill throughput.
机译:半自磨机 (SAG) 的粉碎取决于冲击条件。确定有效的冲击参数是值得的。采用落锤试验模拟了球扁平冲击,研究了碰撞能量对矿石破碎的影响。标本是Sarcheshmeh铜复合物的半自磨机进料铜矿石。破损所需的最小能量是针对每种尺寸确定的。确定了由于不同比输入能量引起的破碎矿石的尺寸分布,并提出了一个关系来预测它。由于细颗粒的产生在半自磨机工艺中很重要,因此测量并讨论了t(10)。本研究结果可用于通过控制磨机速度、衬板高度和轮廓、进料尺寸和球体尺寸等研磨参数来优化半自磨机的粉碎,以实现高效的磨机产量。

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