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A study of high-energy milling for the production of sintered PrFeB magnets

机译:高能铣削烧结PrFeB磁体的研究

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Sintered Pr16Fe76B8 magnets have been produced using the hydrogen decrepitation (HD) process and high-energy planetary ball milling. Investigations have been carried out to evaluate the influence of the milling speed and time. The best magnetic properties obtained were Br = (1020 ± 20) mT, μ0iHc = (1420 ± 30) mT and (BH)max/= (200 ± 4) kJm-3, for a magnet prepared with the alloy milled at 200 rpm for 4.5 ks. Magnets prepared from this powder exhibited a superior intrinsic coercivity compared to that of magnets produced using low-energy ball milling. However, the remanence and energy product of the latter were somewhat lower. An important feature was the dramatic reduction in the processing time (about 90%). Microstructural observation have shown that increasing the milling time and keeping constant the rotational mill speed caused an exponential grain size reduction in the sintered magnet. Increasing the milling speed also reduced the grain size and influenced both remanence and intrinsic coercivity.
机译:烧结的Pr16Fe76B8磁体是使用氢爆破(HD)工艺和高能行星球磨工艺生产的。已经进行了研究以评估铣削速度和时间的影响。对于使用以200 rpm铣削合金制备的磁体,获得的最佳磁性能为Br =(1020±20)mT,μ0iHc=(1420±30)mT和(BH)max / =(200±4)kJm-3持续4.5 ks。与使用低能球磨生产的磁体相比,用这种粉末制备的磁体表现出优异的固有矫顽力。但是,后者的剩磁和能量积较低。一个重要的功能是大大减少了处理时间(大约90%)。显微组织观察表明,增加铣削时间并保持恒定的铣刨速度会导致烧结磁体的指数粒度减小。提高研磨速度也会减小晶粒尺寸,并影响剩磁和固有矫顽力。

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