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Microstructures and Mechanical properties of Al-Al_2O_3 Composites Processed by Disk-HPT and Ring-HPT

机译:磁盘HPT和环HPT处理Al-Al_2O_3复合材料的微观结构和力学性能

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Al-Al_2O_3 composites were produced through consolidation of Al micrometer powders and Al_2O_3 nano-powders using high-pressure torsion (HPT) with disk-type samples (Disk-HPT) and ring-type samples (Ring-HPT). Pure Al powders were mixed with a 30% volume fraction of Al_2O_3 powders by ball milling (BM). HPT was conducted at room temperature with a rotation speed of 1 rpm under a pressure of 6 GPa for disk samples and 3 GPa for ring samples. The composites were also processed by HPT without BM for comparison. Agglomeration of Al_2O_3 particles became diminished and the dispersion of nano-sized Al_2O_3 particles became finer and more uniform by combination of BM and Ring-HPT. This combined use is more effective than Disk-HPT with BM to obtain a uniform Al_2O_3 dispersion in the Al-Al_2O_3 nanocomposites and thus to improve mechanical properties.
机译:通过使用高压扭转(HPT)和盘式样品(盘-HPT)和环型样品(环-HPT)通过高压扭转(HPT)固结Al-Al_2O_3复合材料。将纯Al粉末与球磨(BM)与Al_2O_3粉末的30%体积分数混合。 HPT在室温下在室温下在6GPa的压力下进行1rpm的转速,用于盘样样品和3GPa用于环样品。复合材料也通过HPT处理而没有BM以进行比较。通过BM和环HPT的组合,Al_2O_3颗粒的凝聚变化,纳米尺寸的Al_2O_3颗粒的分散变细,更均匀。这种组合使用比使用BM的盘HPT更有效,得到Al-Al_2O_3纳米复合材料中的均匀Al_2O_3分散体,从而提高机械性能。

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