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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Properties of tribofilms formed with ashless dithiophosphate and zinc dialkyl dithiophosphate under extreme pressure conditions
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Properties of tribofilms formed with ashless dithiophosphate and zinc dialkyl dithiophosphate under extreme pressure conditions

机译:无灰二硫代磷酸酯和二烷基二硫代磷酸锌在极端压力条件下形成的摩擦膜性能

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Tribological and nanoscale properties of tribofilms from ashless dialkyl dithiophosphates (DDPs) were compared with zinc dialkyl dithiophosphates (ZDDPs) in this study. The tribosurfaces generated from these chemistries were examined using scanning electron microscopy and energy dispersive spectroscopy. The wear debris harvested from the wear tests was examined in a transmission electron microscope in bright field mode with selected area diffraction to examine the crystallinity and nature of the debris particles. Thickness of the tribofilms was measured using the focused ion beam cross-section microscopy indicating that the tribofilms formed by ashless dithiophosphates are significantly thicker than those formed by ZDDP. Nano-mechanical properties of the tribofilms including hardness and reduced modulus, scratch and nano-wear performance of the ashless dithiophosphate were compared to the secondary ZDDP. The overall results indicate that the wear performance of the ashless DDP are comparable or better than when ZDDP is used. The analytical techniques indicate that the tribofilms formed with ashless DDPs are thicker than those formed from ZDDP; however, the hardness and modulus of the tribofilm are lower in the case of ashless DDPs. XANES analysis indicate that in both tribofilms, phosphates are present as short chain phosphates. Ashless DDPs yield iron phosphates while ZDDP yielded a mix of iron and zinc phosphates. Both tribofilms have greater proportion of phosphates compared to sulfur species. The sulfur near the surface is mostly in the form of sulfates while the material in the interior is a mixture of sulfates and sulfides.
机译:在这项研究中,比较了无灰二烷基二硫代磷酸锌(DDP)和二烷基二硫代磷酸锌(ZDDP)的摩擦膜的摩擦学和纳米级特性。使用扫描电子显微镜和能量色散光谱法检查了由这些化学物质产生的摩擦表面。从磨损测试中收集的磨损碎屑在透射电子显微镜中以亮场模式进行检查,并选择区域衍射,以检查碎屑颗粒的结晶度和性质。使用聚焦离子束横截面显微镜测量摩擦膜的厚度,表明由无灰二硫代磷酸酯形成的摩擦膜比ZDDP形成的摩擦膜厚得多。将摩擦膜的纳米机械性能(包括硬度和降低的模量),无灰二硫代磷酸酯的划痕和纳米磨损性能与二级ZDDP进行了比较。总体结果表明,与使用ZDDP相比,无灰DDP的磨损性能相当或更好。分析技术表明,由无灰DDP形成的摩擦膜比由ZDDP形成的摩擦膜厚。然而,在无灰DDP的情况下,摩擦膜的硬度和模量较低。 XANES分析表明,在两个摩擦膜中,磷酸盐均以短链磷酸盐的形式存在。无灰DDP产生磷酸铁,而ZDDP产生磷酸铁和磷酸锌的混合物。与硫物质相比,两种摩擦膜都具有更大比例的磷酸盐。表面附近的硫主要为硫酸盐形式,而内部的材料为硫酸盐和硫化物的混合物。

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