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Bulk FePt-based nanocomposite magnets with enhanced exchange coupling

机译:具有增强的交换耦合作用的块状FePt基纳米复合磁体

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High density bulk FePt/Fe_3Pt nanocomposite magnets have been prepared by high-pressure warm compaction of chemically synthesized FePt and Fe_3O_4 nanoparticles. It is found that the density increases with the compaction pressure and temperature. Density of the bulk samples up to 95% theoretical value has been obtained while the nanostructured morphology is retained. It is also observed that a high pressure expedites the FePt phase transition from the disordered face-centered-cubic structure to the L1_0 structure, leading to the phase transition temperature in the compacts one hundred degrees lower than usual. This phase transition in turn facilitates the consolidation of the compacts. Magnetic characterizations showed that interphase exchange coupling is enhanced upon the compaction. Post-annealing of the compacts results in further improved magnetic performance of the compacts owing to interface modification. Energy products up to 16.3 MG Oe of the isotropic bulk nanocomposite magnets have been achieved, which is significantly higher than the theoretical limit for fully dense single-phase FePt magnets.
机译:通过对化学合成的FePt和Fe_3O_4纳米粒子进行高压热压制,制备了高密度的FePt / Fe_3Pt纳米复合磁体。发现密度随着压实压力和温度而增加。在保留纳米结构形态的同时,获得了高达95%理论值的大块样品密度。还观察到,高压促进FePt从无序的面心立方结构到L1_0结构的相变,导致压坯中的相变温度比通常低一百度。该相变反过来促进了压坯的固结。磁性表征表明,相变交换耦合在压缩时得到增强。由于界面的改变,压块的后退火导致压块的磁性能进一步改善。各向同性块状纳米复合磁体的能量积已达到16.3 MG Oe,大大高于完全致密的单相FePt磁体的理论极限。

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