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首页> 外文期刊>Rheologica Acta: An International Journal of Rheology >Heterogeneity, suspension, and yielding in sparse microfibrous cellulose gels 2: strain rate-dependent two-fluid behavior
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Heterogeneity, suspension, and yielding in sparse microfibrous cellulose gels 2: strain rate-dependent two-fluid behavior

机译:稀疏微纤维纤维素凝胶2:应变率依赖性两流体行为的异质性,悬浮液和屈服

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摘要

Complex fluids are widely used in formulated products to impart rheological properties like stability, performance, and aesthetics. Yield stress fluids are a particularly important example, enabling applications like particle suspension, surface coating, and therapeutic delivery. Recent work has shown that particle suspension in yield stress fluids can be a strong function of yielding and flow heterogeneities, especially in anisotropic fiber dispersions. This work uses a microbubble technique to study the deformation before and during yielding of microfibrous cellulose suspensions. We note significant variations in suspension performance as a result of fiber rearrangement and heterogeneities. Strong strain rate dependencies are found to vary local network yield strength, and confocal microscopy quantifies structural reinforcement and deformation rate effects. The observed behavior indicates a two-fluid interpretation may help interpret sparse network flow and suspension properties.
机译:复杂的液体广泛用于配制的产品中,以赋予稳定性,性能和美观等流变性质。 屈服应力流体是特别重要的实例,使得能够像颗粒悬浮液,表面涂层和治疗递送等应用。 最近的工作表明,屈服应力流体的颗粒悬浮液可以是产生和流动异质性的强函数,尤其是各向异性纤维分散体。 这项工作采用微泡技术来研究在微纤维纤维素悬浮液的屈服之前和期间的变形。 我们注意到由于纤维重排和异质性导致悬浮性能的显着变化。 发现强应变率依赖性改变局部网络屈服强度,共聚焦显微镜量量化了结构增强和变形率效应。 观察到的行为表示双流体解释可以有助于解释稀疏网络流和悬架属性。

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