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Fretting wear resistance of DLC hard coatings deposited on nitrided martensitic stainless steel

机译:氮化马氏体不锈钢上沉积的DLC硬质涂层的抗微动磨损性

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In this work, the fretting wear behavior and adhesion of DLC coatings deposited by PACVD on nitrided and non-nitrided martensitic stainless steels were studied. Fretting wear tests were carried out with different duration and loads and pin-on-disk was also performed. The adhesion was evaluated by Rockwell C indentation and scratch test with constant and variable loads. The coating thickness was 2.5μm and the nitrided layer, 11μm. The coating hardness and Young's Modulus were about 16 and 110GPa, respectively. The duplex samples resulted with better adhesion than the only coated samples in all test conditions. In the scratch test, the critical load in the duplex sample was 58N and in the coated sample, 12N, showing a brittle failure mode. In the Rockwell C indentation test, the adhesion was better in the duplex sample because the nitriding treatment changed the failure mode of the system. The wear resistance was also related to adhesion, since in the experiments with high loads and long durations adhesive failures could be detected when stresses reached the interface and the substrate. In the duplex sample, the nitrided case, with higher load bearing capacity than the substrate, resulted in a better wear behavior of the system.
机译:在这项工作中,研究了通过PACVD沉积在氮化和未氮化马氏体不锈钢上的DLC涂层的微动磨损行为和附着力。微动磨损试验在不同的持续时间和负载下进行,还进行了销钉在磁盘上。通过Rockwell C压痕和划痕试验在恒定和可变载荷下评估粘附力。涂层厚度为2.5μm,氮化层为11μm。涂层硬度和杨氏模量分别为约16和110GPa。在所有测试条件下,双相样品的粘合性均优于仅涂布样品。在划痕测试中,双相样品的临界载荷为58N,涂层样品的临界载荷为12N,表现出脆性破坏模式。在Rockwell C压痕测试中,由于氮化处理改变了系统的失效模式,因此双相试样的粘合性更好。耐磨性也与附着力有关,因为在高负载和长持续时间的实验中,当应力到达界面和基材时,可以检测到附着力破坏。在双相样品中,渗氮的情况比基体具有更高的承载能力,从而导致系统具有更好的磨损性能。

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