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Tribofilms generated from ZDDP and DDP on steel surfaces: Part 1, growth, wear and morphology

机译:ZDDP和DDP在钢表面产生的摩擦膜:第1部分,生长,磨损和形态

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The growth and morphology of tribofilms, generated from zinc dialkyldithiophosphate (ZDDP) and an ashless dialkyldithio-phosphate (DDP) over a wide range of rubbing times (10 s to 10 h) and concentrations (0.1-5 wt% ZDDP), have been examined using atomic force microscopy (AFM), X-ray photoelectron spectroscopy (XPS) and X-ray absorption near edge structure (XANES) spectroscopy at the O, P and S K-edges and the P, S, and Fe L-edges. The physical aspects of the growth and morphology of the tribofilms will be presented in Part I and the chemistry of the films will be discussed in Part II. The major components of all films on 52100 steel are Zn and Fe phosphates and polyphosphates. The average thickness of these phosphate films has been measured using P K-edge XANES and XPS profiling. For ZDDP, a very significant phosphate film (about 100 A thick) forms after 10 s, while film development for DDP is substantially slower. However, for both additives, the average film thickness increases to 600-800 A after 30 min of rubbing, before leveling off or decreasing. The antiwear properties of pure ZDDP and in combination with DDP at different rubbing times and concentrations have also been examined. It was found that under all conditions, the performance of ZDDP as an antiwear agent is superior to that of DDP. However, DDP has no adverse effect on the performance of ZDDP when the two are mixed. The AFM results show that ZDDP forms larger and better developed "pads" than DDP at short rubbing times. At longer rubbing times, both films become more uniform. For the 1 h ZDDP films, the film thickness is surprisingly independent of the ZDDP concentration from 0.1 to 5 wt% ZDDP. The film thickness is also independent of the ratio of ZDDP/DDP concentrations.
机译:由二烷基二硫代磷酸锌(ZDDP)和无灰二烷基二硫代磷酸酯(DDP)产生的摩擦膜在很大的摩擦时间(10 s至10 h)和浓度(0.1-5 wt%ZDDP)范围内均已生长并形成形态使用原子力显微镜(AFM),X射线光电子能谱(XPS)和O,P和S K边缘以及P,S和Fe L边缘的X射线吸收近边缘结构(XANES)光谱进行了检查。摩擦膜的生长和形态的物理方面将在第一部分中介绍,而膜的化学性质将在第二部分中进行讨论。 52100钢上所有薄膜的主要成分是磷酸锌和磷酸铁以及聚磷酸盐。这些磷酸盐薄膜的平均厚度已使用P K-edge XANES和XPS轮廓测量。对于ZDDP,在10秒钟后会形成非常明显的磷酸盐膜(约100 A厚),而DDP的膜显影则要慢得多。但是,对于这两种添加剂,在摩擦30分钟后,平整或减小之前,平均膜厚都会增加到600-800A。还研究了纯ZDDP以及与DDP组合在不同摩擦时间和浓度下的抗磨性能。发现在所有条件下,ZDDP作为抗磨剂的性能均优于DDP。但是,将两者混合使用时,DDP对ZDDP的性能没有不利影响。原子力显微镜的结果表明,在较短的摩擦时间内,ZDDP比DDP形成更大,更发达的“垫”。在更长的摩擦时间下,两个膜都变得更均匀。对于1小时的ZDDP膜,膜厚度出乎意料地独立于0.1至5重量%的ZDDP的ZDDP浓度。膜厚度也与ZDDP / DDP浓度之比无关。

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