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Microstructural and tribological evaluation of potential self-lubricating coatings with MoS_2MnS additions produced by the plasma transferred arc technique

机译:等离子转移弧技术制备的MoS_2 MnS添加剂对潜在自润滑涂层的显微组织和摩擦学评估

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Metal matrix composite coatings with potential self-lubricating properties were produced on plain steel substrates using the plasma transferred arc technique (PTA). Layers of approximately 1 mm thickness and with various compositions were obtained with additions of MoS_2 and MnS compounds, which are known to act as solid lubricants in a number of applications. Following the microstructural characterization, the tribological behavior of the coatings was investigated using pin-on-disk experiments. Experimental results indicated that the addition of MnS was effective in reducing the friction coefficient and the wear rate of the coatings in comparison to the steel substrate, whereas the MoS_2 was ineffective, due to its instability and subsequent redistribution of Mo and S elements during the solidification process.
机译:使用等离子转移弧技术(PTA)在普通钢基材上生产具有潜在自润滑性能的金属基复合涂层。通过添加MoS_2和MnS化合物,可以获得厚度约为1 mm且具有各种组成的层,这些化合物在许多应用中均起着固体润滑剂的作用。在微观结构表征之后,使用针盘试验研究了涂层的摩擦学行为。实验结果表明,与钢基底相比,添加MnS可以有效降低涂层的摩擦系数和磨损率,而由于固化过程中Mo和S元素的不稳定以及随后的重新分布,MoS_2无效处理。

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