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Effects of Y{sub}2O{sub}3 addition on microstructure, mechanical properties, electrochemical behavior, and resistance to corrosive wear of aluminum

机译:Y {sub} 2O {sub} 3的添加对铝的微观结构,力学性能,电化学行为和耐腐蚀性的影响

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摘要

Aluminum has found many engineering applications due to its great formability, low density and high resistance to corrosion. Since aluminum is not very strong compared to other structural materials, it is usually strengthened by introducing second phases, reinforcing particles or fibers. The objective of this work is to strengthen aluminum without decreasing its corrosion resistance. Yttria is selected as reinforcing particles. It is demonstrated that by adding yttria particles, aluminum can be strengthened with improved polarization behavior and higher resistance to corrosive wear in sulfuric acid and sodium chloride solutions. Microstructure of aluminum becomes finer with an increase in yttria content. However, the added yttria particles are not observed in the modified aluminum. Instead, a new phase, Al{sub}3Y, is formed, which may result from possible decomposition or melting of the yttria particles during an arc melting process. The improved properties of aluminum by the yttria addition may thus be attributed to the formation of Al{sub}3Y phase, possible residual yttrium in the Al matrix, and the resultant finer microstructure.
机译:铝由于其出色的可成型性,低密度和高耐腐蚀性而已找到了许多工程应用。由于铝与其他结构材料相比不是很坚固,因此通常可以通过引入第二相,增强颗粒或纤维来增强铝的强度。这项工作的目的是在不降低铝的耐腐蚀性的情况下增强铝的强度。选择氧化钇作为增强颗粒。结果表明,通过添加氧化钇颗粒,可以增强铝的极化性能,并在硫酸和氯化钠溶液中具有更高的耐腐蚀性。随着氧化钇含量的增加,铝的微观结构变得更细。但是,在改性铝中未观察到添加的氧化钇颗粒。而是形成了新相Al {sub} 3Y,这可能是由于电弧熔化过程中氧化钇颗粒可能的分解或熔化而导致的。因此,通过添加氧化钇而改善的铝性能可归因于Al {sub} 3Y相的形成,Al基体中可能存在的残留钇,以及得到的更精细的微观结构。

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