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Rapid Characterization of Magnetic Separator Feed Stocks in Titanium Minerals Processing

机译:钛矿物加工中磁选机进料的快速表征

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Magnetic separation is widely used in the processing of titanium minerals. The expected mineral recoveries are assessed by performing laboratory magnetic separations of representative samples to determine the distribution of magnetic components. This is an inherently slow process performed on relatively small samples. This paper describes the development of an inductance based device to rapidly determine the mass distribution of the magnetic properties of a titanium mineral sample. The system is best described as an hourglass with mineral flowing from a hopper through a small inductance coil. The impedance of the coil is proportional to the mean magnetic susceptibility of the number of particles within the coil. An algorithm has been developed to determine the percentage of the feed material at each level of magnetic susceptibility from this measurement. The results are identical to those determined using a laboratory magnetic separation, and are obtained in a fraction of the time. Accuracy of the device has been proven by simulation and by testing of plant samples and comparing the results using the new system with measurements made using a magnetic separator.
机译:磁选广泛用于钛矿物的加工。通过对代表性样品进行实验室磁分离来确定磁性组分的分布,从而评估预期的矿物回收率。这是在相对较小的样本上执行的固有的缓慢过程。本文介绍了一种基于电感的器件的开发,该器件可快速确定钛矿物样品的磁性能的质量分布。最好将系统描述为沙漏,其中矿物从料斗流过一个小的电感线圈。线圈的阻抗与线圈内颗粒数的平均磁化率成正比。已经开发了一种算法,可以根据该测量结果确定在每个磁化率水平下进料的百分比。结果与使用实验室磁分离所确定的结果相同,并且只需一小部分时间即可获得。该设备的准确性已通过仿真和工厂样品测试以及使用新系统的结果与使用磁选机进行的测量结果进行比较来证明。

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