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首页> 外文期刊>SAE International Journal of Engines >Abnormal Combustion Induced by Combustion Chamber Deposits Derived from Engine Oil Additives in a Spark-Ignited Engine
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Abnormal Combustion Induced by Combustion Chamber Deposits Derived from Engine Oil Additives in a Spark-Ignited Engine

机译:由火花点火式发动机的机油添加剂衍生的燃烧室沉积物引起的异常燃烧

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摘要

Although metallic compounds are widely known to affect combustion in internal combustion engines, the potential of metallic additives in engine oils to initiate abnormal combustion has been unclear. In this study, we investigated the influence of combustion chamber deposits derived from engine oil additives on combustion in a spark-ignited engine. We used a single-cylinder four-stroke engine, and measured several combustion characteristics (e.g., cylinder pressure, in-cylinder ultraviolet absorbance in the end-gas region, and visualized flame propagation) to evaluate combustion anomalies. To clarify the effects of individual additive components, we formed combustion products of individual additives in a combustion chamber prior to measuring combustion characteristics. We tested three types of metallic additives: a calcium-based detergent, a zinc-based antiwear agent, and a molybdenum-based friction modifier. Measurements of combustion characteristics after deposit formation revealed that the deposits derived from the calcium and zinc compounds facilitated auto-ignition and increased knock intensity. However, the deposits from molybdenum compounds showed no significant impact on auto-ignition. Our results showed that the chemical composition of combustion chamber deposits has specific effects relating to abnormal combustion in spark-ignited engines.
机译:尽管众所周知金属化合物会影响内燃机的燃烧,但是尚不清楚发动机油中金属添加剂引发异常燃烧的潜力。在这项研究中,我们研究了源自机油添加剂的燃烧室沉积物对火花点火式发动机燃烧的影响。我们使用了单缸四冲程发动机,并测量了几种燃烧特性(例如,缸压,端气区域的缸内紫外线吸收率以及可视化的火焰传播)来评估燃烧异常。为了阐明单个添加剂成分的影响,我们在测量燃烧特性之前先在燃烧室内形成了单个添加剂的燃烧产物。我们测试了三种类型的金属添加剂:钙基清洁剂,锌基抗磨剂和钼基摩擦改进剂。沉积物形成后燃烧特性的测量表明,钙和锌化合物衍生的沉积物促进了自燃并提高了爆震强度。但是,钼化合物的沉积物对自燃没有显着影响。我们的结果表明,燃烧室沉积物的化学成分具有与火花点火发动机异常燃烧有关的特定影响。

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