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Magnetic properties of anisotropic bonded NdFeB/SmCo permanent magnets

机译:各向异性键合NdFeB / SMCO永磁体的磁性

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Anisotropic bonded NdFeB permanent magnets have wide potential applications in the areas such as brushless DC motors, spindle motors, and stepping motors due to their excellent processing property and high magnetic properties. Anisotropic NdFeB bonded magnets prepared by hydrogen-disproportionation–desorption-recombination (HDDR) process have large energy product at room temperature. However, they are not stable at ~100°C, which is the working temperature of many electric motors. In order to improve their thermal stability, we developed bonded NdFeB/SmCo magnets and investigated the effects of powder particle size and SmCo content on their magnetic properties. We proposed a model to clarify the filling effect of the powder, which played a key role in the enhanced (BH)submax/sub when reducing the SmCo particle size. As for the SmCo content, the bonded magnets showed improved (BH)submax/sub at 100°C-150°C and thermal stability with the increase of SmCo content. And through adjusting the SmCo content, the remanence temperature coefficient and coercivity temperature coefficient from 25-150°C were able to be regulated in the range of -0.14%/°C to -0.04%/°C and -0.51%/°C to -0.14%/°C, respectively. This work provides a design strategy and a facile route to improve the magnetic properties and thermal stability of the bonded magnets.
机译:各向异性粘合的NDFEB永磁体在诸如无刷直流电动机,主轴电动机,主轴电机和步进电动机等区域中具有宽的潜在应用,并且由于它们的优异加工性能和高磁性。通过氢 - 歧化 - 解吸重组(HDDR)工艺制备的各向异性NDFEB键合磁体在室温下具有大的能量产物。然而,它们在〜100°C下不稳定,这是许多电动机的工作温度。为了提高其热稳定性,我们开发了粘合的NDFEB / SMCO磁体,并研究了粉末粒度和SMCO含量对其磁性的影响。我们提出了一种模型来阐明粉末的填充效果,在降低SMCO粒度时,在增强型(BH) Max 中起关键作用。至于SMCO含量,粘结的磁体在100℃-150℃下显示出改善(BH) Max ,并随着SMCO含量的增加而热稳定性。通过调节SMCO含量,从25-150℃的剩余温度系数和矫顽力温度系数能够调节在-0.14%/℃至-0.04%/℃和-0.51%/°C的范围内分别为-0.14%/°C。这项工作提供了设计策略和容易途径,以改善粘合磁体的磁性和热稳定性。

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