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Design, Analysis and Experiment Study of the Permanent Maglev Roller used in Belt Conveyor

机译:皮带输送机永久磁悬浮辊的设计,分析与实验研究

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The transport energy consumption of the belt conveyor can be reduced by using the maglev roller instead of the mechanical roller. In this research, the structure of permanent magnetic roller is studied. The mathematical model of the permanent magnetic bearing used in the roller is established by using the equivalent magnetic charge method (EMCM). Then the bearing characteristics of the permanent magnetic bearing are analyzed by using the finite element method (FEM). The structure parameters of the optimized magnetic levitation roller are obtained. Through the experiment study, the rotating resistance of the maglev roller can be reduced to 1.4N, which is far less than the design requirements of the mechanical rollers. And the radial round jump of the maglev roller is at 0.18-0.25mm, less than the radial round jump of the high quality mechanical roller. The analysis of the theory is verified.
机译:通过使用Maglev辊代替机械辊,可以减小带式输送机的运输能量消耗。 在该研究中,研究了永磁辊的结构。 通过使用等效的磁电荷法(EMCM)建立辊中的永磁轴承的数学模型。 然后通过使用有限元方法(FEM)分析永磁轴承的轴承特性。 获得优化的磁悬浮辊的结构参数。 通过实验研究,Maglev辊的旋转电阻可以减少到1.4N,远小于机械辊的设计要求。 磁悬浮辊的径向圆形跳跃为0.18-0.25mm,小于优质机械滚筒的径向圆跳。 验证了对该理论的分析。

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