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首页> 外文期刊>Modelling and simulation in materials science and engineering >Study of temperature dependence of thermal conductivity in cross-linked epoxies using molecular dynamics simulations with long range interactions
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Study of temperature dependence of thermal conductivity in cross-linked epoxies using molecular dynamics simulations with long range interactions

机译:使用长距离相互作用的分子动力学模拟研究交联环氧树脂中导热系数的温度依赖性

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摘要

In this work, we demonstrate the use of the Green-Kubo integral of the heat flux autocorrelation function, incorporating long-range corrections to model the thermal conductivity versus temperature relationship of cross-linked polymers. The simulations were performed on a cross-linked epoxy made from DGEBA and a curing agent (diamino diphenyl sulfone) using a consistent valence force field (CVFF). A dendrimeric approach was utilized for building equilibrated cross-linked structures that allowed replication of the experimental dilatometric curve for the epoxy system. We demonstrate that the inclusion of a long-range correction within the Ewald/PPPM approach brings the results close to experimentally measured conductivity within an error of 10% while providing a good prediction of the relationship of thermal conductivity versus temperature. This method shows significant promise towards the computation of thermal conductivity from simulations even before synthesis of the polymer for purposes of materials by design.
机译:在这项工作中,我们演示了热通量自相关函数的Green-Kubo积分的使用,并结合了远距离校正以对交联聚合物的导热率与温度之间的关系进行建模。使用一致的价力场(CVFF),对由DGEBA和固化剂(二氨基二苯砜)制成的交联环氧树脂进行了仿真。树状方法被用于建立平衡的交联结构,该结构允许复制环氧体系的实验膨胀曲线。我们证明,在Ewald / PPPM方法中包含远程校正可以使结果接近于实验测量的电导率,误差在10%以内,同时可以很好地预测热导率与温度之间的关系。该方法显示出从模拟计算热导率的巨大希望,甚至在出于设计目的而合成聚合物之前也是如此。

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