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首页> 外文期刊>Rheologica Acta >Linear viscoelastic master curves of neat and laponite-filled poly(ethylene oxide)–water solutions
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Linear viscoelastic master curves of neat and laponite-filled poly(ethylene oxide)–water solutions

机译:纯和皂石填充的聚(环氧乙烷)-水溶液的线性粘弹性主曲线

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摘要

Aqueous solutions composed of dispersed nanoparticles and entangled polymers are shown to exhibit common viscoelasticity over a range of particle and polymer concentrations. Time–temperature superposition and time–concentration superposition are applied to generate rheological master curves for neat and laponite-filled aqueous solutions of poly(ethylene oxide). The shift factors were correlated in terms of temperature and concentration and are found to differ from previous reports for ideal polymer solutions, which can be rationalized with a molecular interpretation of the structure of the laponite–polymer solutions. Laponite addition to the concentrated polymer solution is observed to increase the relaxation time but decrease the elastic modulus, which is a consequence of polymer adsorption and bridging. The addition of small amounts of laponite to stable PEO–water solutions also leads to ageing on the time scale of days.
机译:由分散的纳米颗粒和缠结的聚合物组成的水溶液显示出在一定范围的颗粒和聚合物浓度下显示出常见的粘弹性。应用时间-温度叠加和时间-浓度叠加来生成聚环氧乙烷的纯净和皂石填充水溶液的流变主曲线。位移因子在温度和浓度方面是相关的,并且发现与先前关于理想聚合物溶液的报道不同,可以通过对锂皂石-聚合物溶液结构的分子解释来合理化。观察到将皂石加入浓缩聚合物溶液中会增加弛豫时间,但会降低弹性模量,这是聚合物吸附和桥接的结果。在稳定的PEO水溶液中添加少量皂石也会导致几天的时间老化。

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