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首页> 外文期刊>Journal of Materials Science >Comparison of Al-Cu-Fe quasicrystalline particle reinforced Al composites fabricated by conventional casting and extrusion
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Comparison of Al-Cu-Fe quasicrystalline particle reinforced Al composites fabricated by conventional casting and extrusion

机译:常规铸造和挤压制备Al-Cu-Fe准晶颗粒增强Al复合材料的比较

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Aluminum matrix composites reinforced by Al62Cu26Fe12 gas atomized powders were produced by conventional metallurgical processes, such as gravity casting with stirring and hot extrusion. This investigation was mainly focused on the dependency of the yield stress at room temperature as a function of the volume fraction of reinforcement, but other variables such as the matrix, coating layer around the particles, and processing were also investigated. For as-extruded composites, the addition of the Al-Cu-Fe particles improved the yield stress, although not dramatically owing to the large particle size. In contrast, it was found that the yield stress was considerably enhanced for the as-cast composites up to 10%(AlCuFe)p, while an asymptotic value was observed afterward. The dominant parameter appeared to be the strength of the matrix, which was found to be proportional to the volume fraction of the reinforcement. These results are discussed in relation with the possible strengthening mechanisms in order to estimate the role of the icosahedral and related crystalline phases on the increase of yield stress. (C) 2001 Kluwer Academic Publishers. [References: 21]
机译:通过传统的冶金工艺,如搅拌下的重力铸造和热挤压,可以生产出由Al62Cu26Fe12气体雾化粉末增强的铝基复合材料。这项研究主要集中在室温下屈服应力与增强材料体积分数之间的关系上,但还研究了其他变量,例如基体,颗粒周围的涂层和加工。对于挤压成型的复合材料,添加Al-Cu-Fe颗粒可改善屈服应力,尽管由于粒径较大而不明显。相比之下,发现铸态复合材料的屈服应力显着提高,最高达到10%(AlCuFe)p,此后观察到了渐近值。主要参数似乎是基体的强度,发现它与增强材料的体积分数成正比。讨论了与可能的强化机制有关的这些结果,以估计二十面体及相关晶相在屈服应力增加中的作用。 (C)2001 Kluwer学术出版社。 [参考:21]

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