首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Simultaneous Interfacial Rheology and Microstructure Measurement of Densely Aggregated Particle Laden Interfaces Using a Modified Double Wall Ring Interfacial Rheometer
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Simultaneous Interfacial Rheology and Microstructure Measurement of Densely Aggregated Particle Laden Interfaces Using a Modified Double Wall Ring Interfacial Rheometer

机译:使用改进的双壁环界面流变仪同时进行界面流变学和高密度聚集颗粒界面的微结构测量

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The study of particle laden interfaces has increased significantly due to the increasing industrial use of particle stabilized foams and Pickering emulsions, whose bulk rheology and stability are highly dependent on particle laden interface's interfacial rheology, which is a function of interfacial microstructure. To understand the physical mechanisms that dictate interfacial rheology of particle laden interfaces requires correlating rheology to microstructure. To achieve this goal, a double wall ring interfacial rheometer has been modified to allow real time, simultaneous interfacial visualization and shear rheology measurements. The development of this tool is outlined, and its ability to provide novel and unique measurements is demonstrated on a sample system. This tool has been used to examine the role of microstructure on the steady shear rheology of densely packed, aggregated particle laden interfaces at three surface concentrations. Through examination of the rheology and analysis of interfacial microstructure response to shear, a transition from shear thinning due to aggregated cluster breakup to yielding at a slip plane within the interface has been identified. Interestingly, it is found that aggregated interfaces transition to yielding well before they reached a jammed state. Furthermore, these systems undergo significant shear induced order when densely packed. These results indicate that the mechanics of these interfaces are not simply jammed or unjammed and that the interfacial rheology relationship with microstructure can give us significant insight into understanding how to engineer particle laden interfaces in the future. By examining both rheology and microstructure, the mechanisms that dictate observed rheology are now understood and can be used to predict and control the rheology of the interface.
机译:由于对颗粒稳定的泡沫和Pickering乳液的工业用途的增加,对含颗粒界面的研究已大大增加,其稳定的流变学和稳定性在很大程度上取决于含颗粒界面的界面流变性,而界面流变是界面微观结构的函数。要了解决定载有颗粒的界面的界面流变学的物理机制,需要将流变学与微观结构相关联。为实现此目标,对双壁环界面流变仪进行了修改,以实现实时,同时界面可视化和剪切流变学测量。概述了该工具的开发,并在示例系统上演示了其提供新颖独特的测量的能力。该工具已被用于检验微观结构在三种表面浓度下对密集堆积,聚集颗粒的界面稳定剪切流变学的作用。通过流变学检查和界面微观结构对剪切的响应分析,已经确定了由于聚集的团簇破裂而导致的剪切变稀到界面内滑动面屈服的过渡。有趣的是,发现聚合的接口在达到阻塞状态之前已经过渡到屈服。此外,这些系统在密集堆积时会经历明显的剪切诱导顺序。这些结果表明,这些界面的力学并非简单地被堵塞或未被堵塞,并且与微观结构的界面流变学关系可以使我们对理解将来如何设计载有颗粒的界面有重要的了解。通过检查流变学和微观结构,现在可以理解指示观察到的流变学的机理,并且可以将其用于预测和控制界面的流变学。

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