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Development and evaluation of an axial gap motor with neodymium bonded magnet

机译:带有钕磁铁的轴向间隙电动机的开发与评估

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In general, radial gap motors employing neodymium sintered permanent magnet (Nd sintered PM) are used to achieve high torque density in many applications. However, the motors are not suited to a flat, disk-like shape because the dead space, such as the coil ends, occupies most of the motor volume. Therefore, axial gap motors are frequently used for flat shape instead of radial gap motors. Nd sintered PM is a well-known high-performance magnet that has high residual magnetic flux density, but eddy current loss easily occurs in the magnet because of its high conductivity. In axial gap motors for industrial applications, it is difficult to make measure against eddy current loss of Nd sintered PM in terms of cost. Therefore, general axial gap motors employing Nd sintered PM often have the unsatisfactory characteristics such as low efficiency, even though the motor produces high torque. Accordingly, this paper discusses an axial gap motor employing neodymium bonded permanent magnet (Nd bonded PM) for flat shape. Compared with Nd sintered PM, Nd bonded PM has lower residual magnetic flux density, but also lower cost. In addition, Nd bonded PM has extremely low eddy current loss due to its low conductivity. It is found from 3D-FEA and experimental results that the axial gap motor employing Nd bonded PM can achieve higher torque and higher efficiency compared with the radial gap motor employing Nd sintered PM with the same PM weight and a flat shape.
机译:通常,在许多应用中,采用钕烧结永磁体(Nd烧结PM)的径向间隙电动机可实现高转矩密度。但是,由于不活动空间(例如线圈端部)占据了大部分电动机体积,因此电动机不适合于扁平的盘状形状。因此,轴向间隙电动机通常代替径向间隙电动机用于扁平形状。 Nd烧结PM是具有高残留磁通密度的公知的高性能磁体,但是由于其高电导率,在磁体中容易产生涡流损耗。在用于工业应用的轴向间隙电动机中,就成本而言,难以采取措施来防止Nd烧结PM的涡流损耗。因此,即使电动机产生高转矩,采用Nd烧结PM的普通轴向间隙电动机也常常具有不令人满意的特性,例如低效率。因此,本文讨论了一种采用钕粘结永磁体(Nd粘结永磁体)制成扁平形状的轴向间隙电动机。与Nd烧结的PM相比,Nd粘结的PM具有更低的剩余磁通密度,而且成本更低。另外,Nd键合的PM由于其低导电性而具有极低的涡流损耗。从3D-FEA和实验结果发现,与采用相同重量和扁平形状的Nd烧结PM的径向间隙电动机相比,采用Nd粘结的PM的轴向间隙电动机可以实现更高的转矩和更高的效率。

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