首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Impact of engine oil degradation on wear and corrosion caused by acetic acid evaluated by chassis dynamometer bench tests
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Impact of engine oil degradation on wear and corrosion caused by acetic acid evaluated by chassis dynamometer bench tests

机译:底盘测功机台架试验评估了机油降解对乙酸造成的磨损和腐蚀的影响

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摘要

The impact of acetic acid as partial combustion product of ethanol, a bio-derived component in gasoline, on the performance of two engine oils regarding their stability and corrosion potential towards engine parts was assessed. Consequently, oils evaluated in laboratory for their stability were subjected to a chassis dynamometer bench test for examination under more realistic conditions. In addition to reference runs, bench tests were performed with addition of acetic acid to the oil. Oil condition monitoring enabled the differentiation between runs with and without addition of acid concerning the oil parameters Total Base Number and Neutralisation Number. Moreover, interaction of the oils with acetic acid could be differentiated attributed to different oil formulations. Optical emission spectroscopy of oil samples proved the corrosion potential towards iron and copper when adding acetic acid although this contamination has been largely evaporated during the bench tests. However, failure assessment by scanning electron microscopy of used parts demounted from the vehicle after the bench tests showed no significant signs of mechanical wear or corrosion giving evidence for material loss in nano- to micro-scale. As corroboration of these findings, static corrosion experiments were performed in the laboratory with good correlation to results obtained from the bench test.
机译:评估了乙酸作为乙醇的部分燃烧产物,乙醇是汽油中的一种生物衍生成分,就其稳定性和对发动机零件的腐蚀潜力而言,对两种发动机油的性能进行了评估。因此,在实验室评估过的油的稳定性经过底盘测功机台架试验,以便在更实际的条件下进行检查。除参考试验外,还进行了向油中添加乙酸的基准试验。机油状况监测可以区分是否添加了与机油参数总碱值和中和值有关的酸。而且,由于不同的油配方,可以区分油与乙酸的相互作用。石油样品的光发射光谱证明了添加乙酸时对铁和铜的腐蚀潜能,尽管在实验室测试中这种污染物已大量蒸发。但是,在台架试验后,通过扫描电子显微镜对从车辆上卸下的旧零件进行的失效评估表明,没有明显的机械磨损或腐蚀迹象,从而提供了从纳米级到微米级的材料损失的证据。为了证实这些发现,在实验室进行了静态腐蚀实验,与从试验台获得的结果具有良好的相关性。

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