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Two-Layer Nanocomposite TiC-Based Coatings Produced by a Combination of Pulsed Cathodic Arc Evaporation and Vacuum Electro-Spark Alloying

机译:脉冲阴极电弧蒸发和真空电火花合金化相结合制备的两层纳米复合TiC基涂层

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摘要

A novel two-stage technology combining vacuum electro-spark alloying (VESA) and pulsed cathodic arc evaporation (PCAE) was approbated for the deposition of TiC-based coatings in inert (Ar) and reactive (C H ) atmospheres. The deposition was carried out using a TiC-NiCr-Eu O electrode and 5140 steel substrates. Structural, elemental, and phase compositions of the deposited coatings were investigated by scanning electron microscopy, energy-dispersive spectrometry, and X-ray diffraction. The mechanical properties of the coatings were measured by nanoindentation using a 4 mN load. The tribological properties of the coatings were measured using the pin-on-disc setup in air and in distilled water at a 5 N load. The experimental data suggest that VESA coatings are characterized by surface defects, a hardness of 12.2 GPa, and a friction coefficient of 0.4. To ensure good adhesion between the VESA coating and the upper layer containing diamond-like carbon (DLC), an intermediate layer was deposited by PCAE in the Ar atmosphere. The intermediate layer had a hardness of up to 31 GPa. The upper layer of the coating ensured a low and stable friction coefficient of 0.2 and high wear resistance due to the formation of an sp –sp bound carbon phase. Multilayer TiC-based coating with the upper DLC layer, in addition to high tribological properties, was characterized by the lowest corrosion current density (12 μA/cm ).
机译:结合真空电火花合金化(VESA)和脉冲阴极电弧蒸发(PCAE)的一种新颖的两阶段技术被推荐用于在惰性(Ar)和反应性(C H)气氛中沉积TiC基涂层。使用TiC-NiCr-Eu O电极和5140钢基底进行沉积。通过扫描电子显微镜,能量分散光谱和X射线衍射研究了沉积涂层的结构,元素和相组成。涂层的机械性能通过使用4 mN负载的纳米压痕法测量。使用针盘式设置在空气和5 N负载的蒸馏水中测量涂层的摩擦学性能。实验数据表明,VESA涂层的特征是表面缺陷,硬度为12.2 GPa,摩擦系数为0.4。为了确保VESA涂层与包含类金刚石碳(DLC)的上层之间具有良好的粘合性,在Ar气氛中通过PCAE沉积了一个中间层。中间层的硬度最高为31 GPa。由于形成sp -sp结合碳相,涂层的上层确保了0.2的低而稳定的摩擦系数和高的耐磨性。除具有较高的摩擦学性能外,具有上层DLC层的多层TiC基涂层的特征还在于最低的腐蚀电流密度(12μA/ cm)。

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