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首页> 外文期刊>Journal of Physics. Condensed Matter >Influence of chain topology and bond potential on the glass transition of polymer chains simulated with the bond fluctuation model
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Influence of chain topology and bond potential on the glass transition of polymer chains simulated with the bond fluctuation model

机译:用键涨落模型模拟链拓扑和键势对聚合物链玻璃化转变的影响

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The bond fluctuation model with a bond potential has been applied to investigation of the glass transition of linear chains and chains with a regular disposition of small branches. Cooling and subsequent heating curves are obtained for the chain energies and also for the mean acceptance probability of a bead jump. In order to mimic different trends to vitrification, a factor B gauging the strength of the bond potential with respect to the long-range potential (i. e. the intramolecular or intermolecular potential between indirectly bonded beads) has been introduced. (A higher value of B leads to a preference for the highest bond lengths and a higher total energy, implying a greater tendency to vitrify.) Different cases have been considered for linear chains: no long-range potential, no bond potential and several choices for B. Furthermore, two distinct values of B have been considered for alternate bonds in linear chains. In the case of the branched chains, mixed models with different values of B for bonds in the main chain and in the branches have also been investigated. The possible presence of ordering or crystallization has been characterized by calculating the collective light scattering function of the different samples after annealing at a convenient temperature below the onset of the abrupt change in the curves associated with a thermodynamic transition. It is concluded that ordering is inherited more efficiently in the systems with branched chains and also for higher values of B. The branched molecules with the highest B values in the main chain bonds exhibit two distinct transitions in the heating curves, which may be associated with two glass transitions. This behavior has been detected experimentally for chains with relatively long flexible branches.
机译:具有键电位的键波动模型已用于研究线性链和规则排列的小分支链的玻璃化转变。获得了链能量以及磁珠跳跃的平均接受概率的冷却曲线和随后的加热曲线。为了模仿玻璃化的不同趋势,已经引入了一种测量B键强度相对于长程电势(即,间接键合的小珠之间的分子内或分子间电势)的B因子。 (B的值越高,倾向于优先使用最长的键长度和越高的总能量,这意味着更大的玻璃化趋势。)对于线性链,已经考虑了不同的情况:没有长程电势,没有键电势和多种选择此外,对于线性链中的交替键,已经考虑了B的两个不同值。对于支链,还研究了主链和支链中具有不同B值的混合模型。通过在低于与热力学转变相关的曲线的突然变化的开始以下的合适温度下退火之后计算不同样品的集体光散射函数来表征可能存在的有序化或结晶化。可以得出结论,在具有支链的系统中以及对于更高的B值,排序更有效率地继承。在主链键中具有最高B值的支链分子在加热曲线中表现出两个不同的跃迁,这可能与两个玻璃过渡。对于具有相对较长的柔性分支的链,已通过实验检测到此行为。

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