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首页> 外文期刊>Journal of Rheology >Variations of the Herschel-Bulkley exponent reflecting contributions of the viscous continuous phase to the shear rate-dependent stress of soft glassy materials
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Variations of the Herschel-Bulkley exponent reflecting contributions of the viscous continuous phase to the shear rate-dependent stress of soft glassy materials

机译:Herschel-Bulkley指数反映粘性连续阶段对软玻璃材料剪切速率依赖性应力的变化

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摘要

We explore the flow behavior of concentrated emulsions for which the viscosity of the continuous phase can be significantly varied by changing the temperature. The exponents obtained by fitting the shear rate-dependent stress with the popular Herschel-Bulkley (HB) model display a systematic dependence on the viscosity of the continuous phase, revealing that viscous dissipation via the suspending fluid cannot be neglected in the description of the flow behavior of soft glassy systems. We thus propose a simple constitutive equation that accounts for three distinct dissipation mechanisms: elastic, plastic, and viscous dissipation. This three component model describes the flow behavior of soft glassy materials as accurately as the HB model, albeit maintaining a clear physical insight into the dissipation processes at work.
机译:我们探讨浓缩乳液的流动性能,通过改变温度,可以显着变化连续相的粘度。 通过与流行的Herschel-Bulkley(HB)模型拟合剪切速率依赖应力而获得的指数显示了对连续相的粘度的系统依赖性,揭示在流动的描述中不能忽略通过悬浮液的粘性耗散 软玻璃系统的行为。 因此,我们提出了一种简单的本组成方程,占三种不同的耗散机制:弹性,塑料和粘性耗散。 这三个组件模型描述了软玻璃材料的流动性能,作为HB模型,尽管保持清晰的物理洞察在工作中的耗散过程中。

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