A microfluidic methodology to identify the mechanical properties of capsules: comparison with a microrheometric approach

IF 2.8 Q2 MECHANICS Flow (Cambridge, England) Pub Date : 2021-09-17 DOI:10.1017/flo.2021.8
Xingpeng Wang, Adlan Merlo, C. Dupont, A. Salsac, D. Barthès-Biesel
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引用次数: 4

Abstract

Graphical Abstract We present a microfluidic method to measure the elastic properties of a population of microcapsules (liquid drops enclosed by a thin hyperelastic membrane). The method is based on the observation of flowing capsules in a cylindrical capillary tube and an automatic inverse analysis of the deformed profiles. The latter requires results from a full numerical model of the fluid–structure interaction accounting for nonlinear membrane elastic properties. For ease of use, we provide them under the form of databases, when the initially spherical capsule has a membrane governed by a neo-Hookean or a general Hooke's law with different surface Poisson ratios. Ultimately, the microfluidic method yields information on the type of elastic constitutive law that governs the capsule wall material together with the value of the elastic parameters. The method is applied to a population of ovalbumin microcapsules and is validated by means of independent experiments of the same capsules subjected to a different flow in a microrheological device. This is of great interest for quality control purposes, as small samples of capsule suspensions can be diverted to a measuring test section and mechanically tested with a 10 % precision using an automated process.
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一种确定胶囊机械性能的微流体方法:与微流变方法的比较
图形摘要我们提出了一种微流体方法来测量微胶囊群体(由薄超弹性膜包裹的液滴)的弹性特性。该方法基于对圆柱形毛细管中流动胶囊的观察和对变形轮廓的自动反分析。后者需要考虑非线性膜弹性特性的流体-结构相互作用的完整数值模型的结果。为了便于使用,当最初的球形胶囊具有由具有不同表面泊松比的新胡克定律或一般胡克定律控制的膜时,我们以数据库的形式提供它们。最终,微流体方法产生关于控制胶囊壁材料的弹性本构定律类型以及弹性参数值的信息。该方法应用于卵清蛋白微胶囊群体,并通过在微流变装置中对相同胶囊进行不同流量的独立实验进行验证。出于质量控制的目的,这是非常令人感兴趣的,因为胶囊悬浮液的小样本可以转移到测量测试部分,并使用自动化过程以10%的精度进行机械测试。
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