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Enhanced precipitation hardening in an alumina reinforced Al-Cu alloy matrix composite

机译:氧化铝增强的Al-Cu合金基复合材料中增强的沉淀硬化

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An alumina reinforced Al-Cu alloy matrix composite was prepared by reaction sintering of Al and CuO powders. Precipitation hardening by further aging the composite at 250 ℃ was studied. In situ formed micron-sized alumina particles were present in the Al(Cu) matrix of the un-aged composite, while additional nanometer-sized Al_2Cu rods were obtained in the matrix of the aged composite. Both hardness and bending strength were enhanced after the composite was aged. In the bending test, the sample was plastically deformed before fracture. Microstructural analysis revealed that the size of dimples found in the fracture mouth of the un-aged composite was micron-sized, and that in the aged composite was much smaller. It was evident that when the composite was subjected to stress, micron-sized alumina particles were responsible for the formation of cracks in the un-aged sample, while in the aged sample, Al_2Cu nano-rods were the dominant nucleation sites for crack growth.
机译:通过Al和CuO粉末的反应烧结制备了氧化铝增强的Al-Cu合金基复合材料。研究了复合材料在250℃下进一步老化的沉淀硬化。原位形成的微米级氧化铝颗粒存在于未老化的复合材料的Al(Cu)基体中,而另外的纳米级Al_2Cu棒则存在于未老化的复合材料的基体中。复合材料老化后,硬度和弯曲强度均得到提高。在弯曲试验中,样品在断裂之前发生塑性变形。显微组织分析表明,在未老化的复合材料的断裂口中发现的凹坑尺寸为微米级,而在老化的复合材料的断裂口中则更小。显然,当复合材料受到应力时,微米尺寸的氧化铝颗粒是导致未时效样品中裂纹形成的原因,而在时效样品中,Al_2Cu纳米棒是裂纹扩展的主要成核部位。

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