首页> 外文期刊>Journal of the European Ceramic Society >Nanoindentation and tribology of a (Hf-Ta-Zr-Nb-Ti)C high-entropy carbide
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Nanoindentation and tribology of a (Hf-Ta-Zr-Nb-Ti)C high-entropy carbide

机译:A(HF-TA-ZR-NB-TI)C高熵碳化物的纳米indentation和摩擦学

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摘要

A (Hf-Ta-Zr-Nb-Ti)C high-entropy carbide was prepared by ball milling and a two-step Spark Plasma Sintering process, achieving a single-phase ceramic sample with a high relative density of 99.4 %. The wear resistance of the sample was measured by tribology and micro-scale mechanical behaviour was studied by nanoindentation on both the non-deformed and worn surfaces. Grains and the vicinity of grain boundaries exhibited high hardness values of 38.5 +/- 0.5 GPa and 35.5 +/- 1.0 GPa with similar Young's moduli of 562 +/- 11 GPa and 547 +/- 16 GPa, respectively. The dominant wear mechanism was mechanical wear with limited grain pull-out and fracture, and with a localized and thin tribo-layer formation. The specific wear rate exhibited an increase with the increasing load from 2.53.10-6 mm3/Nm at 5 N to 9.03.10-6 mm3/Nm at 50 N. This was correlated to the decrease of nanohardness of the worn surfaces with increasing wear load, which is attributed to the increased number of microcracks.
机译:通过球磨和两步放电等离子烧结工艺制备了(Hf-Ta-Zr-Nb-Ti)C高熵碳化物,获得了相对密度高达99.4%的单相陶瓷样品。通过摩擦学测量试样的耐磨性,并通过纳米压痕法研究未变形和磨损表面的微观力学行为。晶粒和晶界附近的硬度值分别为38.5+/-0.5 GPa和35.5+/-1.0 GPa,杨氏模量分别为562+/-11 GPa和547+/-16 GPa。主要的磨损机制是机械磨损,具有有限的晶粒拔出和断裂,并形成局部且薄的摩擦层。比磨损率随载荷的增加而增加,从5N时的2.53.10-6 mm3/Nm增加到50N时的9.03.10-6 mm3/Nm。这与磨损表面的纳米硬度随磨损载荷的增加而降低有关,这归因于微裂纹数量的增加。

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