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Tribochemical Interactions between Carbon Nanotubes and ZDDP Antiwear Additive during Tribofilm Formation on Uncoated and DLC-Coated Steel

机译:碳纳米管与ZDDP抗磨添加剂之间的杂散与DLC涂层钢中呋喃形成抗磨添加剂之间的杂色化学相互作用

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The data from the authors’ earlier investigations show that molecules of zinc dithiophosphate (ZDDP) added to a lubricant can absorb energy emitted by a solid surface, which is where triboreactions occur. If the lubricant contains structures able to conduct energy, the ZDDP reactions can occur even at a relatively large distance from the solid surface, which should increase the effectiveness of ZDDP as an antiwear additive. The purpose of this paper was to verify the thesis that the tribocatalytic effect depends on the ability of the solid surface to emit electrons/energy and the ability of ordered molecular structures, such as carbon nanotubes (CNTs), to conduct energy and, most likely, to enhance the energy transfer. The tribological tests were performed using a TRB 3 tribotester for 100Cr6 steel balls and uncoated or a-C:H coated HS6-5-2C steel discs. Polyalphaolefin 8 (PAO8) and PAO8 mixed with ZDDP and CNTs were used as lubricants. The results of the tribological tests suggested that: (a) the effect of the interactions between ZDDP and CNTs was clearly visible; (b) the structure and properties of the solid surface layer had a significant influence on the antiwear action of the ZDDP additive.
机译:来自作者之前的研究的数据表明,加入润滑剂的二硫代磷酸锌(ZDDP)的分子可以吸收由固体表面发出的能量,这是患有二次思路的发生。如果润滑剂含有能够传导能量的结构,即使在距离固体表面的相对大的距离中也可以发生ZDDP反应,这应该增加ZDDP作为抗磨添加剂的有效性。本文的目的是验证Tribocatalytic效果取决于固体表面发射电子/能量的能力以及有序分子结构,如碳纳米管(CNT),以进行能量和最有可能的能力,增强能量转移。使用TRB 3 TREDETERSTER进行摩擦学检测,用于100CR6钢球和未涂覆的或A-C:H涂覆的HS6-5-2C钢盘。聚α烯烃8(PAO8)和与ZDDP和CNT混合的PAO8用作润滑剂。摩擦学检测结果表明:(a)ZDDP和CNT之间的相互作用的影响清晰可见; (b)固体表面层的结构和性质对ZDDP添加剂的抗磨作用有显着影响。

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