一种简单、低成本、高能效的工业用磁化器

S.B. Sriveni, V. Kumar Chinnaiyan, J. Jerome
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引用次数: 4

摘要

高能永磁体产品广泛应用于各种电磁器件中。磁化过程需要在被磁化的磁性材料附近产生强烈的磁场。然而,这些字段需要在毫秒量级的短时间内生成。强烈的磁场是由非常大的电流在短时间内通过由几圈铜线或铜管组成的线圈或一组线圈而产生的,尽管通常在某些应用中,铁被用作核心材料和无芯线圈。磁芯和绕组形状的设计、导线的规格和匝数由所需的磁化剖面决定。脉冲充磁器中的永磁材料通常是由大电容器组的放电电流磁化的。磁化器在样品线圈内产生100-200高斯范围内的短时磁场。首先将电容器组充电到所需电压(对应于所需场)。然后使用高容量可控硅作为开关,通过线圈非常迅速地放电。由于涉及到非常高的电流水平,因此线圈和所有电路都完全包含在一个外壳中。为可控硅电路提供了适当的保护电路。提出了一种新的永磁体磁化技术。给出了电压和电流的仿真波形。仿真结果与硬件结果进行了验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A simple low cost energy efficient magnetizer for industrial applications
Permanent magnets with high energy products are widely used in a variety of electromagnetic devices. The process of magnetization requires generation of intense magnetic fields in close proximity with the magnetic material to be magnetized. The fields however need to be produced for a short time of the order of a millisecond. The intense magnetic field is produced by passage of a very heavy current through a coil or set of coils consisting of a few turns of copper wire or tube for a short duration, though in general, iron is used as a core material and coreless coils in some applications. Design of the core and winding shape, gauge of wire, and number of turns are determined by the desired magnetization profile. The permanent magnet material in an impulse magnetizer is typically magnetized by the discharge current of a large capacitor bank. The magnetizer generates short duration magnetic fields in the range of 100-200 Gauss within the sample coil. The capacitor bank is first charged to the desired voltage (corresponding to the desired field). It is then discharged through the coil very quickly using a high capacity SCR as a switch. Because very high current levels are involved, the coil and all circuitry are totally contained in a single case. The proper protection circuit is provided for SCR circuit. A novel technique for magnetizing the permanent magnets is presented. Simulated waveforms of voltages and currents are presented. The simulated results are verified with the hardware results.
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