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Rheological study of transient networks with junctions of limited multiplicity

机译:具有有限多重结的瞬态网络的流变学研究

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摘要

We theoretically study the viscoelastic and thermodynamic properties of transient gels comprised of telechelic associating polymers. We extend classical theories of transient networks so that correlations among polymer chains through the network junctions are taken into account This extension enables us to investigate how rheological quantities such as elastic modulus, viscosity and relaxation time are affected by the association equilibrium, and how these quantities' are related to the aggregation number (or multiplicity) of the junctions. In this paper, we assume in the conventional manner, that chains are elastically effective if both their ends are connected with other chains. It is shown that the dynamic shear moduli are well described in terms of the Maxwell model As a result of the correlation, the reduced moduli (moduli divided by the polymer concentration) increase with the concentration, but become independent of the concentration in the high-concentration range. The fraction of pairwise junctions is larger at lower concentrations indicating the presence of concatenated chains in the system, which decreases as the concentration increases. This leads to a network relaxation time that increases with the concentration.
机译:我们从理论上研究了由遥螯缔合聚合物组成的瞬态凝胶的粘弹性和热力学性质。我们扩展了瞬态网络的经典理论,以便考虑通过网络结点的聚合物链之间的相关性。这种扩展使我们能够研究流变量(例如弹性模量,粘度和弛豫时间)如何受到缔合平衡的影响,以及这些量如何'与结点的聚集数(或多重性)有关。在本文中,我们以常规方式假设,如果链的两端与其他链连接,则该链是弹性有效的。结果表明,根据麦克斯韦模型很好地描述了动态剪切模量。相关性的结果是,降低的模量(模量除以聚合物浓度)随浓度的增加而增加,但与高浓度下的浓度无关。浓度范围。成对连接的分数在较低浓度下较大,表明系统中存在串联链,随着浓度的增加,该链数减少。这导致网络弛豫时间随浓度的增加而增加。

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