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首页> 外文期刊>Industrial Lubrication and Tribology >The problems of resistance to scuffing of heavily loaded lubricated friction joints with WC/C-coated parts
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The problems of resistance to scuffing of heavily loaded lubricated friction joints with WC/C-coated parts

机译:带有WC / C涂层零件的重载润滑摩擦接头的耐擦伤性问题

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Purpose - The purpose of this paper was to explore the mechanisms of scuffing propagation of heavily loaded lubricated friction pair elements coated with low-friction WC/C coating for various material combinations. Design/methodology/approach - The investigations were performed for low-friction coatings WC/C (a-C:H:W) deposited by the reactive sputtering physical vapour deposition (PVD) process. Experiments were carried out using a four-ball tester with continuously increasing loads. Tests were conducted for the following four material combinations: steel/steel tribosystem (all balls uncoated); steel/coating tribosystem (one upper ball uncoated/three lower balls WC/C-coated); coating/steel tribosystem (one upper ball WC/C-coated/three lower balls uncoated); and coating/coating tribosystem (all balls WC/C-coated). Findings - The better scuffing resistance is achieved by coating only one element (coating/steel tribosystem) than all elements (coating/coating tribosystem). The description of scuffing propagation for all investigated tribosystems was done. The high scuffing resistance of the coating/steel tribosystem resulted from reducing the adhesion between rubbing surfaces due to low chemical affinity (similarities) between the steel and the coating material and the presence of solid lubricant in the friction zone. Practical implications - In all cases, when a coating is applied, an increase in scuffing resistance is observed. However, it is better to coat only one element than all. Furthermore, the scuffing resistance for the coating/steel tribosystem is significantly higher than for the steel/coating tribosystem. Originality/value - The main value of this paper is description of scuffing propagation and revealing the new aspects in application of low-friction WC/C coating for heavily loaded lubricated friction pair elements. The overlapping ratio has been defined as an important factor influencing the scuffing resistance of the coated tribosystems.
机译:目的-本文的目的是探讨各种材料组合的低摩擦力WC / C涂层重载润滑摩擦副元件的划痕传播机理。设计/方法/方法-对通过反应溅射物理气相沉积(PVD)工艺沉积的低摩擦涂层WC / C(a-C:H:W)进行了研究。使用负载不断增加的四球测试仪进行实验。对以下四种材料组合进行了测试:钢/钢摩擦系统(所有球均未涂覆);钢/涂层摩擦系统(一个上球未涂层/三个下球WC / C涂层);涂层/钢制摩擦系统(一个上球WC / C涂层/三个下球未涂层);和涂层/涂层摩擦系统(所有球WC / C涂层)。发现-通过仅涂覆一种元素(涂层/钢摩擦系统)比所有元素(涂层/涂层摩擦系统)获得更好的抗划伤性。完成了对所有研究的摩擦系统的磨损的描述。涂层/钢摩擦系统的高耐擦伤性是由于钢与涂层材料之间的化学亲和力低(相似性)低以及摩擦区域中存在固体润滑剂而降低了摩擦表面之间的附着力。实际意义-在所有情况下,涂覆涂料时,均会观察到耐划伤性的增加。但是,最好只涂覆一种元素而不是全部。此外,涂层/钢摩擦系统的耐擦伤性显着高于钢/涂层摩擦系统的耐擦伤性。原创性/价值-本文的主要价值是对磨损的描述,并揭示低摩擦WC / C涂层在重载润滑摩擦副元件上的应用新方面。重叠率已被定义为影响涂覆的摩擦系统的耐擦伤性的重要因素。

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