Department of Chemical Engineering, National Chung Cheng University, Chia Yi 621, Taiwan.
Soft Matter. 2020 Jul 7;16(25):5933-5941. doi: 10.1039/d0sm00520g. Epub 2020 Jun 16.
We have conducted comprehensive rheological and rheo-birefringence characterizations of a series of semidilute ethyl cellulose (EC)/α-terpineol dispersions under steady shear flow. The EC dispersions investigated have commonly been utilized as a binder agent in fabricating metal/metal-oxide pastes for a number of industrial applications, and were recently demonstrated to foster nearly monodisperse spherical aggregates under dilute conditions. Herein, semidilute EC dispersions are shown to exhibit rheological features practically no different from those known for standard entangled polymer solutions. The corresponding rheo-birefringence responses, however, reveal microstructural features that are reminiscent of general colloidal systems. The steady-state feature reveals a universal stress-birefringence relationship at various EC concentrations, along with a common critical stress (∼200 Pa) at which the EC network breaks into smaller clusters. The transient feature displays prominent and long-persisting periodic oscillations that have previously been observed only for nearly monodisperse rod-like colloids or liquid crystals. The overall findings shed new light on the role of EC serving as a commonplace polymer binder in industry and, from a scientific perspective, raise interesting questions related to the characteristic rheological and microstructural features of general polymer dispersions in overlapped regimes.
我们在稳态剪切流下对一系列半浓乙基纤维素(EC)/α-松油醇分散体进行了全面的流变学和流变双折射特性研究。所研究的 EC 分散体通常被用作制造金属/金属氧化物糊剂的粘结剂,用于许多工业应用,并且最近在稀溶液条件下被证明能促进近单分散的球形聚集体。在此,半浓 EC 分散体表现出的流变特性与标准缠结聚合物溶液的流变特性几乎没有区别。然而,相应的流变双折射响应揭示了与一般胶体系统相似的微观结构特征。稳态特性在各种 EC 浓度下揭示了普遍的应力双折射关系,以及 EC 网络在约 200 Pa 的共同临界应力下分解成更小的簇的情况。瞬态特性显示出显著且持久的周期性振荡,这种现象以前只在近单分散棒状胶体或液晶中观察到。总的研究结果为 EC 作为工业中常见的聚合物粘结剂的作用提供了新的认识,并且从科学角度来看,提出了有关一般聚合物分散体在重叠区域的特征流变学和微观结构特征的有趣问题。