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首页> 外文期刊>Rheologica Acta: An International Journal of Rheology >Nonlinear rheological properties and stability of dibenzylidene sorbitol fiber networks in poly(propylene oxide)
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Nonlinear rheological properties and stability of dibenzylidene sorbitol fiber networks in poly(propylene oxide)

机译:聚环氧丙烷中二亚苄基山梨糖醇纤维网络的非线性流变特性和稳定性

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摘要

Dibenzylidene sorbitol (DBS) is known to gel organic liquids and polymers such as poly(propylene oxide) (PPO) by forming long fibers and fiber networks. Potential applications of these networks depend on their ability to withstand large deformations without significant morphological changes. Therefore, we studied the nonlinear rheological properties of the DBS fiber network in PPO for different DBS concentrations. We found that the concentration dependence of critical deformation (transition from linear to nonlinear viscoelastic region) and gel strength (G' plateau in the linear region) can be explained on the basis of a model for densely cross-linked fiber gels (MacKintosh et al., Phys Rev Lett 75:4425-4428, 1995). Performing periodic strain sweeps, we found that the decrease in gel strength during the deformation cycles can be ascribed to reversible fiber coarsening. Additionally, start-up experiments showed a strong shear thinning behavior, which is in quantitative agreement with the SGM model (Sollich, Phys Rev E 58:738-759, 1998).
机译:已知二亚苄基山梨糖醇(DBS)通过形成长纤维和纤维网络来胶凝有机液体和聚合物,例如聚环氧丙烷(PPO)。这些网络的潜在应用取决于它们承受大变形而无明显形态变化的能力。因此,我们研究了在不同的DBS浓度下,PPO中DBS纤维网络的非线性流变特性。我们发现临界变形(从线性到非线性粘弹性区域的转变)和凝胶强度(线性区域的G'平稳期)的浓度依赖性可以在致密交联纤维凝胶模型的基础上进行解释(MacKintosh等(例如,Phys Rev Lett 75:4425-4428,1995)。进行周期性的应变扫描,我们发现在变形周期中凝胶强度的下降可归因于可逆的纤维粗化。另外,启动实验显示了很强的剪切稀化行为,这与SGM模型在定量上是一致的(Sollich,Phys Rev E 58:738-759,1998)。

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