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Enhanced thermal conductivity of n-octadecane containing carbon-based nanomaterials

机译:含正十八烷的碳基纳米材料的导热性增强

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摘要

In the present study, carbon-based nanomaterials including multiwalled carbon nanotubes (MWCNTs) and vapor-grown carbon nanofibers (CNFs) were dispersed in n-octadecane as a phase change material (PCM) at various mass fractions of 0.5, 1, 2 and 5 wt% by the two-step method. The transient plane source technique was used to measure thermal conductivity of samples at various temperatures in solid (5-25 ℃) and liquid (30-55 ℃) phases. The experimental results showed that thermal conductivity of the composites increases with increasing the loading of the MWCNTs and CNFs. A maximum thermal conductivity enhancement of 36 % at 5 wt% MWCNTs and 5 ℃ as well as 50 % at 2 wt% and 55 ℃ were experimentally obtained for n-octadecane/MWCNTs samples. Dispersing CNFs into n-octadecane raised the thermal conductivity up to 18 % at 5 wt% and 10 ℃ and 21 % at 5 wt% and 55 ℃. However, the average enhancement of 19 and 21 % for solid and liquid phases of MWCNTs composite as well as 33 and 46 % for solid and liquid phase of CNFs promised a better heat transfer characteristics of MWCNTs in n-octadecane. A comparison between results of the present work and available literature revealed a satisfactory enhancement of thermal conductivity. For the investigated n-octadecane/MWCNTs and n-octadecane/CNFs composites, a new correlation was proposed for predicting the thermal conductivity as a function of temperature and nanomaterials loading.
机译:在本研究中,包括多壁碳纳米管(MWCNT)和气相生长碳纳米纤维(CNF)在内的碳基纳米材料以相变材料(PCM)的质量分数分别为0.5、1、2和8分散在正十八烷中。通过两步法获得5重量%。瞬态平面源技术用于测量固相(5-25℃)和液相(30-55℃)不同温度下样品的热导率。实验结果表明,复合材料的导热系数随着MWCNTs和CNFs负载的增加而增加。对于正十八烷/ MWCNTs样品,通过实验获得了在5 wt%MWCNT和5℃时最大导热率提高36%,在2 wt%和55℃时最大导热率提高50%。将CNF分散到正十八烷中,在5 wt%和10℃时,热导率提高到18%,在5 wt%和55℃时,热导率上升到21%。然而,MWCNTs复合材料固相和液相的平均提高19%和21%,CNFs固相和液相的平均提高33%和46%保证了MWCNT在正十八烷中的传热性能更好。本工作结果与现有文献之间的比较显示出令人满意的导热率增强。对于研究的正十八烷/ MWCNTs和正十八烷/ CNFs复合材料,提出了一种新的相关性,用于预测导热系数随温度和纳米材料负载的变化。

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  • 来源
    《Heat and mass transfer》 |2016年第8期|1621-1631|共11页
  • 作者单位

    Faculty of Engineering, University of Shahreza, 86149-56841 Shahreza, Islamic Republic of Iran;

    Department of Mechanical Engineering, Isfahan University of Technology, 84156-83111 Isfahan, Islamic Republic of Iran;

    Department of Energy Technology, KTH Royal Institute of Technology, SE-10044 Stockholm, Sweden;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
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