He Yan, Ma Lian-Xiang, Tang Yuan-Zheng, Wang Ze-Peng, Li Wei, Kukulka David
J Nanosci Nanotechnol. 2015 Apr;15(4):3244-8. doi: 10.1166/jnn.2015.9640.
Thermal conductivity of natural rubber has been studied by classic molecular dynamics simulations. These simulations are performed on natural rubber models using the adaptive intermolecular reactive empirical bond order (AIREBO) and the Green-Kubo molecular dynamics (MD) simulations. Thermal conductivity results are found to be very sensitive to the time step used in the simulations. For a time step of 0.1 fs, the converged thermal conductivity is 0.35 W/mK. Additionally the anisotropic thermal conductivity of a specially-modeled natural rubber model with straight molecular chains was studied and values of thermal conductivity parallel to the molecular chains was found to be 1.71 W/mK and the anisotropy, 2Kz/(Kx + Ky), was 2.67.
通过经典分子动力学模拟研究了天然橡胶的热导率。这些模拟是在天然橡胶模型上使用自适应分子间反应经验键序(AIREBO)和格林-库博分子动力学(MD)模拟进行的。发现热导率结果对模拟中使用的时间步长非常敏感。对于0.1飞秒的时间步长,收敛后的热导率为0.35瓦/米·开尔文。此外,还研究了具有直分子链的特殊建模天然橡胶模型的各向异性热导率,发现平行于分子链的热导率值为1.71瓦/米·开尔文,各向异性2Kz/(Kx + Ky)为2.67。