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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >X-ray absorption spectroscopy of tribofilms produced from zinc dialkyl dithiophosphates on Al-Si alloys
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X-ray absorption spectroscopy of tribofilms produced from zinc dialkyl dithiophosphates on Al-Si alloys

机译:Al-Si合金上的二烷基二硫代磷酸锌锌制得的摩擦膜的X射线吸收光谱

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X-ray absorption near edge structure (XANES) analysis has been used to characterize the chemistry of tribologically derived phosphorus films from a mineral base oil with a zinc dialkyl dithiophosphate (ZDDP) additive. These species were detected in the wear scars found on both counter-surfaces from a reciprocating boundary contact between different aluminum-silicon alloys and either the same alloy or with a steel counter-surface. Two different Al-Si alloys were used which had significantly different silicon contents, 0.7% (aluminum 6061) and 7% (aluminum 319), respectively. Couples between A319/A319, A319/52100 steel, 52100 steel/A319, A6061/A6061, A6061/52100 steel, and 52100 steel/A6061 were investigated. The phosphorus K- and L-edge spectra show that with the onset of wear of the aluminum matrix an aluminum phosphide species is found in the wear scar. Furthermore, unreacted-ZDDP, a linkage isomer, and polyphosphate species were detected in many of the wear scars. The spectra showed little chemical-variation with increase in rubbing time for each series studied. Excluding the 52100 steel/Al alloy couples, it was found that for the various A319 couples the A319/52100 steel performed the best. For the A6061 couples, the A6061/A6061 couple was the best. In all cases the modes of wear are strongly dependent on the yield strength of the materials used.
机译:X射线吸收近边缘结构(XANES)分析已用于表征摩擦学上由矿物基础油与二烷基二硫代磷酸锌(ZDDP)添加剂形成的磷膜的化学性质。在不同铝硅合金与相同合金或钢对面的往复边界接触中,在两个对面的磨损痕迹中都检测到了这些物种。使用两种具有明显不同的硅含量的铝硅合金,分别为0.7%(铝6061)和7%(铝319)。研究了A319 / A319,A319 / 52100钢,52100钢/ A319,A6061 / A6061,A6061 / 52100钢和52100钢/ A6061之间的对。磷的K和L边缘光谱表明,随着铝基质磨损的开始,在磨损痕迹中发现了磷化铝物质。此外,在许多磨损痕迹中检测到未反应的ZDDP,一种连接异构体和多磷酸盐类。对于所研究的每个系列,光谱显示随着摩擦时间的增加几乎没有化学变化。不包括52100钢/铝合金对,发现对于各种A319对,A319 / 52100钢的性能最佳。对于A6061对,A6061 / A6061对是最好的。在所有情况下,磨损方式都很大程度上取决于所用材料的屈服强度。

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