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NiAl-Al2O3 intermetallic matrix composite prepared by reactive milling and consolidation of powders

机译:粉末的反应球磨和固结制备的NiAl-Al2O3金属间化合物基复合材料

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摘要

Reactive milling of nickel oxide and aluminium powders corresponding to the stoichiometric reaction 3NiO + 5Al resulted in the formation of intermetallic matrix composite NiAl-Al2O3, with 28 wt% of alumina. Prolongation of the milling process allowed obtaining the microstructure with nanosize range of crystallites of both phases, as showed XRD measurements and TEM observations. The refinement of microstructure was accompanied with an increase of lattice strain as a result of ball milling. The particles size and morphology changed from several tens of micrometers and polyhedron shape observed immediately after the reaction took place, to several micrometers and spherulitic shape after long-term milling.Two consolidation techniques of nanocomposite powders were applied: explosive compaction and hot-pressing under high pressure. Both methods allowed obtaining the samples of high density (up to 99% of theoretical one) and microhardness above 13 GPa. Simultaneously, a nanocrystalline structure of the material was preserved. (C) 2004 Kluwer Academic Publishers.
机译:对应于化学计量反应3NiO + 5Al的氧化镍和铝粉的反应性研磨导致形成金属间基质复合材料NiAl-Al2O3,其中氧化铝占28 wt%。如X射线衍射(XRD)测量和透射电子显微镜(TEM)观察所示,延长研磨过程可得到两相微晶具有纳米级范围的微结构。球磨的结果是显微组织的细化伴随着晶格应变的增加。粒径和形貌从反应后立即观察到的几十微米和多面体形状变化到长期研磨后的几微米和球状形状。纳米复合粉末的两种固结技术:爆炸压实和热压下的热压。高压力。两种方法都可以得到高密度(理论值的99%)和13 GPa以上的显微硬度的样品。同时,保留了材料的纳米晶体结构。 (C)2004 Kluwer学术出版社。

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