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A modified De-Gennes's trumpet model for the prediction of practical adhesion of dynamically- and structurally heterogeneous polymeric networks on solid surfaces

机译:修改后的De-Gennes小号模型,用于预测固体表面上动态和结构上不均匀的聚合物网络的实际附着力

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摘要

A theoretical model was proposed which can explain the practical adhesion energy of highly heterogeneous glassy polymeric networks on solid surfaces. In this paper the "trumpet model" of de-Gennes was modified to cover the case of adhesion of such networks. The contributions of dynamic and structural heterogeneity of the network in the practical adhesion energy were considered by incorporating the distribution parameter (beta in KWW model) and interfacial strength terms into the trumpet model. The basic parameters of the proposed model were extracted from dynamic and static mechanical tests. It was found that the proposed model is able to predict the practical adhesion energy of both heterogeneous and highly heterogeneous networks. A very good agreement was found between the predicted values of the adhesion energy and its actual values in case of nine different photopolymerizable compositions exhibiting a relatively wide range of dynamic and structural heterogeneities.
机译:提出了理论模型,该模型可以解释在固体表面上高度不均匀的玻璃状聚合物网络的实际粘附能。在本文中,对de-Gennes的“小号模型”进行了修改,以涵盖此类网络的粘附情况。通过将分布参数(KWW模型中的beta)和界面强度项合并到小号模型中,考虑了网络的动态和结构异质性对实际粘附能的贡献。该模型的基本参数是从动态和静态力学测试中提取的。已经发现,提出的模型能够预测异构网络和高度异构网络的实际粘附能。在九种不同的表现出相对广泛的动态和结构异质性的可光聚合组合物的情况下,在粘附能的预测值与其实际值之间发现了很好的一致性。

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