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Load-carrying capacity evaluation of coating/substrate systems for hydrogen-free and hydrogenated diamond-like carbon films

机译:无氢和氢化类金刚石碳膜的涂层/基材体系的承载能力评估

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摘要

Diamond-like carbon (DLC) coatings have shown excellent tribological properties in laboratory tests. The coatings have also been introduced to several practical applications. However, the functional reliability of the coatings is often weakened by adhesion and load-carrying capacity related problems. In this study the load-carrying capacity of the coating/substrate system has been evaluated. Thc DLC coatings were deposited on stainless steel, alumina and cemented carbide with two differentdeposition techniques: the tetrahedral amorphous carbon (ta-C) coatings were deposited by a pulsed vacuum arc discharge deposition method and the hydrogenated carbon (a-C:H) films by radio frequency (r.f.) plasma deposition method. The load-carryingcapacity of the coated systems was evaluated using a scratch test, Rockwell C-indentation test and ball-on-disc test. The effect of substrate material, substrate hardness, coating type and coating thickness was studied. An increase in substrate hardnessincreased the load-carrying capacity for the coated systems, as expected. The two coating types exhibited different performance under load due to their different physical and mechanical properties. For the load-carrying capacity evaluations theball-on-disc configuration was found to be most suitable.
机译:类金刚石碳(DLC)涂层在实验室测试中显示出优异的摩擦学性能。该涂料也已被引入几种实际应用中。然而,涂层的功能可靠性常常由于粘附和承载能力相关的问题而减弱。在这项研究中,已经评估了涂层/基体系统的承载能力。用两种不同的沉积技术将DLC涂层沉积在不锈钢,氧化铝和硬质合金上:通过脉冲真空电弧放电沉积方法沉积四面体无定形碳(ta-C)涂层,并通过无线电沉积氢化碳(aC:H)膜频率(rf)等离子体沉积方法。使用刮擦测试,洛氏C压痕测试和圆盘测试来评估涂层系统的承载能力。研究了基材材料,基材硬度,涂层类型和涂层厚度的影响。如预期的那样,基材硬度的增加增加了涂层系统的承载能力。两种涂层类型由于其不同的物理和机械性能而在负载下表现出不同的性能。对于承载能力评估,发现圆盘球配置是最合适的。

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