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Interfacial dilational rheology by oscillating bubble/drop methods

机译:振荡气泡/滴落法进行界面膨胀流变学

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摘要

Dilational rheology represents a powerful tool to investigate equilibrium and dynamic properties of simple and more complex interfacial layers containing surfactants, proteins, polymers or micro-nano sized particles. Concerning the experimental techniques for dilational rheology, drop/bubble tensiometers based on the acquisition of the drop/bubble profile and capillary pressure tensiometers are especially effective. This article focuses on oscillating drop/bubble methodologies where harmonic variations of the interfacial area are utilized for the measurement of the dilational viscoelasticity in the frequency domain. The increasing efficiency of these techniques of the last ten years is due, from one side, to the implementation of advanced instrumentations which make faster the drop/bubble control and the data acquisition and, on the other side, to the application of new theoretical approaches for data acquisition and interpretation. A critical analysis of such drop/bubble instruments is presented where their potentialities and limitations are underlined. Moreover, recent improvements in the definition of calculation methods based on the modelling of the experimental set up are reviewed together with some examples of experimental studies based on the utilisation of such methodologies.
机译:膨胀流变学是研究包含表面活性剂,蛋白质,聚合物或微纳米尺寸颗粒的简单且更复杂的界面层的平衡和动力学特性的强大工具。关于膨胀流变学的实验技术,基于获得的液滴/气泡轮廓和毛细管压力张力仪的液滴/气泡张力计特别有效。本文重点介绍振荡滴/泡方法,其中将界面区域的谐波变化用于频域中扩张粘弹性的测量。过去十年来,这些技术的效率不断提高,一方面是由于采用了先进的仪器,从而可以更快地进行滴/气泡控制和数据采集,另一方面是由于采用了新的理论方法用于数据采集和解释。提出了对这种跌落/气泡仪器的关键分析,其中强调了其潜力和局限性。此外,回顾了基于实验装置建模的计算方法定义的最新改进,并结合了一些基于这种方法论的实验研究实例。

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