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Molecular Dynamics Simulations of Self-Assembled Polyethylene-Hexagonal Boron Nitride Composite and Its Thermal Conductivity

机译:自组装聚乙烯-六方氮化硼复合材料及其导热系数的分子动力学模拟

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The demand of the heat dissipating polymer-based composites is increasing because of the processibility, light weight, corrosion resistance, and low cost of polymers regardless of their low thermal conductivity. It is well known that 3-dimensional arrangement and the relative orientation of the filler particles with high thermal conductivity significantly influence the composite thermal conductivity. To study the relation between the composite internal structure and the thermal conductivity, we developed the atomistic model and measure the thermal conductivity of composites. The self-assembled structure of the composite composed of polyethylene (PE) matrix and hexagonal boron nitride (hBN) sheets is obtained at the atomistic level using annealing molecular dynamics simulations. We found that the hBN sheets prefer a stacked structure because of strong electrostatic interactions, and they form a segregated domain inside the polymer matrix. The effect of hBN concentration on the thermal conductivity is calculated and were found to be in good agreement with the experimental results.
机译:由于聚合物的可加工性,重量轻,耐腐蚀性和低成本,而不考虑其低导热性,因此对基于聚合物的散热复合材料的需求正在增加。众所周知,具有高热导率的填料颗粒的3维排列和相对取向会显着影响复合材料的热导率。为了研究复合材料内部结构与导热系数之间的关系,我们建立了原子模型并测量了复合材料的导热系数。使用退火分子动力学模拟,在原子水平上获得了由聚乙烯(PE)基体和六方氮化硼(hBN)片组成的复合材料的自组装结构。我们发现,hBN片材由于强的静电相互作用而更喜欢堆叠结构,并且它们在聚合物基质内部形成了隔离的区域。计算了hBN浓度对热导率的影响,发现与实验结果非常吻合。

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