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首页> 外文期刊>Transactions of the Canadian Society for Mechanical Engineering >Performance and emissions of a diesel engine using Al-Fe-Mg-Si pistons contain up to 15.7% volume fractions of Fe-rich intermetallic compounds
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Performance and emissions of a diesel engine using Al-Fe-Mg-Si pistons contain up to 15.7% volume fractions of Fe-rich intermetallic compounds

机译:使用Al-Fe-Mg-Si活塞的柴油发动机的性能和排放含有高达15.7%的Fe的金融金属化合物体积分数

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摘要

Engine performance and emission characteristics were investigated using a single cylinder four-stroke diesel engine with different concentrated intermetallic-based Al-Fe-Mg-Si pistons. Three different alloy combinations (types A, B, and C) of Al-Fe-Mg-Si pistons were developed through the incremental alloying addition of Fe, Mg, Mn, Cu, and Ni. Piston types A, B, and C had Fe-rich intermetallic compounds (IMC), where types B and C had a higher density IMC distribution than type A. The influence of Fe, Mg, Mn, Cu, and Ni alloyed IMC pistons on engine performance and emissions was investigated at various loading conditions. Combustion characteristics such as cylinder pressure and net heat release rate for all piston types were investigated and compared. A similar duration of ignition was seen for all piston types. Frictional loss was reduced by similar to 25% in types B and C in comparison to type A. Similarly, mechanical and thermal efficiency were enhanced considerably in types B and C compared to type A. Emission characteristics were also investigated for all piston types. Results showed that NOx was reduced by similar to 17.3% with the use of types B and C.
机译:在单缸四冲程柴油机上,采用不同浓度的金属间化合物基Al-Fe-Mg-Si活塞对发动机性能和排放特性进行了研究。通过添加铁、镁、锰、铜和镍的增量合金化,开发了三种不同的Al-Fe-Mg-Si活塞合金组合(A、B和C型)。A型、B型和C型活塞含有富铁金属间化合物(IMC),其中B型和C型的IMC分布密度高于A型。在不同的加载条件下,研究了铁、镁、锰、铜和镍合金IMC活塞对发动机性能和排放的影响。对所有活塞类型的燃烧特性,如气缸压力和净放热率进行了调查和比较。所有活塞类型的点火持续时间相似。与A型相比,B型和C型的摩擦损失减少了25%。与A型相比,B型和C型的机械效率和热效率显著提高。还研究了所有活塞类型的排放特性。结果表明,使用B型和C型时,NOx减少了17.3%。

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