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Development of Rare-Earth Free Mn-Al Permanent Magnet Employing Powder Metallurgy Routeud

机译:利用粉末冶金路线开发稀土自由mn-al永磁材料

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摘要

Most widely used high-performance permanent magnets are currently based on intermetallics of rare-earths in combination with Fe and Co. Rare-earth elements required for these magnets are getting expensive by the day. Consequently, there is a thrust worldwide to develop economical rare-earth free permanent magnets. It is acknowledged that the phase in Mn-Al alloys possesses magnetic properties without the presence of ferromagnetic elements such as Fe, Co, and Ni. In the present study, we report the synthesis of magnetic phase of Mn54Al46 alloy synthesized using mechanical alloying followed by solutionizing and annealing to obtain the desired magnetic phase.udIt is well known that Al dissolves partially in Mn matrix hence supersaturated solid solution of Mn54Al46 alloy powder was obtained by mechanical alloying using a planetary high-energy ball mill. For this purpose elemental Mn and Al powders were ball-milled in Argon atmosphere at 400 rpm using stainless steel bowl with ball to powder ratio of 15:1. These mechanically alloyed Mn54Al46 powders were then consolidated using spark plasma sintering at 550 degrees C for 20 min. followed by solution treatment at 1050 degrees C for 5 hrs and then water quenched to retain high temperature phase. Subsequently, the Mn54Al46 samples were annealed in the temperature range 450 degrees C-650 degrees C to obtain the magnetic phase. These samples were characterized by XRD and SEM and the magnetic properties were measured using a vibrating sample magnetometer (VSM). It was observed that the magnetization and coercivity of MnAl magnets exhibited strong dependence on annealing temperature and annealing
机译:当前使用最广泛的高性能永磁体是基于稀土金属间化合物与Fe和Co的结合。这些磁体所需的稀土元素日益昂贵。因此,全世界都在努力开发经济的无稀土永磁体。公认的是,Mn-Al合金中的相具有磁性,而没有诸如Fe,Co和Ni的铁磁元素的存在。在本研究中,我们报告了通过机械合金化合成Mn54Al46合金的磁性相,然后进行固溶和退火以获得所需的磁性相。 ud众所周知,Al部分溶解在Mn基体中,因此Mn54Al46合金过饱和固溶体通过使用行星式高能球磨机机械合金化获得粉末。为此目的,使用具有15:1的球粉比的不锈钢碗,在氩气气氛中以400 rpm的速度对元素Mn和Al粉末进行球磨。然后将这些机械合金化的Mn54Al46粉末在550摄氏度下使用火花等离子体烧结进行固结20分钟。然后在1050摄氏度下固溶处理5小时,然后将水淬火以保留高温相。随后,将Mn54Al46样品在450℃至650℃的温度范围内退火以获得磁相。通过XRD和SEM对这些样品进行表征,并使用振动样品磁力计(VSM)测量磁性能。观察到MnAl磁体的磁化和矫顽力对退火温度和退火具有很强的依赖性。

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