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Consolidation of Al2O3/Al Nanocomposite Powder by Cold Spray

机译:冷喷涂固结Al2O3 / Al纳米复合粉

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摘要

While the improvement in mechanical properties of nanocomposites makes them attractive materials for structural applications, their processing still present significant challenges. In this paper, cold spray was used to consolidate Al\u2082O\u2083/Al nanocomposite powders obtained from mechanical milling. The microstructure and nanohardness of the feedstock powders as well as of the resulting coatings were analysed. The results show that the large increase in hardness of the Al powder after mechanical milling is preserved after cold spraying. Good quality coating with low porosity is obtained from milled Al. However, the addition of Al\u2082O\u2083 to the Al powder during milling decreases the powder nanohardness. This lower hardness is attributed to non-optimised milling parameters for proper Al\u2082O\u2083 embedding and dispersion in Al and results in a lower coating hardness compared with the milled Al coating. The coating produced from the milled Al\u2082O\u2083/Al mixture also shows lower particle cohesion and higher amount of porosity. The overall results are promising and it is believed that an optimization of Al milling with Al\u2082O\u2083 will allow production of sound coatings with improved hardness.
机译:尽管纳米复合材料机械性能的提高使它们成为用于结构应用的有吸引力的材料,但其加工仍然提出了巨大的挑战。本文采用冷喷涂法对通过机械研磨获得的Al \ u2082O \ u2083 / Al纳米复合粉末进行固结。分析了原料粉末以及所得涂层的微观结构和纳米硬度。结果表明,冷喷涂后,保留了机械研磨后的铝粉硬度大幅增加。从研磨的铝获得低孔隙率的优质涂层。但是,在研磨过程中向Al粉中添加Al \ u2082O \ u2083会降低粉末的纳米硬度。较低的硬度归因于未适当优化的铣削参数,这些参数用于在Al中正确嵌入和分散Al,与铣削的Al涂层相比,导致较低的涂层硬度。由研磨的Al 2 O 3 / Al混合物产生的涂层还显示出较低的颗粒内聚力和较高的孔隙率。总体结果是令人鼓舞的,并且相信用Al 2 O 3 O 2进行Al铣削的最优化将允许生产具有改善的硬度的声音涂层。

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