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Microstructural Evolution and Strengthening Mechanism of SiC/Al Composites Fabricated by a Liquid-Pressing Process and Heat Treatment

机译:液相压铸热处理后SiC / Al复合材料的组织演变及强化机理

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摘要

Aluminum alloy (Al7075) composites reinforced with a high volume fraction of silicon carbide (SiC) were produced by a liquid-pressing process. The characterization of their microstructure showed that SiC particles corresponding to a volume fraction greater than 60% were uniformly distributed in the composite, and Mg Si precipitates were present at the interface between the matrix and the reinforcement. A superior compressive strength (1130 MPa) was obtained by an effective load transfer to the hard ceramic particles. After solution heat treatment and artificial aging, the Mg Si precipitates decomposed from rod-shaped large particles to smaller spherical particles, which led to an increase of the compressive strength by more than 200 MPa. The strengthening mechanism is discussed on the basis of the observed microstructural evolution.
机译:通过液体压制工艺生产了高体积分数的碳化硅(SiC)增强的铝合金(Al7075)复合材料。其微观结构的表征表明,对应于大于60%的体积分数的SiC颗粒均匀地分布在复合物中,并且Mg Si析出物存在于基体与增强材料之间的界面处。通过有效地将载荷转移到硬质陶瓷颗粒上,可获得卓越的抗压强度(1130 MPa)。经过固溶热处理和人工时效后,Mg Si沉淀从棒状大颗粒分解为较小的球形颗粒,从而使抗压强度提高了200 MPa以上。在观察到的微观结构演变的基础上讨论了强化机理。

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