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Assessment of the influence of the magnetic filter type on the magnetic field of a separator type MCR-5

机译:评估磁过滤器类型对MCR-5型分离器磁场的影响

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The magnetic separation is a process of great practical relevance. The specifics of the separated material determine the type of the used separator. The aim is to achieve the maximum degree of purification of the processed product. The article examines a construction of real magnetic separator type MCR 5 with a specific problem defined by the practice. The analysis was conducted using a specially developed mathematical models based on the finite elements method. Models of the separator's structure with ferrite material concentrators and gaps of non-magnetic material were examined as well as those with different orientation of the magnetic induction vector of the individual permanent magnets. The stationary magnetic field of the system is analyzed as a flat parallel system, taking into account the nonlinear properties of the materials, which are separated by the separating apparatus. Also are examined the influence of the thickness and the material of the outer body (housing) of the separator. The distribution of the field is modeled numerically using the finite elements method and the software package FEMM 4.2. The results allow to optimize the structure of the magnetic separator and to achieve the highest level of purification.
机译:磁分离是一个具有实际意义的过程。分离出的材料的详细信息决定了所使用的分离器的类型。目的是实现加工产品的最大纯化度。本文研究了MCR 5型实际磁选机的构造,该构造具有由实践定义的特定问题。使用基于有限元方法的专门开发的数学模型进行了分析。研究了具有铁氧体材料集中器和非磁性材料间隙的隔板结构模型,以及各个永磁体的磁感应矢量方向不同的模型。考虑到材料的非线性特性(由分离设备分离),系统的固定磁场被分析为平面平行系统。还检查了隔板的厚度和材料(外壳)的材料的影响。使用有限元方法和软件包FEMM 4.2对场的分布进行数值建模。结果允许优化磁分离器的结构并实现最高水平的纯化。

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