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Design Of An Optofluidic Device For The Measurement Of The Elastic Modulus Of Deformable Particles

机译:用于测量可变形颗粒弹性模量的光流装置的设计

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Suspensions carrying deformable inclusions are ubiquitous in nature and applications. Hence, high-throughput characterization of the mechanical properties of soft particles is of great interest. Recently, a non-invasive optofluidic technique has been developed for the measurement of the interfacial tension between two immiscible liquids [8]. We have adapted such technique to the case of soft solid beads, thus designing a non-invasive optofluidic device for the measurement of the mechanical properties of deformable particles from real-time optical imaging of their deformation. The device consists of a cylindrical microfluidic channel with a cross-section reduction in which we make initially spherical soft beads flow suspended in a Newtonian carrier. By imaging the deformation of a particle in real time while it goes through the constriction, it is possible to get a measure of its elastic modulus through a theoretically derived-correlation. We provide both experimental and numerical validation of our device.
机译:带有可变形夹杂物的悬浮液在自然界和应用中无处不在。因此,非常关注软颗粒的机械性能的高通量表征。最近,已经开发出一种非侵入性的光流体技术来测量两种不混溶液体之间的界面张力[8]。我们已经将这种技术适应于软固体珠粒的情况,因此设计了一种非侵入性的光流控设备,用于根据其变形的实时光学成像来测量可变形粒子的机械性能。该设备由横截面缩小的圆柱形微流体通道组成,在该通道中,我们使球形的软珠最初悬浮在牛顿载体中。通过实时观察粒子在收缩过程中的变形,可以通过理论推导的相关性来度量其弹性模量。我们提供设备的实验和数值验证。

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