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A study on preparation and properties of carbon materials/myristic acid composite phase change thermal energy storage materials

机译:碳材料的制备与性能研究/肉体酸复合相变热能储存材料

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Microscale graphite (Gr) and nanoscale multi-walled carbon nanotubes (MWCNTs) were chosen to modify the organic phase change material (PCM) of myristic acid (MA). The Gr/MA and MWCNTs/MA composite PCMs were prepared by adding the carbon materials at different mass fractions into MA. The experimental results indicated that both Gr and MWCNTs could enhance the thermal conductivity of MA. For the 3 wt% loading, the solid thermal conductivity of MA increased by 37.42% with Gr and 62.26% with MWCNTs. The FT-IR spectra showed that the reactions between carbon materials and MA were physical. The DSC results illustrated that the phase change latent heats of the composite PCMs decreased gradually with the additives increasing. Gr and MWCNTs strengthened the thermal stability of MA. The heat release rates of the composite PCMs accelerated. Three hundred thermal cycles of the chosen composite PCMs revealed that the prepared composite PCMs presented good thermal cycling stability.
机译:选择微观石墨(GR)和纳米级多壁碳纳米管(MWCNT)以改变肉豆蔻酸(MA)的有机相变材料(PCM)。 通过将不同质量分数的碳材料加入MA,制备GR / MA和MWCNT / MA复合PCM。 实验结果表明GR和MWCNTs都能提高MA的导热率。 对于3wt%的负荷,MA的固体导热率随GR的增加37.42%,MWNTS增加了62.26%。 FT-IR光谱表明碳材料与MA之间的反应是物理的。 DSC结果表明,随着添加剂的增加,复合PCM的相变潜热逐渐降低。 GR和MWCNTS强化了MA的热稳定性。 复合PCMS加速的热释放速率。 所选择的复合PCM的三百个热循环显示,制备的复合PCM呈现出良好的热循环稳定性。

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