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Theoretical Model of Polymer Network Chain Formationunder Strain

机译:聚合物网络链形成的理论模型在应变下

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摘要

In this article, the polymer network chain formation through cross-linking and scission under n strain stages is studied based on the thermal fluctuation principle. The aim is to clarify the effects of chemical reactions, especially the network chain cross-linking, dangling chain cross-linking, cross-link scission, and network chain scission, on the free energy of network chain to generalize the classical two-network model. In our model, the free energy change for a chain formation is associated with the reaction sequences, except network chain cross-linking or cross-link scission reactions under the same strain stage. A new constitutive expression for network chain formed under two strain stages is derived according to affine deformation theory in which independent network hypothesis and stress-transfer function are not required. Comparison between our model and previous experimental data about recovered stretch ratio of γ-irradiated silicone elastomer validates that our model can give more precise result than previous two-network model.
机译:本文基于热涨落原理研究了在n个应变阶段通过交联和断裂产生的聚合物网络链。目的是阐明化学反应,特别是网络链交联,悬挂链交联,交联断裂和网络链断裂对网络链自由能的影响,以归纳经典的两个网络模型。在我们的模型中,链形成的自由能变化与反应序列相关,但在同一应变阶段,网络链交联或交联断裂反应除外。根据仿射变形理论推导了两个应变阶段下形成的网络链的新本构表达式,该模型不需要独立的网络假设和应力传递函数。通过将我们的模型与先前关于γ辐照的有机硅弹性体的恢复拉伸比的实验数据进行比较,可以证明我们的模型比以前的两网模型具有更精确的结果。

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