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Ultrafine Sm-Fe-N Particles Prepared by Planetary Ball Milling

机译:通过行星球铣削制备的超细SM-FE-N颗粒

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Ultrafine magnetically hard particles are needed for the bottom-up fabrication of anisotropic exchanged-coupled permanent magnets. In this study we have chosen Sm_2Fe_(17)N_x because of its high anisotropy field and large saturation magnetization. A multi-stage planetary ball milling process was used. The key is to find the right balance of energy used to mill the precursor particles; it must be high enough to break the particles and reduce their size but, not so high as to destroy the crystal structure of the nanoparticles that would lead to deterioration of the magnetic properties. First the coarse powders were subjected to a wet milling with 2.0 mm diameter media. In each subsequent stage the media size was reduced to maintain the milling balance. Using such a process produced particles in a size range from 100- 800 nm with a coercivity as high as 10 kOe at room temperature.
机译:需要超细磁性硬颗粒,用于自下而上的各向异性交换连接的永磁体的制造。在这项研究中,我们选择了SM_2FE_(17)N_X,因为其高各向异性场和大的饱和磁化强度。使用多级行星球铣削过程。关键是找到用于研磨前体颗粒的能量的正确平衡;它必须足够高,以破坏颗粒并减小其尺寸,但不如破坏导致磁性劣化的纳米颗粒的晶体结构。首先,将粗粉末与2.0mm直径介质进行湿磨。在每个后续阶段,介质尺寸减少以维持铣削平衡。使用这种方法在尺寸范围内产生的颗粒在100-800nm的范围内,矫顽力高达10只koe在室温下。

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