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Magnetic force on a magnetic particle within a high gradient magnetic separator

机译:高梯度磁选机内磁性颗粒上的磁力

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摘要

HGMS (High Gradient Magnetic Separator) uses matrix to make high magnetic field gradient so that ferro- or para-magnetic particles can be attracted to them by high magnetic force. The magnetic force generated by the field gradient is several thousand times larger than that by background magnetic field alone. So the HGMS shows excellent performance compared with other magnetic separators. These matrixes are usually composed of stainless steel wires having high magnetization characteristics. This paper deals with superconducting HGMS which is aimed for purifying waste water by using stainless steel matrix. Background magnetic field up to 6 T is generated by a superconducting solenoid and the stainless steel matrixes are arranged inside of the solenoid. Based on magnetic field calculated by FEM (Finite Element Method), we could calculate magnetic force acting on a magnetic particle such as hematite and maghemite consisting of major impurities in the condenser water of a thermal power station.
机译:HGMS(高梯度磁选机)利用基质产生高磁场梯度,从而使铁磁或顺磁颗粒可以被高磁力吸引到其上。磁场梯度产生的磁力比仅背景磁场产生的磁力大数千倍。因此,与其他磁选机相比,HGMS具有出色的性能。这些基质通常由具有高磁化特性的不锈钢丝组成。本文涉及超导HGMS,其目的是利用不锈钢基质净化废水。超导螺线管产生高达6 T的背景磁场,并且不锈钢基体排列在螺线管内部。基于通过FEM(有限元法)计算出的磁场,我们可以计算作用在火力发电厂冷凝器水中主要成分为赤铁矿和磁赤铁矿等磁性粒子上的磁力。

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