Effect of expanded graphite and carbon nanotubes on the thermal performance of stearic acid phase change materials

被引:0
作者
Xiaomin Cheng
Ge Li
Guoming Yu
Yuanyuan Li
Jiaqiang Han
机构
[1] Wuhan University of Technology,School of Materials Science and Engineering
[2] Huanggang Normal University,School of Mechanical and Electrical Engineering
来源
Journal of Materials Science | 2017年 / 52卷
关键词
Expanded Graphite (EG); Composite Phase Change Material; Carbon Nanotubes (CNTs); Composite PCMs; Vacuum Adsorption;
D O I
暂无
中图分类号
学科分类号
摘要
Carbon materials were added into stearic acid (SA) to improve the low thermal conductivity of SA, and their effect on thermal performance was investigated and compared. Stearic acid (SA)/expanded graphite (EG) and stearic acid (SA)/carbon nanotubes (CNTs) composite phase change materials (PCMs) were prepared via melt blending, vacuum adsorption and ultrasonication methods. Carbon additives were blended into SA with mass ratio from 1 to 9%. The leakage rate dropped dramatically with the increase in EG, and it was only physical adsorption in the preparation of both SA/EG and SA/CNTs composite PCMs. Thermophysical properties measured by TG-DSC showed that phase change temperatures of composite PCMs almost stayed the same and latent heat decreased slightly with increasing loadings of EG or CNTs. Thermal diffusivity and conductivity of pure SA were improved by adding EG and CNTs, while EG was far more effective than CNTs owing to the heat conduction network formed inside SA/EG composite PCMs, which was also the reason for the enhancement of thermal stability of SA/EG composite PCMs. Compared with pure SA, the thermal conductivity of composite PCMs was 6.2 times higher with 9 wt% EG and 1.4 times with 9 wt% CNTs, respectively. The heat storage and heat release efficiencies were also improved by carbon additives. This work demonstrates that EG is more potential to enhance the thermal performance of SA than CNTs, and SA/EG composite PCMs are quite promising for low-temperature solar energy storage.
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页码:12370 / 12379
页数:9
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  • [11] Sawhney RL(2010)C/C composite, carbon nanotube and paraffin wax hybrid systems for the thermal control of pulsed power in electronics Carbon 48 813-824
  • [12] Kant K(2015)A hybrid thermal management system for lithium ion batteries combining phase change materials with forced-air cooling Appl Energy 148 403-409
  • [13] Shukla A(2014)New latent heat storage system with nanoparticles for thermal management of electric vehicles J Power Sources 268 718-727
  • [14] Sharma A(2015)Experiment and simulation of a LiFePO4 battery pack with a passive thermal management system using composite phase change material and graphite sheets J Power Sources 275 742-749
  • [15] Iten M(2014)Fatty acids as phase change materials: a review Renew Syst Energy Rev 29 482-498
  • [16] Liu S(2013)Improving the thermal conductivity and shape-stabilization of phase change materials using nanographite additives Carbon 51 365-372
  • [17] Shukla A(2013)Effect of graphene aerogel on thermal behavior of phase change materials for thermal management Sol Energy Mater Sol C 113 195-200
  • [18] He Y(2013)Shape-stabilized phase change materials with high thermal conductivity based on paraffin/graphene oxide composite Energy Convers Manag 67 275-282
  • [19] Zhang X(2011)The experimental exploration of carbon nanofiber and carbon nanotube additives on thermal behavior of phase change materials Sol Energy Mater Sol C 95 1208-1212
  • [20] Zhang Y(2016)Thermal properties and morphologies of MA–SA eutectics/CNTs as composite PCMs in thermal energy storage Energy Build 127 603-610