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首页> 外文期刊>Acta biomaterialia >On the role of the filament length distribution in the mechanics of semiflexible networks.
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On the role of the filament length distribution in the mechanics of semiflexible networks.

机译:关于细丝长度分布在半柔性网络力学中的作用。

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This paper explores the effects of filament length polydispersity on the mechanical properties of semiflexible crosslinked polymer networks. Extending previous studies on monodisperse networks, we compute numerically the response of crosslinked networks of elastic filaments of bimodal and exponential length distributions. These polydisperse networks are subject to the same affine to nonaffine (A/NA) transition observed previously for monodisperse networks, wherein the decreases in either crosslink density or bending stiffness lead to a shift from affine, stretching-dominated deformations to nonaffine, bending-dominated deformations. We find that the onset of this transition is generally more sensitive to changes in the density of longer filaments than shorter filaments, meaning that longer filaments have greater mechanical efficiency. Moreover, in polydisperse networks, mixtures of long and short filaments interact cooperatively to generally produce a nonaffine mechanical response closer to the affine prediction than comparable monodisperse networks of either long or short filaments. Accordingly, the mechanical affinity of polydisperse networks is dependent on the filament length composition. Overall, length polydispersity has the effect of sharpening and shifting the A/NA transition to lower network densities. We discuss the implications of these results on experimental observation of the A/NA transition, and on the design of advanced materials.
机译:本文探讨了长丝长度多分散性对半柔性交联聚合物网络力学性能的影响。扩展了以前对单分散网络的研究,我们在数值上计算了双峰弹性纤维和指数长度分布的交联网络的响应。这些多分散网络经历了以前观察到的单分散网络相同的仿射到非仿射(A / NA)过渡,其中交联密度或弯曲刚度的下降导致从仿射,拉伸为主的变形转变为非仿射,弯曲为主变形。我们发现,这种转变的开始通常比长丝的长丝对密度的变化更敏感,这意味着长丝的机械效率更高。而且,在多分散网络中,长和短长丝的混合物相互作用相互作用,通常产生比长或短长丝的可比单分散网络更接近于仿射预测的非仿射机械响应。因此,多分散网络的机械亲和力取决于长丝长度组成。总的来说,长度多分散性具有使A / NA过渡变尖锐并将其转移到较低网络密度的作用。我们讨论了这些结果对A / NA过渡的实验观察以及先进材料设计的影响。

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