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Tribological behavior of DLC films and duplex ceramic coatings under different sliding conditions

机译:不同滑动条件下DLC薄膜和双工陶瓷涂层的摩擦学行为

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摘要

Diamond-like carbon (DLC) films are effectively utilized to improve the tribological properties of materials due to their low friction coefficient, good wear resistance and high hardness. In recent years, different pre-treatments such as plasma assisted diffusional processes have been used to increase long-term durability of these coatings. In the present work, DLC films were deposited on untreated and plasma nitrided AISI 4140 low-alloy steel samples using physical vapor deposition method (PVD). The effect of nitride layers on the structural and mechanical properties of DLC films was examined by XRD, SEM, microhardness tester and reciprocating tribotester. The wear tests were performed under dry, saltwater and lubricant environments. The microhardness results indicated that surface hardness considerably increased after duplex treatment and this caused to increase plastic deformation resistance of the material. The reciprocating test results showed that DLC films deposited on untreated and plasma nitrided samples reduced the coefficient of friction because of the formation of transfer film between sliding/mating surfaces. Also, wear rates improved significantly after duplex treatment in consequence of high plastic deformation resistance of duplex treated samples. The highest wear resistance was obtained in lubricated condition while the lowest wear resistance was for the samples tested in dry conditions.
机译:菱形碳(DLC)薄膜有效地利用了由于其低摩擦系数,良好的耐磨性和高硬度而改善材料的摩擦学性质。近年来,不同的预处理如等离子体辅助扩散过程已被用于增加这些涂层的长期耐久性。在本作工作中,使用物理气相沉积法(PVD)沉积在未处理和等离子体氮化AISI 4140低合金钢样品上的DLC薄膜。 XRD,SEM,微硬度测试仪和往复TREDERTER检查氮化物层对DLC膜的结构和力学性能的影响。在干燥,盐水和润滑剂环境下进行磨损试验。微硬度结果表明,双相处理后表面硬度显着增加,这使得这使得提高材料的塑性变形性。往复试验结果表明,由于在滑动/配合表面之间的形成,沉积在未处理和等离子体氮化样品上的DLC膜降低了摩擦系数。此外,双工治疗后,磨损率显着改善了双相处理样品的高塑性变形性。在润滑条件下获得最高耐磨性,而在干燥条件下测试的样品最低的耐磨性是最低的耐磨性。

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