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Study of silane-based antiwear additives: Wear and chemistry

机译:硅烷基抗磨添加剂的研究:磨损与化学

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摘要

The chemistry and wear performance of a silane-containing additive in combination with conventional commercial engine oil additives such as zinc dialkyldithiophosphate (ZDDP), calcium-type detergent (Ca detergent), and B- and N-containing dispersant were investigated. The tribological behavior of the low-sulfur base stock 100 N blended with the above additives was investigated using a pin-on-disc Plint friction and wear tester at 100℃. The wear scar width (WSW) of the upper steel pins was determined using an optical microscope. X-ray absorption near-edge structure (XANES) spectroscopy and X-ray photoelectron spectroscopy (XPS) were used to analyze the chemistry and thickness of the thin tribofilm formed on the disc. The morphologies of the wear scars on the lower steel discs were observed using an atomic force microscope (AFM). It was found when the silane additive is mixed with Ca detergent and B- and N-containing dispersant, the antiwear performance of the blend was greatly improved, while the friction coefficient remained almost unchanged. Indeed, the wear performance was comparable to or better than ZDDP on its own, and much better than a commercial oil blend. The silane additive is converted to hydrous SiO_2 by the water in the oil, and this SiO_2 then interacted chemically with the surface and Ca in the detergent under sliding to form a relatively thick tribofilm containing mainly a Ca silicate species. The incorporation of Si and B had little effect on the tribochemistry of ZDDP in the oil blends. When ZDDP and B- and N-containing dispersants were mixed with the silane additive, polyphosphate-type tribofilms, similar to that of ZDDP alone, were formed. However, addition of ZDDP had adverse effects on the wear performance of the silane-based blend.
机译:研究了含硅烷添加剂与常规商业机油添加剂(如二烷基二硫代磷酸锌(ZDDP),钙型去污剂(Ca去污剂)以及含B和N的分散剂)的化学和磨损性能。使用销盘式Plint摩擦磨损测试仪在100℃下研究了掺有上述添加剂的低硫基础油100 N的摩擦学行为。使用光学显微镜确定上部钢销的磨损痕迹宽度(WSW)。 X射线吸收近边缘结构(XANES)光谱和X射线光电子能谱(XPS)用于分析在光盘上形成的摩擦膜的化学性质和厚度。使用原子力显微镜(AFM)观察下钢盘上的磨损痕迹的形态。发现当将硅烷添加剂与Ca洗涤剂和含B和N的分散剂混合时,共混物的抗磨性能大大提高,而摩擦系数几乎保持不变。的确,其磨损性能可与ZDDP媲美或优于ZDDP,并且远优于市售油品混合物。硅烷添加剂被油中的水转化为含水SiO_2,然后该SiO_2在滑动条件下与洗涤剂中的表面和Ca化学相互作用,形成相对较厚的摩擦膜,主要包含硅酸钙物质。 Si和B的掺入对油共混物中ZDDP的摩擦化学影响很小。当将ZDDP和含B和N的分散剂与硅烷添加剂混合时,就形成了与单独ZDDP相似的聚磷酸盐型摩擦膜。然而,添加ZDDP对基于硅烷的共混物的磨损性能具有不利影响。

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