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Processing and Performance Characteristics of Aluminum-Nano Boron Carbide Metal Matrix Nanocomposites

机译:铝-纳米碳化硼金属基纳米复合材料的制备及性能特征

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摘要

In this research work, ultrasonic cavitation-assisted casting process was used to fabricate the aluminum alloy-nano boron carbide metal matrix nanocomposites. The optical microscopy results revealed the refined matrix grains in the microstructure of the aluminum alloy-nano boron carbide composites. Boron carbide nanoparticles were uniformly distributed in the aluminum alloy matrix, which can be confirmed by scanning electron microscopic images. The aluminum alloy-nano boron carbide composites show increased dislocation density, compared to the monolithic alloys, which was observed from the transmission electron microscopic images. The addition of nano-boron carbide in aluminum alloy matrix significantly improved its hardness and tensile strength, while the good ductility and impact resistance of the aluminum alloy was almost retained. The results of the dry sliding wear pin-on-disc tests showed improved wear resistance properties of aluminum alloy-nano boron carbide composites compared to the monolithic aluminum alloys.
机译:在这项研究工作中,超声空化辅助铸造工艺被用来制造铝合金-纳米碳化硼金属基纳米复合材料。光学显微镜结果表明,铝合金-纳米碳化硼复合材料的组织中存在细化的基体晶粒。碳化硼纳米颗粒均匀地分布在铝合金基体中,这可以通过扫描电子显微镜图像确认。与单片合金相比,铝合金-纳米碳化硼复合材料显示出增加的位错密度,这是从透射电子显微镜图像观察到的。在铝合金基体中添加纳米碳化硼可显着提高其硬度和拉伸强度,同时几乎保留了铝合金的良好延展性和抗冲击性。干式滑动销钉圆盘试验的结果表明,与整体式铝合金相比,铝合金-纳米碳化硼复合材料具有更高的耐磨性。

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