首页> 外文期刊>Journal of Electronic Materials >Passive Cooling Enabled by Polymer Composite Coating: Dependence on Filler, Filler Size and Coating Thickness
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Passive Cooling Enabled by Polymer Composite Coating: Dependence on Filler, Filler Size and Coating Thickness

机译:通过聚合物复合涂层实现的被动冷却:依赖填料,填料尺寸和涂层厚度

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摘要

The effective passive radiation cooling that is enabled by silicone-based composites is investigated for its dependence on coating thickness and filler size in the range of nanometers to micrometers. It is established, contrary to prior reports, that the effective passive radiation cooling does not exhibit a filler size dependence, i.e., there is no optimal size at which a maximum cooling would be reached. However, the apparent cooling effect is filler type dependent and among the fillers investigated, Al2O3 exhibits the best apparent cooling effect. In addition, the apparent cooling effect is dependent on coating thickness: the thickness dependence is non-monotonic, and the maximum cooling occurs at an optimal thickness of 70 mu m, regardless of filler type. Potential significant implications of the findings are also discussed.
机译:通过硅氧烷基复合材料使能的有效被动辐射冷却进行了纳米型到微米的涂层厚度和填料尺寸的依赖性。 与先前的报道相反,有效被动辐射冷却不表现出填充尺寸依赖性的,即,没有最佳尺寸,在此期间将达到最大冷却。 然而,表观冷却效果是依赖性的填充型,并且在研究中,Al 2 O 3表现出最佳明显的冷却效果。 此外,表观冷却效果取决于涂层厚度:厚度依赖性是非单调的,并且无论填充型如何,最佳厚度为70μm。 还讨论了对结果的潜在重大影响。

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