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Phase Transformations in Mn-Al and Mn-Bi Magnets by Repeated Heat Treatment

机译:通过重复热处理Mn-Al和Mn-Bi磁体中的相变

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A stepped heating cycle in a tube furnace at 1000 degrees C for 1 h followed by holding at 400 degrees C for 1 h directly increases the amount of ferromagnetic tau-phase of manganese-aluminum (Mn-Al). Repeating this heating regime for 2 more times, further increase in the amount and uniform distribution of the tau-phase is obtained at the expense of the epsilon-phase. The magnetization and coercivity are increased after each heating cycle, and the effect is more pronounced when 2% carbon (C) is added to Mn-Al. When the similar heat treatment cycle is applied to manganese-bismuth (Mn-Bi), the ferromagnetic alpha-phase is detected with larger magnetizations, but substantial Mn and Bi are segregated from the alloy. This solid-state diffusion in tube furnace offers a facile route to improve rare-earth-free magnets.
机译:在1000℃下的管炉中的阶梯式加热循环在1小时,然后在400℃下保持1小时,直接增加锰 - 铝(Mn-Al)的铁磁性Tau相的量。 重复这种加热制度2次,以ePsilon相的代价,获得Tau相的量和均匀分布的进一步增加。 每次加热循环后,磁化和矫顽力增加,当向Mn-Al加入2%碳(C)时,效果更加明显。 当将类似的热处理循环应用于锰 - 铋(MN-BI)时,用较大的磁化检测铁磁性α相,但是基本的Mn和Bi从合金中偏离。 该固态扩散在管炉中,提供了一种改善稀土磁铁的便利途径。

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