Stephanou Pavlos S, Kröger Martin
Modeling Department, Novamechanics Ltd., P.O. Box 26014, 1666 Nicosia, Cyprus.
Department of Environmental Science and Technology, Cyprus University of Technology, PO Box 50329, 3603 Limassol, Cyprus.
Polymers (Basel). 2019 Feb 20;11(2):376. doi: 10.3390/polym11020376.
We have recently solved the tumbling-snake model for concentrated polymer solutions and entangled melts in the academic case of a monodisperse sample. Here, we extend these studies and provide the stationary solutions of the tumbling-snake model both analytically, for small shear rates, and via Brownian dynamics simulations, for a bidisperse sample over a wide range of shear rates and model parameters. We further show that the tumbling-snake model bears the necessary capacity to compare well with available linear and non-linear rheological data for bidisperse systems. This capacity is added to the already documented ability of the model to accurately predict the shear rheology of monodisperse systems.
我们最近在单分散样品的理论情况下求解了浓聚合物溶液和缠结熔体的翻滚蛇模型。在此,我们扩展这些研究,并通过解析方法给出小剪切速率下翻滚蛇模型的稳态解,同时通过布朗动力学模拟给出双分散样品在宽剪切速率范围和模型参数下的稳态解。我们进一步表明,翻滚蛇模型具有与双分散体系现有的线性和非线性流变数据进行良好比较的必要能力。这种能力加之该模型已被证明的准确预测单分散体系剪切流变学的能力。