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Fabrication and Structure Characterization of Alumina-Aluminum Interpenetrating Phase Composites

机译:氧化铝-铝互穿相复合材料的制备与结构表征

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Alumina-Aluminum composites with interpenetrating networks structure belong to advanced materials with potentially better properties when compared with composites reinforced by particles or fibers. The paper presents the experimental results of fabrication and structure characterization of Al matrix composites locally reinforced via Al2O3 ceramic foam. The composites were obtained using centrifugal infiltration of porous ceramics by liquid aluminum alloy. Both scanning electron microscopy (SEM + EDS) and x-ray tomography were used to determine the structure of foams and composites especially in reinforced areas. The quality of castings, degree of pore filling in ceramic foams by Al alloy, and microstructure in area of interface were assessed.
机译:与由颗粒或纤维增强的复合材料相比,具有互穿网络结构的氧化铝-铝复合材料属于具有更高性能的先进材料。本文介绍了通过Al2O3陶瓷泡沫局部增强的Al基复合材料的制备和结构表征的实验结果。该复合材料是利用液态铝合金通过离心渗透陶瓷制成的。扫描电子显微镜(SEM + EDS)和X射线断层扫描都可用于确定泡沫和复合材料的结构,尤其是在增强区域。评估了铸件的质量,铝合金在陶瓷泡沫中的孔隙填充程度以及界面区域的显微组织。

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