首页> 外文会议>IUMRS International Conference in Asia >Thermal performance enhancement of erythritol/carbon foam composites via surface modification of carbon foam
【24h】

Thermal performance enhancement of erythritol/carbon foam composites via surface modification of carbon foam

机译:碳泡沫表面改性的赤藓酚/碳泡沫复合材料的热性能提高

获取原文

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/(mK). 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.
机译:通过使用过氧化氢作为氧化物的碳泡沫的表面改性研究了赤藓糖醇/碳泡沫复合材料的热性能,包括热扩散,热容量,导热率和潜热。发现表面改性增强了碳泡沫表面与碳泡沫表面的液体赤藓溶胶的润湿能力,并促进了赤藓糖醇/碳泡沫复合材料中的赤藓糖醇含量的增加。在赤藓糖醇和碳泡沫之间形成致密界面,这是由于碳表面上的氧官能团的形成和C-OH的形成增加了表面极性,并降低了碳泡沫表面的界面电阻到液体赤藓糖醇。红细胞/碳泡沫复合材料的潜热通过碳泡沫的表面改性从202.0至217.2J / g增加到217.2J / g。在表面改性之前和之后的赤藓糖醇/碳泡沫复合材料的导热率进一步增加到40.35至51.05W /(MK)。红细胞过冷度的赤藓糖醇也大大降低了97至54“C.另外,碳泡沫的简单且有效的表面改性方法提供了一种可伸展的方式来增强由碳泡沫和PCM组成的复合材料的热性能。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号