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Influence of substrate treatment on the tribological properties of DLC coatings

机译:基材处理对DLC涂层的摩擦学性能的影响

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摘要

Due to the very thin nature of DLC coatings, the substrate must carry the main part of the applied load. If the substrate has insufficient strength to carry the contact load and thus support the coating, plastic deformation will occur, leading to premature failure of the coating. The challenge to improve the properties of hard DLC coatings by thermo-chemical pre-treatment of this substrate has gained much attention in recent years, leading to a new method called duplex treatment. In the present study, a hydrogen-free hard carbon coating deposited on plasma nitrided AISI 4140 steel was investigated with respect to microhardness residual stress, scratch adhesion and dry sliding wear resistance. The pin-on-disc results showed that nitriding of the substrate improves the wear resistance of the hydrogen-free hard carbon coating as compared to the hardened substrate. The improvement can be related to the increased load carrying capacity of the steel substrate and to improved coating to substrate adhesion.
机译:由于DLC涂层的性质非常薄,因此基材必须承担所施加载荷的主要部分。如果基材的强度不足以承受接触载荷并因此无法支撑涂层,则会发生塑性变形,从而导致涂层过早失效。近年来,通过对该基材进行热化学预处理来改善硬质DLC涂层性能的挑战已引起广泛关注,这导致了一种称为双工处理的新方法。在本研究中,研究了在等离子氮化的AISI 4140钢上沉积的无氢硬碳涂层的显微硬度残余应力,刮擦附着力和干滑耐磨性。针对盘的结果表明,与硬化基板相比,基板的氮化提高了无氢硬碳涂层的耐磨性。所述改善可以与钢基底的承载能力的增加以及涂层对基底的粘附性的改善有关。

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