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Mechanical behaviour of an Al-matrix composite reinforced with nanocrystalline Al-coated B_4C particulates

机译:纳米晶铝包覆的B_4C颗粒增强的铝基复合材料的力学性能

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In metal-matrix composites (MMCs), interfacial bonding between the metal matrix and the ceramic reinforcement plays a crucial role in their mechanical performance. In the present study, B_4C particles were cryomilled with an Al alloy to produce a composite powder, in which the B_4C was uniformly distributed in nanocrystalline Al. The cryomilling developed a strong bond between the B_4C and the Al, allowing the nanocrystalline Al to act as a coating with a strong ceramic-metal interface. This cryomilled composite powder was then introduced, as a reinforcement, into a conventional Al alloy to strengthen the material. After consolidation, the result was a bulk Al-matrix composite reinforced with B_4C particles encapsulated in nanocrystalline Al. This composite exhibits greatly improved strength and stiffness.
机译:在金属基复合材料(MMC)中,金属基体与陶瓷增强材料之间的界面键合对其机械性能起着至关重要的作用。在本研究中,将B_4C颗粒用铝合金进行低温研磨以生产复合粉末,其中B_4C均匀地分布在纳米Al中。低温铣削在B_4C和Al之间形成了牢固的结合,从而使纳米晶Al充当具有牢固的陶瓷-金属界面的涂层。然后将这种低温研磨的复合粉末作为增强材料引入到常规的铝合金中,以增强材料。固结后,结果是用包裹在纳米晶Al中的B_4C颗粒增强的块状Al基复合材料。该复合材料显示出大大提高的强度和刚度。

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