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A variable temperature mechanical analysis of ZDDP-derived antiwear films formed on 52100 steel

机译:ZDDP衍生的抗磨膜在52100钢上的可变温度力学分析

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The nanomechanical properties of antiwear films formed from zinc dialkyl-dithiophosphates (ZDDPs) on steel have been studied by nanoindentation techniques as a function of temperature. X-ray absorption P K- and L- near edge structure (XANES) spectroscopy has shown that films prepared from oils containing ZDDPs on 52100 steel (pin on flat coupons) consist primarily of medium chain polyphosphates with sulphur (S K-edge) predominantly present as sulphide. Using various scanning probe techniques, high-resolution topographic images and mechanical properties can be extracted at the same length scale. Using focused ion beam (FIB) milling we have compared real cross-sectional film thickness with a value estimated from the P K-edge XANES. We report the first measurements of the elastic modulus of the antiwear films at elevated temperatures relevant to the automobile operating conditions (T ≤ 200℃). The antiwear films demonstrated a relatively constant indentation modulus over a wide range of temperatures consistent with their efficacy in reducing wear by preventing asperity contact.
机译:通过纳米压痕技术研究了由钢上的二烷基二硫代磷酸锌(ZDDP)形成的抗磨膜的纳米力学性能随温度的变化。 X射线吸收的P K和L近边缘结构(XANES)光谱表明,由52100钢上含ZDDP的油制备的薄膜(钉在平坦试样上)主要由含硫的中链多磷酸盐(S K边缘)组成。以硫化物形式存在。使用各种扫描探针技术,可以在相同的长度范围内提取高分辨率的地形图和机械性能。使用聚焦离子束(FIB)铣削,我们已将实际横截面膜厚与根据P K-edge XANES估算的值进行了比较。我们报告了在与汽车操作条件(T≤200℃)相关的高温下抗磨膜的弹性模量的首次测量。抗磨膜在很宽的温度范围内显示出相对恒定的压痕模量,这与它们通过防止粗糙接触减少磨损的功效相一致。

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