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Preparation of titanium carbide nanosheet and tribological properties of copper matrix composites

机译:铜基复合材料碳化钛纳米片和摩擦学性能的制备

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摘要

TiC nanosheets with a thickness of about 50 nm were successfully prepared via solvent thermal etching Ti3AlC2 in hydrofluoric acid solution at 120 degrees C. TiC reinforced copper-matrix composites with a content of 3, 5, 7, 9, 10, and 12 wt% were prepared by powder metallurgy with copper powder and TiC nanosheet as raw materials. The friction and wear behaviours of copper matrix composites were tested on a ball on disc under dry sliding conditions. The results showed that TiC particles were evenly distributed on the substrate and had a good combination with the substrate. The friction coefficient and wear scar widths of the composites gradually decreased with the increase of TiC nanosheet content, the maximum reduction of friction and wear was achieved under the content of 7 wt% for the TiC nanosheets. The increase in load causes the increase of friction coefficient and wear scar widths. The wear of pure copper is mainly adhesive wear and peel wear. The addition of TiC nanosheets improves the bearing capacity of copper matrix composites, and the wear mechanism is mainly abrasive wear.
机译:在120摄氏度的氢氟酸溶液中成功地制备厚度为约50nm的Tic纳米片,其含量为3,5,7,9,10和12wt%的TiC增强铜基质复合材料用铜粉末和TIC纳米片作为原料制备。在干式滑动条件下在盘上的球上测试铜基质复合材料的摩擦和磨损行为。结果表明,TIC颗粒均匀地分布在基材上并与基材具有良好的组合。随着TIC纳米片含量的增加,复合材料的摩擦系数和磨损瘢痕宽度逐渐降低,在TIC纳米片的含量为7wt%的含量下实现了摩擦和磨损的最大降低。负载的增加导致摩擦系数的增加和磨损瘢痕宽度。纯铜的磨损主要是粘合剂磨损和剥离。加入Tic纳米片改善了铜基复合材料的承载能力,磨损机构主要是磨料磨损。

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  • 来源
    《Micro & nano letters》 |2020年第4期|245-249|共5页
  • 作者

    Xue Maoquan;

  • 作者单位

    Changzhou Inst Ind Technol Changzhou 213164 Jiangsu Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
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