A Review of Coating Methods and Their Applications in Compression and Spark-Ignition Engines for Enhanced Performance

Festus O. Isaac
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Abstract

Coating of metallic surfaces such as cylinder heads, cylinder liners, piston heads and exhaust-valves in Internal Combustion Engines (ICEs) has improved engine performance in areas of brake-thermal-efficiency including brake-specific-fuel consumption, etc. This review showed different methods of coating in compression and spark-ignition engines for improved performance using different coating thicknesses on the metallic surfaces. These coating thicknesses may be either minimum or maximum depending on the coating method used. The coating methods discussed in this paper were Thermal Spraying (TS), Physical-Vapour Deposition (PVD), Chemical-Vapour Deposition (CVD) and Ion Implantation methods. Minimum thicknesses were achieved using the PVD, CVD and Ion-Implantation methods. In addition, Sol-Gel and Slurry coatings were also discussed. Having considered these methods of coating, thermal-spraying method was recommended for compression and spark-ignition engines because it produces temperature ranging from 8000 K-14000 K on surfaces with thick coating thicknesses. 
在压缩和火花点火发动机中提高性能的涂层方法及其应用综述
在内燃机(ICEs)中,金属表面(如气缸盖、缸套、活塞头和排气阀)的涂层改善了发动机在制动热效率方面的性能,包括制动油耗等。本文综述了压缩式和火花点火式发动机在金属表面涂覆不同厚度涂层以提高发动机性能的不同方法。这些涂层厚度可以是最小或最大,这取决于所使用的涂层方法。本文讨论的涂层方法有热喷涂(TS)、物理气相沉积(PVD)、化学气相沉积(CVD)和离子注入法。采用PVD、CVD和离子注入方法实现了最小厚度。此外,还讨论了溶胶-凝胶涂层和浆料涂层。考虑到这些涂层方法,热喷涂方法被推荐用于压缩和火花点火发动机,因为它在涂层厚度较厚的表面上产生的温度范围为8000 K-14000 K。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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