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Magnesium-Based Metal Matrix Nanocomposites - Processing and Properties

机译:基于镁的金属基质纳米复合材料 - 加工和性能

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It is well known that magnesium alloys reinforced with ceramic particles of micro-scale sizes give increased hardness and wear resistance. However, such particles need to be smaller to improve the strength, ductility and creep resistance of alloys. The optimum size of particles for Orowan strengthening is a diameter less than 100 nm. Not only the size of particles, but also their chemical composition and the composition of the alloy are important for the beneficial effect of nanoparticles. The mechanical properties can be tailored with much fewer nanoparticles compared to microparticles, because the interparticle spacing is much smaller. However, with large surface areas compared to their weight and low wettability, any deagglomeration of the nanoparticles in a magnesium melt is difficult to achieve and so requires additional processing, such as by electromagnetic or ultrasound-assisted stirring. This paper presents a short review and some original work on ceramic nanoparticle reinforced magnesium alloys and their properties.
机译:众所周知,用微尺度尺寸的陶瓷颗粒增强的镁合金具有增加的硬度和耐磨性。然而,这种颗粒需要更小以提高合金的强度,延展性和抗蠕变性。用于orowan强化颗粒的最佳尺寸为小于100nm的直径。不仅颗粒的尺寸,而且它们的化学成分和合金的组成对于纳米颗粒的有益效果很重要。与微粒相比,可以用更少的纳米颗粒定制机械性能,因为颗粒间距远小得多。然而,与其重量和低润湿性相比,含镁中的纳米颗粒的任何切片均难以实现,因此需要额外的加工,例如通过电磁或超声辅助搅拌。本文介绍了陶瓷纳米粒子增强镁合金及其性质的简短评论和一些原创作品。

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