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Modification of rubber surface with DLC thin films for low friction and self lubrication

机译:用DLC薄膜改造橡胶表面,用于低摩擦和自润滑

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Thin films of hydrogenated diamond-like carbon (DLC) have been deposited on hydrogenated nitrile butadiene rubber (HNBR) via magnetron-enhanced plasma chemical vapor deposition (ME-PCVD). Pre-deposition plasma treatment of HNBR substrate is proven to be crucial for the improvement of film performance due to enhanced interfacial adhesion. Moreover, enhancement of concurrent ion impingement via magnetron sputtering of graphite in poisoning condition raises further the adhesion and hardness of the films. The columnar structure and the crack network developed during deposition enhance the flexibility of DLC thin films and exhibit strain tolerance up to 5%. After unloading from 50% strain stretch, thin DLC films of ~300nm thickness still adhere very well on the rubber substrates and no spallation or delamination is observed. The thin DLC film on 400V plasma treated HNBR rubber exhibits very low coefficient of friction of 0.175 under dry sliding against Φ6mm steel ball (compared to >1 of uncoated HNBR rubber). After tribotests even at high normal load of 3N, almost no damage can be seen on the films. Such tribological property is even better than that of 1 μm thick DLC or Me-DLC coated rubbers.
机译:通过磁控管增强的等离子体化学气相沉积(ME-PCVD)沉积氢化金刚石样碳(DLC)的薄膜。被证明,由于增强的界面粘附而被证明对HNBR基板的预沉积等离子体处理对薄膜性能的提高至关重要。此外,在中毒状态下通过磁控溅射通过磁控溅射的同时离子冲击提高了薄膜的粘附性和硬度。在沉积期间开发的柱状结构和裂缝网络增强了DLC薄膜的灵活性,并且表现出高达5%的应变耐受性。从50%应变拉伸卸载后,〜300nm厚的薄DLC薄膜仍然很好地粘附在橡胶基材上,并且没有观察到椎间壳或分层。在400V等离子体处理的HNBR橡胶上的薄DLC膜在干燥滑动下对φ6mm钢球的干滑动(与未涂覆的HNBR橡胶相比)表示非常低的摩擦系数。在摩擦摩擦之后,即使在3N的高正常负载下,电影上几乎没有损坏。这些摩擦性质甚至比1μm厚的DLC或ME-DLC涂覆的橡胶更好。

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