Dinic Jelena, Zhang Yiran, Jimenez Leidy Nallely, Sharma Vivek
Department of Chemical Engineering, University of Illinois at Chicago, Chicago, Illinois 60607, United States.
ACS Macro Lett. 2015 Jul 21;4(7):804-808. doi: 10.1021/acsmacrolett.5b00393. Epub 2015 Jul 13.
We show that visualization and analysis of capillary-driven thinning and pinch-off dynamics of the columnar neck in an asymmetric liquid bridge created by dripping-onto-substrate can be used for characterizing the extensional rheology of complex fluids. Using a particular example of dilute, aqueous PEO solutions, we show the measurement of both the extensional relaxation time and extensional viscosity of weakly elastic, polymeric complex fluids with low shear viscosity 20 mPa·s and relatively short relaxation time, λ < 1 ms. Characterization of elastic effects and extensional relaxation times in these dilute solutions is beyond the range measurable in the standard geometries used in commercially available shear and extensional rheometers (including CaBER, capillary breakup extensional rheometer). As the radius of the neck that connects a sessile drop to a nozzle is detected optically, and the extensional response for viscoelastic fluids is characterized by analyzing their elastocapillary self-thinning, we refer to this technique as optically-detected elastocapillary self-thinning dripping-onto-substrate (ODES-DOS) extensional rheometry.
我们表明,通过对液滴滴落到基底上形成的不对称液桥中柱状颈部的毛细驱动变细和夹断动力学进行可视化和分析,可用于表征复杂流体的拉伸流变学。以稀的聚氧化乙烯(PEO)水溶液为例,我们展示了对低剪切粘度(<20 mPa·s)且松弛时间相对较短(λ < 1 ms)的弱弹性聚合物复杂流体的拉伸松弛时间和拉伸粘度的测量。这些稀溶液中弹性效应和拉伸松弛时间的表征超出了市售剪切和拉伸流变仪(包括CaBER,毛细管破裂拉伸流变仪)所使用的标准几何形状可测量的范围。由于通过光学检测连接固定液滴和喷嘴的颈部半径,并通过分析其弹性毛细管自变细来表征粘弹性流体的拉伸响应,我们将此技术称为光学检测弹性毛细管自变细液滴滴落至基底(ODES-DOS)拉伸流变学。