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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Effects of ethanol content on cast iron cylinder wear in a flex-fuel internal combustion engine-A case study
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Effects of ethanol content on cast iron cylinder wear in a flex-fuel internal combustion engine-A case study

机译:乙醇含量对弯曲燃料内燃机铸铁缸磨损的影响 - 一种案例研究

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摘要

The localized wear within a four-cylinder automotive spark-ignition internal combustion engine was investigated using a dynamometer durability test. The test engine was equipped with flexible fuel technology, popularly known as "Flex-Fuel", capable of operating under any mixture of gasoline and ethanol in the fuel. A 2D profilometer analysis was conducted on engine block specimens from the Top-Dead-Center (TDC) and Bottom-Dead-Center (BDC) positions in order to identify localized wear characteristics. The profiles have shown localized wear dependence in regions of the cylinder bore, as did comparative results between two test conditions: (i) an engine fueled with local gasoline (E25) and (ii) an engine fueled with ethanol (E100). Selected localized wear regions have been characterized using scanning electronic microscopy. Complementary piston ring wear analysis was carried out to assess the remaining coating thickness at the end-of-test. The test with ethanol resulted in the highest localized wear, which occurred at the Bottom-Dead-Center position. A condensed literature review was conducted. An attempt was made to correlate the observed wear features with possible mechanistic theories found in the wear literature. Characterization results indicated that three-body abrasion by carbon residues and piston ring particles is one of the important mechanisms contributing to the cylinder bore wear.
机译:使用测功机耐久性测试研究了四缸汽车火花点火内燃机内燃机内的局部磨损。测试引擎配备有柔性燃料技术,普遍称为“弯曲燃料”,能够在燃料中的任何混合物中操作燃料中的任何混合物。在来自顶死中心(TDC)和底部死中心(BDC)位置的发动机块样品上进行了2D轮廓仪分析,以识别局部磨损特性。该型材已经示出了气缸孔的区域中的局部磨损依赖性,以及两个测试条件之间的比较结果:(i)用局部汽油(E25)和(ii)用乙醇(E100)燃料的发动机燃料的发动机。使用扫描电子显微镜表征了所选局部磨损区域。进行互补的活塞环磨损分析,以评估测试结束时的剩余涂层厚度。用乙醇的试验导致最高局部磨损,在底死中心位置发生。进行了浓缩的文献综述。尝试将观察到的磨损特征与磨损文献中的可能发现的机械理论相关联。表征结果表明,碳残留物和活塞环粒子的三体磨损是对气缸孔磨损有贡力的重要机制之一。

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