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Rheology of concentrated xanthan gum solutions: Steady shear flow behavior

机译:浓缩黄原胶溶液的流变性:稳定的剪切流动行为

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Using a strain-controlled rheometer, the steady shear flow properties of aqueous xanthan gum solutions of different concentrations were measured over a wide range of shear rates. In this article, both the shear rate and concentration dependencies of steady shear flow behavior are reported from the experimentally obtained data. The viscous behavior is quantitatively discussed using a well-known power law type flow equation with a special emphasis on its importance in industrial processing and actual usage. In addition, several inelastic-viscoplastic flow models including a yield stress parameter are employed to make a quantitative evaluation of the steady shear flow behavior, and then the applicability of these models is also examined in detail. Finally, the elastic nature is explained with a brief comment on its practical significance. Main results obtained from this study can be summarized as follows: (1) Concentrated xanthan gum solutions exhibit a finite magnitude of yield stress. This may come from the fact that a large number of hydrogen bonds in the helix structure result in a stable configuration that can show a resistance to flow. (2) Concentrated xanthan gum solutions show a marked non-Newtonian shear-thinning behavior which is well described by a power law flow equation and may be interpreted in terms of the conformational status of the polymer molecules under the influence of shear flow. This rheological feature enhances sensory qualities in food, pharmaceutical, and cosmetic products and guarantees a high degree of mixability, pumpability, and pourability during their processing and/or actual use. (3) The Herschel-Bulkley, Mizrahi-Berk, and Heinz-Casson models are all applicable and have equivalent ability to describe the steady shear flow behavior of concentrated xanthan gum solutions, whereas both the Bingham and Casson models do not give a good applicability. (4) Concentrated xanthan gum solutions exhibit a quite important elastic flow behavior which acts as a significant factor for many industrial applications such as food, pharmaceutical, and cosmetic manufacturing processes.
机译:使用应变控制的流变仪,可以在很宽的剪切速率范围内测量不同浓度的黄原胶水溶液的稳定剪切流性能。在本文中,从实验获得的数据中报告了剪切速率和稳态剪切流行为的浓度依赖性。使用众所周知的幂律型流量方程对粘性行为进行了定量讨论,其中特别强调了它在工业加工和实际使用中的重要性。此外,还采用了包括屈服应力参数在内的几种非弹性-粘塑性流动模型对稳态剪切流动行为进行了定量评估,然后还详细研究了这些模型的适用性。最后,通过对弹性性质的实际意义的简要说明来解释弹性性质。从这项研究中获得的主要结果可以概括如下:(1)浓缩的黄原胶溶液显示出有限的屈服应力。这可能来自以下事实:螺旋结构中的大量氢键会导致显示出流动阻力的稳定构型。 (2)浓缩的黄原胶溶液显示出显着的非牛顿剪切稀化行为,其通过幂律流方程很好地描述,并且可以根据剪切流影响下的聚合物分子的构象状态来解释。这种流变学特性提高了食品,药品和化妆品的感官品质,并确保了在加工和/或实际使用过程中的高度可混合性,可泵送性和可倾倒性。 (3)Herschel-Bulkley,Mizrahi-Berk和Heinz-Casson模型均适用,并且具有等效的能力来描述浓缩的黄原胶溶液的稳态剪切流动行为,而Bingham和Casson模型均未提供良好的适用性。 。 (4)浓缩的黄原胶溶液显示出非常重要的弹性流动行为,这对于许多工业应用(例如食品,制药和化妆品制造过程)是一个重要因素。

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