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首页> 外文期刊>Journal of Thermal Spray Technology >Suspension Plasma-Sprayed Thermal Barrier Coatings for Light-Duty Diesel Engines
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Suspension Plasma-Sprayed Thermal Barrier Coatings for Light-Duty Diesel Engines

机译:用于轻型柴油发动机的悬浮等离子体喷涂的热阻挡涂层

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摘要

Demands for improved fuel efficiency and reduced CO2 emissions of diesel engines have been the driving force for car industry in the past decades. One way to achieve this would be by using thermal spraying to apply a thermal insulation layer on parts of the engine's combustion chamber. A candidate thermal spray process to give coatings with appropriate properties is suspension plasma spray (SPS). SPS, which uses a liquid feedstock for the deposition of finely structured columnar ceramic coatings, was investigated in this work for application in light-duty diesel engines. In this work, different spray processes and materials were explored to achieve coatings with optimized microstructure on the head of aluminum pistons used in diesel engine cars. The functional properties of the coatings were evaluated in single-cylinder engine experiments. The influence of thermo-physical properties of the coatings on their functional properties has been discussed. The influence of different spray processes on coating formation on the complex piston head profiles has been also discussed. The results show that SPS can be a promising technique for producing coatings on parts of the combustion chamber, which can possibly lead to higher engine efficiency in light-duty diesel engines.
机译:对柴油发动机的提高燃油效率和减少二氧化碳排放的需求一直是过去几十年汽车工业的驱动力。实现这一点的一种方法是通过使用热喷涂在发动机燃烧室的部分上施加隔热层。候选热喷涂工艺以适当的特性提供涂层是悬浮等离子体喷雾(SPS)。在这项工作中研究了用于沉积精细结构的柱状陶瓷涂层的SPS,用于在轻型柴油发动机中应用。在这项工作中,探索了不同的喷涂工艺和材料,以实现柴油机汽车铝活塞头上的优化微观结构的涂层。在单缸发动机实验中评估涂层的功能性。讨论了涂层对其功能性质的热物理性质的影响。还讨论了不同喷雾过程对复杂活塞头型材涂层形成的影响。结果表明,SPS可以是用于在燃烧室部件上产生涂层的有希望的技术,这可能导致轻型柴油发动机的发动机效率更高。

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