会议论文详细信息
17th IUMRS International Conference in Asia
Thermal performance enhancement of erythritol/carbon foam composites via surface modification of carbon foam
Li, Junfeng^1 ; Lu, Wu^1 ; Luo, Zhengping^1 ; Zeng, Yibing^1
Aerospace Research Institute of Materials and Processing Technology, Beijing
100076, China^1
关键词: Interface resistance;    Oxygen functional groups;    Supercooling degrees;    Surface modification methods;    Surface polarities;    Thermal Performance;    Thermal performance enhancements;    Wetting ability;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/182/1/012009/pdf
DOI  :  10.1088/1757-899X/182/1/012009
来源: IOP
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【 摘 要 】

The thermal performance of the erythritol/carbon foam composites, including thermal diffusivity, thermal capacity, thermal conductivity and latent heat, were investigated via surface modification of carbon foam using hydrogen peroxide as oxider. It was found that the surface modification enhanced the wetting ability of carbon foam surface to the liquid erythritol of the carbon foam surface and promoted the increase of erythritol content in the erythritol/carbon foam composites. The dense interfaces were formed between erythritol and carbon foam, which is due to that the formation of oxygen functional groups C=O and C-OH on the carbon surface increased the surface polarity and reduced the interface resistance of carbon foam surface to the liquid erythritol. The latent heat of the erythritol/carbon foam composites increased from 202.0 to 217.2 J/g through surface modification of carbon foam. The thermal conductivity of the erythritol/carbon foam composite before and after surface modification further increased from 40.35 to 51.05 W/(m•K). The supercooling degree of erythritol also had a large decrease from 97 to 54 °C. Additionally, the simple and effective surface modification method of carbon foam provided an extendable way to enhance the thermal performances of the composites composed of carbon foams and PCMs.

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