ISSN   1004-0595

CN  62-1224/O4

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掺杂Ni@CeO2颗粒增强原位TiC/Ni复合材料的耐磨性能

Enhanced Wear Resistance of In-Situ TiC/Ni Composites by Doping Ni@CeO2 Particles

  • 摘要: 采用无压反应烧结法制备了不同Ni@CeO2含量的原位TiC/Ni复合材料,研究了Ni@CeO2对复合材料摩擦学行为的影响. 随着Ni@CeO2质量分数从0%增加到0.6%,Ce溶解到TiC颗粒中,导致硬度从632 HV增加至701 HV. 引入1%的Ni@CeO2会降低结构的完整性,导致硬度降低至646 HV. TiC/Ni 复合材料的磨损机理包括分层磨损、氧化磨损、粘着磨损和磨粒磨损. 当Ni@CeO2的质量分数从0%增加到0.6%时,由于硬度和抗氧化性提高,磨损机制变为分层磨损、氧化磨损和黏着磨损. 在含0.6% Ni@CeO2的复合材料上形成了连续致密的摩擦层,分层磨损和氧化磨损减弱,从而降低了摩擦系数和磨损率. Ni@CeO2的添加对复合材料的硬度和抗氧化性有明显的影响,这对摩擦过程中复合材料摩擦层的形成至关重要. 因此,通过添加适量的Ni@CeO2可以有效提高TiC/Ni复合材料的摩擦学性能.

     

    Abstract: The in-situ TiC/Ni composites with different Ni@CeO2 mass fraction were fabricated by pressureless reactive sintering method, and the effect of Ni@CeO2 on the tribological perfermance of composites were studied. The Ce dissolved into TiC particles, leading to the increased hardness from 632 HV to 701 HV, as the Ni@CeO2 mass fraction increased from 0 to 0.6%. The introduction of 1% Ni@CeO2 results in diminished structural integrity, inducing the reduced hardness to 646 HV. The wear mechanism of TiC/Ni composites included delamination wear, oxidative wear, adhesive wear and abrasive wear. As the Ni@CeO2 mass fraction increased from 0 to 0.6%, the wear mechanism changed to delamination wear, oxidative wear and adhesive wear, due to the higher hardness and oxidation resistance. The continuous and dense tribolayer was formed on composites with 0.6% Ni@CeO2, and the delamination and oxidation wear were diminished, leading to the lower friction coefficient and wear rate. The addition of Ni@CeO2 presented obvious effect on the hardness and oxidation resistance of composites, which was crucial to the formation of tribolayer on composites during the friction process. Therefore, the tribological performance of TiC/Ni composite could be effectively enhanced by adding suitable amount of Ni@CeO2.

     

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