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首页> 外文期刊>Journal of Rheology >Modeling the effect of plasticizer on the viscoelastic response of crosslinked polymers using the tube-junction model
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Modeling the effect of plasticizer on the viscoelastic response of crosslinked polymers using the tube-junction model

机译:使用管结模型来模拟增塑剂对交联聚合物粘弹性响应的影响

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摘要

Plasticizers modify the mechanical properties of polymeric materials. The effects of plasticizers on glass transition temperatures can be most clearly observed in isochronal temperature sweep profiles of viscoelastic dynamic moduli. However, no simple mathematical models of plasticization are available to those who wish to design and employ plasticized materials in specific applications. We extend a phenomenological, molecular-level model (known as the tube-junction model) for crosslinked polymers to describe the effect of plasticizers on dynamic moduli. We show that the increase in free volume fraction due to the presence of the plasticizer can account for the shift in the glass transition in dynamic moduli. We also show that the secondary effects of plasticizers on the shape of the temperature sweep profiles can be explained in terms of increased width of the distribution of activation energies associated with intermolecular frictional forces.
机译:增塑剂会改变聚合物材料的机械性能。在粘弹性动态模量的等时温度扫描曲线中可以最清楚地观察到增塑剂对玻璃化转变温度的影响。但是,对于那些希望在特定应用中设计和使用增塑材料的人,没有简单的增塑数学模型可用。我们扩展了交联聚合物的现象学,分子水平的模型(称为管结模型),以描述增塑剂对动态模量的影响。我们表明,由于增塑剂的存在,自由体积分数的增加可以解释动态模量中玻璃化转变的变化。我们还表明,增塑剂对温度扫描曲线形状的次要影响可以用与分子间摩擦力相关的活化能分布宽度的增加来解释。

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