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Fabrication and Fracture Properties of Alumina Matrix Composites Reinforced with Carbon Nanotubes

机译:碳纳米管增强氧化铝基复合材料的制备与断裂性能

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In this study, alumina matrix composites reinforced with carbon nanotubes (CNTs) were fabricated by ultrasonic dispersion, ball milling, mixing, compaction, and sintering processes, and their relative density, electrical resistance, hardness, flexure strength, and fracture toughness were evaluated. 0~3 vol. percent of CNTs were relatively homogeneously dispersed in the composites in spite of the existence of some pores. The three-point bending test results indicated that the flexure strength increased with increasing volume fraction of CNTs, and reached the maximum when the CNT fraction was 1.5 vol. percent . The fracture toughness increased as the CNT fraction increased, and the fracture toughness of the composite containing 3 vol. percent of CNTs was higher by 40 percent than that of the monolithic alumina. According to observation of the crack propagation path after the indentation fracture test, a new toughening mechanism of grain interface bridging-induced CNT bridging was suggested to explain the improvement of fracture toughness in the alumina matrix composites reinforced with CNTs.
机译:在这项研究中,通过超声分散,球磨,混合,压实和烧结工艺制备了由碳纳米管(CNTs)增强的氧化铝基复合材料,并评估了它们的相对密度,电阻,硬度,挠曲强度和断裂韧性。 0〜3卷尽管存在一些孔,但仍有5%的CNT相对均匀地分散在复合材料中。三点弯曲试验结果表明,弯曲强度随着CNT的体积分数的增加而增加,并且当CNT分数为1.5vol时达到最大。百分 。断裂韧性随着CNT分数的增加而增加,并且包含3vol。%的复合物的断裂韧性。碳纳米管的百分比比整体氧化铝高40%。通过对压痕断裂试验后裂纹扩展路径的观察,提出了一种新的晶粒界面桥连引起的CNT桥连的增韧机理,用以解释碳纳米管增强的氧化铝基复合材料断裂韧性的提高。

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