Lämmel Marc, Jaschinski Evelin, Merkel Rudolf, Kroy Klaus
Institut für theoretische Physik, Universität Leipzig, Postfach 100920, 04009 Leipzig, Germany.
Institute of Complex Systems 7: Biomechanics, Forschungszentrum Jülich, 52425 Jülich, Germany.
Polymers (Basel). 2016 Sep 28;8(10):353. doi: 10.3390/polym8100353.
We study the influence of finite shear deformations on the microstructure and rheology of solutions of entangled semiflexible polymers theoretically and by numerical simulations and experiments with filamentous actin. Based on the tube model of semiflexible polymers, we predict that large finite shear deformations strongly affect the average tube width and curvature, thereby exciting considerable restoring stresses. In contrast, the associated shear alignment is moderate, with little impact on the average tube parameters, and thus expected to be long-lived and detectable after cessation of shear. Similarly, topologically preserved hairpin configurations are predicted to leave a long-lived fingerprint in the shape of the distributions of tube widths and curvatures. Our numerical and experimental data support the theory.
我们通过理论分析、数值模拟以及对丝状肌动蛋白进行实验,研究了有限剪切变形对缠结半柔性聚合物溶液的微观结构和流变学的影响。基于半柔性聚合物的管道模型,我们预测大的有限剪切变形会强烈影响平均管道宽度和曲率,从而激发相当大的恢复应力。相比之下,相关的剪切排列较为适度,对平均管道参数影响较小,因此预计在剪切停止后会长期存在且可检测到。同样,预测拓扑结构保持不变的发夹构型会在管道宽度和曲率分布形状上留下长期存在的印记。我们的数值和实验数据支持这一理论。