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Refractive index matching (RIM) of liquid and semi-solid materials to acrylic glass for optically measuring the mechanics in soft granular matter

机译:液体和半固体材料的折射率匹配(边缘)与丙烯酸玻璃,用于光学测量软质粒状物质中的力学

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摘要

The main context of this research is the fluid mechanical analysis of stirred chunky fruit preparations, which are typically highly loaded suspensions (ca. 50%w/w) with particles susceptible to mechanical damage. Knowledge about the transport of such particles in fluid matrices is important in natural and technical processes and can be obtained using optical measurement techniques, e.g. Particle Image Velocimetry. Matching the refractive indices of the relevant material components, a way to ensure signal reliability, is difficult for highly concentrated dispersed systems. Material properties such as plasticity and elasticity of the solid phase and the rheological behaviour of the fluid must be met simultaneously. Fluid motion across the full range of the stirred volume and the immediate surroundings of the stirrer could not be observed without successful refractive index matching of acrylic glass, stirred liquid, and suspended particles. Using the presented materials, the mechanical firmness (but not the resistance against breaking) of soft granular matter can be mimicked. The movement of gel particles in suspensions, their resulting deformation and ultimately, the inflicted damage can be observed with optical methods. The rigidity of the gels may be varied to some extent with the concentrations of the respective hydrocolloids, which, at low concentrations, have no apparent effect on the refractive index. Introducing ethanol, thickeners or other components may yield more degrees of freedom in modelling their flow behaviour. Graphic abstract
机译:该研究的主要背景是搅拌粗果实制剂的流体力学分析,其通常是高负荷的悬浮液(约50%w / w),粒子易受机械损伤的颗粒。关于流体矩阵中这种颗粒的运输的知识在天然和技术过程中是重要的,并且可以使用光学测量技术获得,例如,可以获得光学测量技术。粒子图像速度。匹配相关材料组件的折射率,一种确保信号可靠性的方法对于高度浓缩的分散系统难以实现。必须同时满足诸如固相的可塑性和弹性的材料特性,并且必须同时满足流体的流变行为。在没有成功的折射率匹配的丙烯酸玻璃,搅拌液体和悬浮颗粒的情况下,不能观察到搅拌体积的全系列搅拌体积的流体运动和搅拌器的立即周围环境。使用所提出的材料,可以模仿软粒状物质的机械坚固性(但不是抵抗抗性)。凝胶颗粒在悬浮液中的运动,它们所得到的变形和最终,可以用光学方法观察到造成的损伤。凝胶的刚性可以在一定程度上变化,随着各种水胶体的浓度,在低浓度下对折射率没有明显的影响。引入乙醇,增稠剂或其他组分可以在模拟流动行为的情况下产生更多程度的自由度。图形摘要

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