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Preparation and surface modification of submicron YAl2 particles by mixed milling with magnesium for fabricating YAl2p/MgLiAl composites

机译:与镁混合研磨制备亚微米YAl2颗粒及其表面改性,以制备YAl2p / MgLiAl复合材料

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摘要

A new process for the preparation and surface modification of submicron YAl2 intermetallic particles was proposed to control the agglomeration of ultrafine YAl2 particles and interface in the fabrication of YAl2p/MgLiAl composites. The morphological and structural evolution during mechanical milling of YAl2 powders (< 30 μm) with magnesium particles (~ 100 μm) has been characterized by scanning electron microscopy, transmission electron microscopy, and X-ray diffraction. The results show that YAl2 particles are refined to submicron scale and separately cladded in magnesium coatings after mixed milling with magnesium particles for 20 h. Mechanical and metallurgical bonds have been found in YAl2/Mg interfaces without any interface reactions. Both the refining and mechanical activation efficiencies for YAl2 particles are enhanced, which may be related to the addition of magnesium particles leading to atomic solid solution and playing a role as “dispersion stabilizer”.
机译:提出了一种制备亚微米YAl2金属间化合物的新方法和表面改性的新方法,以控制YAl2p / MgLiAl复合材料的制备过程中超细YAl2颗粒的团聚和界面的形成。通过扫描电子显微镜,透射电子显微镜和X射线衍射表征了YAl2粉末(<30μm)与镁颗粒(〜100μm)的机械研磨过程中的形貌和结构演变。结果表明,将YAl2颗粒细化至亚微米级,并在与镁颗粒混合研磨20小时后分别包覆在镁涂层中。在YAl2 / Mg界面中发现了机械和冶金结合,没有任何界面反应。 YAl2颗粒的提纯和机械活化效率均得到增强,这可能与添加镁颗粒有关,从而导致原子固溶体并起到“分散稳定剂”的作用。

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