用有限体积法研究不同涂层厚度下的保温性能

Bahadır Erman Yüce, S. Özel
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摘要

本文通过数值模拟研究了涂层厚度和热性能对内燃机活塞温度分布的影响。对活塞进行了三维建模,并进行了网格无关性试验。在不影响计算精度的前提下,选择了最优元素数。厚度值分别为250、500、750μ。涂层材料采用碳化钨(WC)和氧化锆(ZrO2)。采用对流热负荷作为边界条件。利用不同位置的温度值来评价涂层的热性能。数值结果表明,WC对活塞的平均绝热性能没有显著影响,即使厚度较大,WC涂层活塞的顶表面温度与未涂层活塞的顶表面温度相似。而ZrO2作为保温材料的性能较好,厚度越大,保温效果越好。
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Investigation of Thermal Insulation Performance at Different Coating Thicknesses by Using Finite Volume Method
In this study, the effect of coating thickness and thermal property on the temperature distribution of an internal combustion diesel piston was investigated numerically. A piston was modeled in three-dimensional, and then a gird independency test was performed. The optimum element number was selected without losing computational accuracy. The thickness values were considered as 250, 500, and 750μ. Tungsten Carbide (WC) and Zirconia (ZrO2) were used as coating material. Convective heat loads were applied as boundary conditions. Temperature values in different locations were used to evaluate the thermal performance of the coating layer. The numerical results showed that WC doesn’t have a significant effect by the mean oh thermal insulation and WC-coated piston top surface temperature is similar to uncoated temperature even with the higher thickness values. However, ZrO2 has a better performance as thermal insulation material, and its effectiveness increases with higher thickness values.
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