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Study of the interactions between poly(ethylene oxide) and anionic surfactants in elongational flow.

机译:拉伸流动中聚环氧乙烷与阴离子表面活性剂之间相互作用的研究。

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The rheology of polymer solutions is important in a wide variety of applications. In particular, solutions of high-molecular-weight, flexible polymers exhibit an increase in their apparent extensional viscosity with strain rate under extensional flow conditions. This extension thickening is due to formation of transient entanglements of polymer molecules. Certain commercial fluids contain both polymers and surfactants that might interact at the molecular level. These interactions affect the conformation of the polymer chain and, therefore, the rheological behavior of the solution. For instance, addition of anionic surfactants to solutions of nonionic polymers is known to induce increases in the shear viscosity of aqueous solution. This work investigates the behavior of aqueous solutions of a high-molecular-weight poly(ethylene oxide) (PEO), a nonionic, flexible polymer, and the anionic surfactants sodium dodecyl sulfate (SDS), sodium dodecyl benzene sulfonate (SDBS) and a commercial α-olefin sulfonate (AOS) in extensional flows. The extensional rheology of polymer/surfactant solutions is studied in an opposed-jets device, which generates a flow field close to uniaxial extension. For PEO/SDS mixtures, the results show that formation of micellar aggregates of SDS along the PEO chains results in an increase in the strength of extension thickening of PEO solutions by promoting intermolecular interactions between polymer chains. The minimum PEO concentration required to form intermolecular entanglements is substantially reduced in the presence of micellar aggregates. In solutions containing NaCl, intramolecular interactions are observed at low PEO concentrations. These reduce the strength of extension thickening. Addition of a co-solvent is investigated. The presence of alcohols in the aqueous solutions affects their rheology by changing the solvent nature for both PEO and SDS. In particular, n-octanol promotes aggregation of SDS along the PEO chains, enhancing intermolecular network formation in extensional flow. Results with mixtures of PEO with sulfonated surfactants (SDBS and AOS) show that both intermolecular and intramolecular interactions are promoted by these surfactants, depending on PEO concentration and molecular weight. The effect of ageing on these polymer/surfactant systems was studied. In extensional flows, extension thickening is suppressed in solutions of PEO with SDBS or AOS over a few-day period, whereas PEO and PEO/SDS solutions show no change.
机译:聚合物溶液的流变性在多种应用中很重要。特别地,高分子量,柔性聚合物的溶液在拉伸流动条件下表现出其表观拉伸粘度随应变速率的增加。这种延伸增厚是由于聚合物分子的瞬时缠结的形成。某些商业流体同时包含可能在分子水平上相互作用的聚合物和表面活性剂。这些相互作用影响聚合物链的构象,并因此影响溶液的流变性。例如,已知将阴离子表面活性剂添加到非离子聚合物溶液中会引起水溶液的剪切粘度增加。这项工作研究了高分子量聚环氧乙烷(PEO),一种非离子型柔性聚合物以及阴离子表面活性剂十二烷基硫酸钠(SDS),十二烷基苯磺酸钠(SDBS)和一氧化碳的水溶液的行为。市售α-烯烃磺酸盐(AOS)。在对置射流装置中研究了聚合物/表面活性剂溶液的延伸流变性,该装置产生接近单轴延伸的流场。对于PEO / SDS混合物,结果表明,沿着PEO链形成SDS的胶束聚集体,可通过促进聚合物链之间的分子间相互作用来增加PEO溶液的延伸增稠强度。在存在胶束聚集体的情况下,形成分子间缠结所需的最小PEO浓度显着降低。在含有NaCl的溶液中,在低PEO浓度下观察到分子内相互作用。这些降低了延伸增稠的强度。研究了助溶剂的添加。水溶液中醇的存在会通过改变PEO和SDS的溶剂性质来影响其流变性。特别地,正辛醇促进SDS沿PEO链的聚集,增强延伸流中分子间网络的形成。 PEO与磺化表面活性剂(SDBS和AOS)的混合物的结果表明,取决于PEO的浓度和分子量,这些表面活性剂可促进分子间和分子内的相互作用。研究了老化对这些聚合物/表面活性剂体系的影响。在延伸流中,在几天内,使用SDBS或AOS的PEO解决方案中的延伸增稠得到抑制,而PEO和PEO / SDS解决方案没有变化。

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