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首页> 外文期刊>Tribology Letters >In Situ NbC Particulate-Reinforced Iron Matrix Composite: Microstructure and Abrasive Wear Characteristics
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In Situ NbC Particulate-Reinforced Iron Matrix Composite: Microstructure and Abrasive Wear Characteristics

机译:原位NbC颗粒增强铁基复合材料的显微组织和磨料磨损特性

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摘要

An niobium carbide (NbC) particle-reinforced iron matrix composite was fabricated by compounding gray cast iron with niobium wires through an in situ technique comprised of an infiltration casting process and a subsequent heat treatment. The NbC particles in the reinforcement phase were synthesized in situ through the reaction between niobium from niobium wires and carbon from the graphite phases produced by the heat treatment in gray cast iron. The microstructure and wear-resistance of the bulk niobium particle-reinforced iron matrix composite was studied at different NbC particle volume fractions (8, 15, 22, and 28 vol%), by scanning electron microscope, X-ray diffraction, and a wear tester. The NbC particles were observed to form tiny cuboids and nearly spherical particles which were evenly distributed in the matrix. The particle size of the NbC reinforcement was about 0.3–3.5 μm. The relative wear resistance of the bulk composite increased with increasing NbC volume fraction, and the wear resistance of the composite was 5.9-fold higher than that of the gray cast iron under a 20N load and at a 28 vol% volume fraction. Wear performance of the composite at different NbC particle volume fraction values was also analyzed.
机译:通过将灰铸铁与铌丝通过包括渗透铸造工艺和随后的热处理的原位技术复合,制备了碳化铌(NbC)颗粒增强的铁基复合材料。通过灰铸铁中热处理产生的铌丝中的铌和石墨相中的碳之间的反应,原位合成了增强相中的NbC颗粒。通过扫描电子显微镜,X射线衍射和磨损研究了在不同NbC颗粒体积分数(8、15、22和28 vol%)下铌基颗粒增强铁基复合材料的微观结构和耐磨性。测试员。观察到NbC颗粒形成微小的长方体和接近球形的颗粒,均匀分布在基质中。 NbC增强材料的粒径约为0.3-3.5μm。随NbC体积分数的增加,块状复合材料的相对耐磨性增加,在20N负载和体积分数为28vol%的情况下,复合材料的耐磨性比灰口铸铁高5.9倍。还分析了复合材料在不同NbC颗粒体积分数下的磨损性能。

著录项

  • 来源
    《Tribology Letters》 |2012年第2期|253-259|共7页
  • 作者单位

    School of Mechanical and Electrical Engineering Xi’an University of Architecture and Technology Xi’an 710055 People’s Republic of China;

    School of Material Science and Engineering Xi’an University of Technology Xi’an 710048 People’s Republic of China;

    School of Material Science and Engineering Xi’an University of Technology Xi’an 710048 People’s Republic of China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Casting; Abrasive wear; Wear mechanisms;

    机译:铸造;磨料磨损;磨损机理;

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