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首页> 外文期刊>Materials Research Innovations >Exfoliated graphite/paraffin nanocomposites as phase change materials for thermal energy storage application
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Exfoliated graphite/paraffin nanocomposites as phase change materials for thermal energy storage application

机译:片状石墨/石蜡纳米复合材料作为相变材料,用于热能存储应用

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摘要

Nanofluid paraffin based composites were prepared as phase change materials for thermal energy storage applications by dispersing exfoliated graphite (EG) into paraffin with intensive ultrasonic irradiation without any dispersants. Under intensive ultrasonic irradiation, EG was stripped as exfoliated graphite microanoplatelets (EGP). The influence of EGP as heat diffusion promoters on improving thermal properties of paraffin was evaluated. As measured by a laser flash technique, the thermal conductivity of paraffin/EGP composites at room temperature increases with increasing EG mass fraction. After suspended in a water bath for 72 h, EGP still has good dispersion in melting paraffin. All the characteristic Fourier transformation infrared spectral peaks of paraffin and paraffin/EGP composites were observed. These paraffin/EGP composites show a good thermal reliability. Their heating and cooling rates are significantly improved upon the addition of EGP. Hence, the use of EGP is effective to improve thermal conductivity of paraffin with acceptable reduction in its latent heat storage capacity.
机译:通过使用无任何分散剂的强力超声辐照将片状石墨(EG)分散到石蜡中,制备了基于纳米流体石蜡的复合材料作为相变材料,用于热能存储应用。在强力超声辐射下,将EG剥离成剥落的石墨微/纳米片(EGP)。评估了EGP作为热扩散促进剂对石蜡热性能改善的影响。通过激光闪光技术测量,石蜡/ EGP复合材料在室温下的热导率随EG质量分数的增加而增加。悬浮于水浴中72小时后,EGP在熔融石蜡中仍具有良好的分散性。观察到石蜡和石蜡/ EGP复合材料的所有特征傅里叶变换红外光谱峰。这些石蜡/ EGP复合材料显示出良好的热可靠性。添加EGP后,它们的加热和冷却速率显着提高。因此,使用EGP可以有效地提高石蜡的导热性,同时可以降低其潜热存储能力。

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