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Thermal conductivity of alignedCNT-polyethylene nanocomposites and correlation with the interfacial thermal resistance

机译:对准型聚乙烯纳米复合材料的热导率和与界面热阻的相关性

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Carbon nanotube (CNT) reinforced polymer composites have higher thermal conductivity than polymers themselves, so they have wide application prospects in many thermodynamic applications. It is of great significance to deeply understand the thermal conductivity of polymer nanocomposites and its creations, especially with the CNT-polymer interface. In this article, for CNT-polyethylene (PE) nanocomposites, the temperature distribution and thermal conductivity, and its correlation with the CNT volume fraction, the interfacial thermal resistance caused by interfacial defects in the CNT-PE interface region, and mechanical strain were comprehensively studied through molecular dynamics simulation. The results show that the CNT volume fraction and mechanical stretches have remarkable effects on the thermal conductivity of the nanocomposite, and comparatively the influence of the interfacial defects is weak just in the range of the CNT volume fraction <0.3. The thermal conductivity rapidly increases when the volume fraction of CNTs changes from 0 to 0.20. Under tensile strain, the thermal conductivities kappa(parallel to)and kappa(perpendicular to)(being parallel to and perpendicular to the stretching direction, also the direction of nanotubes) display quite different rules. The kappa(parallel to)increases linearly with the tensile strain, while the kappa(perpendicular to)decreases linearly. After the CNT-PE interfacial defect degreef(d)of assessing the defect extent was introduced, its dependence on the interfacial thermal resistanceR(i)was analytically given, and further the influence of thef(d)on the thermal conductivity was obtained through comparative studies of with/without interfacial defects. We found that the thermal conductivity has a sharply deduce when thef(d)is in the range of 30% to 60%.
机译:碳纳米管(CNT)增强聚合物复合材料具有比聚合物本身更高的导热率,因此它们在许多热力学应用中具有广泛的应用前景。非常重要的是,非常了解聚合物纳米复合材料的导热率及其产生,特别是CNT-聚合物界面。在本文中,对于CNT-聚乙烯(PE)纳米复合材料,温度分布和导热率,及其与CNT体积分数的相关性,通过CNT-PE接口区域中的界面缺陷引起的界面热阻以及机械菌株全面地进行了全面通过分子动力学模拟研究。结果表明,CNT体积分数和机械拉伸对纳米复合材料的导热率有显着影响,并且相对较浅的界面缺陷的影响较弱,仅在CNT体积分数<0.3的范围内。当CNT的体积分数从0变为0.20时,导热率迅速增加。在拉伸应变下,热导体κ(平行于)和κ(垂直于)(垂直于和垂直于拉伸方向,也是纳米管的方向)显示相当不同的规则。 Kappa(平行于)随着拉伸应变线性地增加,而Kappa(垂直于)线性降低。在评估缺陷程度的CNT-PE界面缺陷SECTOF(D)之后,对其对界面热抗校长(I)的依赖性进行了分析给出,通过比较获得了THE(D)对导热率的影响与/没有界面缺陷的研究。我们发现当THEF(D)在30%至60%的范围内时,导热率具有急剧推出。

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