首页> 外文期刊>Journal of the Japan Petroleum Institute >Tribological Properties of Steel/Steel, Steel/DLC and DLC/DLC Contacts in the Presence of Biodegradable Oil
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Tribological Properties of Steel/Steel, Steel/DLC and DLC/DLC Contacts in the Presence of Biodegradable Oil

机译:钢/钢,钢/ DLC和DLC / DLC触点在可生物降解的油的摩擦性质

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摘要

Tribological properties of tetrahedral diamond-like carbon (ta-C DLC) coating were investigated to assess the effects of the counter surfaces under the boundary condition in the presence of biodegradable oil. The tribological tests were performed using steel/steel, steel/DLC and DLC/DLC contacts, and found that the coefficient of friction was 0.062, 0.059 and 0.048, and the wear loss was 5.57 x 10(-4), 9.81 x 10(-4) and 6.02 x 10(-4) mm(3), respectively. DLC/DLC contacts showed the lowest friction coefficient and steel/steel contacts showed the lowest wear. The high wear of steel/DLC compared to the other two contacts might be due to the high affinity between iron and carbon. The high content of oleic acid may maintain the low friction in self-mated ta-C DLC contacts and tribochemical wear was prevented by nano-scale graphitization. Therefore, material combinations are important for tribological properties and canola oil is an effective lubricant for contacts coated with ta-C DLC films.
机译:研究了四面体金刚石状碳(TA-C DLC)涂层的摩擦学性质,以评估在可生物降解的油状下的边界条件下的抗衡围表面的影响。使用钢/钢,钢/ DLC和DLC / DLC触点进行摩擦学检验,发现摩擦系数为0.062,0.059和0.048,磨损损失为5.57×10(-4),9.81 x 10( -4)和6.02×10(-4)mm(3)。 DLC / DLC触点显示最低的摩擦系数和钢/钢触点显示出最低的磨损。与其他两个触点相比,钢/ DLC的高磨损可能是由于铁和碳之间的高亲和力是导致的。高含量的油酸可以保持自交配的TA-C DLC触点中的低摩擦,并通过纳米尺度的石墨化防止卷曲化化学磨损。因此,材料组合对于摩擦学性质和CANOLA油是涂有TA-C DLC膜的触点的有效润滑剂。

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