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Fabrication of Al7075-Al_2O3_(np)-based metal matrix composites with a high solid fraction for thixoforming

机译:高固相分数触变成型Al7075-Al_2O3_(np)基金属基复合材料的制备

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摘要

For thixoforming, it is necessary to have a good microstructure of fine, uniform, and globular grains in a semisolid range. In this study, the nano-Al2O3(Al2O3np)/Al7075 composites with a high solid fraction were fabricated by specially made Al2O3np containing Mg powders and semisolid ultrasonic vibration (SSUV) process. The influence of SSUV technology on primary alpha-Al grain and second phase in the composites was investigated. Microstructural studies revealed that a good semisolid slurry with an average grain size of 73 mu m, a shape factor of 0.84, and a solid fraction of 0.715 could be obtained. Also, it could be shown that SSUV affected largely the size and type of the second phase as well as growth and nucleation of the primary alpha-Al grain. TEM analysis revealed that there are well-defined crystallographic orientation relationships between the second phases and alpha-Al, suggesting enhanced heterogeneous nucleation in Al7075 alloys. Moreover, mechanisms involved in the development of microstructure were discussed.
机译:为了进行触变性,必须具有半固态范围内的细小,均匀和球状晶粒的良好微观结构。本研究采用特殊制备的含镁粉的Al2O3np和半固态超声振动(SSUV)工艺制备了高固含量的纳米Al2O3(Al2O3np)/ Al7075复合材料。研究了SSUV技术对复合材料中初生Al-Al晶粒和第二相的影响。微观结构研究表明,可以获得良好的半固体浆料,其平均粒径为73μm,形状因子为0.84,固体分数为0.715。同样,可以证明,SSUV在很大程度上影响了第二相的尺寸和类型以及主要的Al-Al晶粒的生长和成核。 TEM分析表明,第二相与α-Al之间存在明确的晶体取向关系,表明Al7075合金中增强的异相成核作用。此外,讨论了参与微观结构发展的机制。

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