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Relationship between Thermal Influence and Magnetic Characteristics in Electrical Discharge Machining of Magnetic Materials

机译:磁性材料放电加工热影响与磁特性的关系

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It is difficult to perform traditional machining, including turning, milling and grinding, of a permanent magnet, which is a functional material, because of magnetic forces. However, electrical discharge machining (EDM), which is a non-contact machining method, has been used for shape machining of magnetic materials. In the EDM process, non-magnetic materials such as copper or graphite are typically used as electrodes. Magnetic materials have a Curie point; therefore, their magnetic flux density reduces when they are heated to a high temperature. Because EDM is a thermal process, it has the potential to control the magnetic flux density of a machined surface. In this study, to clarify the influence of magnetic flux density on a machined surface, the following machining conditions were investigated: (1) the Duty Factor (D.F.) and (2) the input energy of one pulse. A sintered neodymium material was used as the work piece. The magnetic flux density of a cross-section of a machined neodymium magnet was measured. The results showed that the influence of the magnetic flux density was low under low-energy machining conditions. In contrast, for high-energy machining conditions or a high D.F., the magnetic flux density significantly reduced compared to the initial value. These results confirm the importance of machining conditions for EDM of magnetic materials.
机译:它难以执行,因为磁力的传统加工,包括车削,铣削和研磨,一永久磁铁,它是一种功能性材料的。然而,放电加工(EDM),这是一种非接触加工方法,已被用于磁性材料的形状加工。在电火花加工过程中,非磁性材料如铜或石墨通常用作电极。磁性材料具有居里点;因此,当它们被加热到高温的磁通密度降低。因为EDM是热过程,所以它具有控制加工表面的磁通密度。在这项研究中,以澄清在机加工的表面的磁通密度的影响,下面的加工条件进行了考察:(1)占空因数(D.F.)和(2)一个脉冲的输入能量。烧结钕材料用作工件。机加工的钕磁铁的横截面的磁通量密度进行测定。结果表明,磁通密度的影响是低能量的加工条件下具有低。相反,对于高能量的加工条件或高D.F.,磁通密度显著相对于初始值降低。这些结果证实加工条件磁性材料的EDM的重要性。

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