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首页> 外文期刊>Journal of Rheology >Approximations of the discrete slip-link model and their effect on nonlinear rheology predictions
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Approximations of the discrete slip-link model and their effect on nonlinear rheology predictions

机译:离散滑环模型的逼近及其对非线性流变学预测的影响

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摘要

The discrete slip-link model (DSM) was developed to describe the dynamics of flexible polymer melts. The model is able to predict linear viscoelasticity of monodisperse linear, polydisperse linear, and branched systems. The model also shows good agreement with dielectric relaxation experiments, except for the single data set available for bidisperse linear systems with a small volume fraction of long chains. In this work, both shear and elongational flow predictions obtained using the DSM without parameter adjustment are shown. Model predictions for shear flow agree very well with experimental results. The DSM is able to capture the transient response as well as the steady-state viscosity. However, for elongational flow, agreement is unsatisfactory at large strains. The DSM captures the onset of strain hardening, but after a Hencky strain between 2 and 3, it predicts transient strain softening, whereas experiments show only monotonic growth. We explore a number of assumptions and approximations of the model and their effect on flow predictions. The approximations are related to the neglect of these phenomena, which are expected to be more sensitive in elongational flow: finite extensibility, convective constraint release, and deformation of dangling ends. We indeed find that shear flow predictions are insensitive to these approximations, but elongational flow is affected. However, none of these effects is able to bring prediction in line with experiments. We conclude that the currently accepted view of entanglement dynamics is incomplete.
机译:建立了离散滑环模型(DSM)来描述柔性聚合物熔体的动力学。该模型能够预测单分散线性,多分散线性和分支系统的线性粘弹性。该模型还显示出与介电弛豫实验的良好一致性,除了具有小体积分数长链的双分散线性系统可用的单个数据集。在这项工作中,显示了在不进行参数调整的情况下使用DSM获得的剪切流动和伸长流动预测。剪切流的模型预测与实验结果非常吻合。 DSM能够捕获瞬态响应以及稳态粘度。然而,对于伸长流动,在大应变下一致性不能令人满意。 DSM捕获了应变硬化的开始,但是在Hencky应变介于2和3之间之后,它预测了瞬时应变软化,而实验表明仅单调增长。我们探索了模型的许多假设和近似及其对流量预测的影响。近似值与这些现象的忽略有关,预计这些现象在伸长流动中更为敏感:有限的可扩展性,对流约束释放和悬空端的变形。我们确实发现,剪切流预测对这些近似值不敏感,但伸长率流受到影响。但是,这些影响均无法使预测与实验保持一致。我们得出结论,目前对纠缠动力学的看法是不完整的。

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