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Thermal Analysis of an Anodic Oxide Coating Diesel Engine Piston Using 3-D Finite Element Method

机译:一种使用3-D有限元法的阳极氧化物涂层柴油机活塞的热分析

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According to the phenomenon that the piston's reliability and durability have been significantly weakened due to its high temperature, hard anodizing is used to hinder the heat transfer from the combustion gas to the metal base of the piston. Thermal analyses are performed on pistons with different thicknesses of anodic oxide coatings. The effects of coatings on the thermal behaviors of the pistons are investigated. The numerical results are compared with each other. It has been shown that the maximum surface temperature of the coated pistons with anodic oxide coating which has low thermal conductivity are significantly improved. Also, considering the hard anodizing process, the 100~150μm thickness of the anodic oxide coating would meet the requirements of the piston's reliability.
机译:根据活塞的可靠性和耐久性由于其高温而显着削弱的现象,使用硬阳极氧化来阻碍从燃烧气体到活塞的金属基底的热传递。在具有不同厚度的阳极氧化物涂层的活塞上进行热分析。研究了涂层对活塞的热行为的影响。数值结果彼此比较。已经表明,具有低导热率的涂覆活塞的涂覆活塞的最大表面温度显着提高。此外,考虑到硬阳极氧化过程,100〜150μm厚度的阳极氧化物涂层将满足活塞可靠性的要求。

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