Fifty shades of yield stress fluids: rheological challenges and engineering perspectives

IF 3 3区 工程技术 Q2 MECHANICS
P. Coussot
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引用次数: 0

Abstract

While they were still marginal around 30 years ago and even the very existence of the yield stress was still under debate, research work involving yield stress fluids has exploded over the last 20 years in rheology and physics, even to the point of sometimes appearing hackneyed. Yield stress fluids are now fully recognized as a specific state of matter by physicists and widely studied for this reason. They are also used for their remarkable mechanical behavior in a rapidly growing range of applications, notably in additive manufacturing or 3D printing in bioengineering, civil engineering, food processing, etc. This review first discusses the areas in which a sufficient knowledge might be considered acquired to be used in yield stress fluid engineering. This in particular includes the characterization of materials, through practical tests or sophisticated approaches, the use of simplistic constitutive equations or more complex models including various subtleties of behavior in view of flow simulations, a basic rheophysical framework for predicting the behavior of yielding dispersions or aggregated systems, but also for the widespread practical case of suspensions in yield stress fluids. However, there also appear large areas of major impact for which a comprehensive knowledge seems still lacking. This is in particular the case of: a relevant 3D formulation of the constitutive equation to describe the complex flows encountered in numerous applications, the physical and mechanical characteristics of the solid–liquid transition, the characterization and description of thixotropy, the transition to pasty materials, at the very frontier of “pure” solids.

五十种屈服应力流体:流变学挑战和工程观点
虽然在30年前它们还处于边缘地位,甚至屈服应力的存在仍然存在争议,但在过去的20年里,涉及屈服应力流体的研究工作在流变学和物理学领域出现了爆炸式增长,甚至到了有时显得陈腐的地步。屈服应力流体现在已被物理学家充分认识到是一种特殊的物质状态,并为此进行了广泛的研究。它们也因其卓越的机械性能而被用于快速增长的应用范围,特别是在生物工程、土木工程、食品加工等领域的增材制造或3D打印。这篇综述首先讨论了在屈服应力流体工程中可能被认为获得了足够知识的领域。这尤其包括通过实际测试或复杂方法对材料进行表征,使用简单的本构方程或更复杂的模型,包括流动模拟中各种细微的行为,预测屈服分散或聚集系统行为的基本流变物理框架,以及屈服应力流体中悬浮液的广泛实际情况。然而,似乎仍缺乏对具有重大影响的大领域的全面知识。这是特别的情况:一个相关的三维公式的本构方程来描述在许多应用中遇到的复杂流动,固体-液体转变的物理和机械特性,触变性的表征和描述,过渡到糊状材料,在“纯”固体的非常前沿。
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来源期刊
Rheologica Acta
Rheologica Acta 物理-力学
CiteScore
4.60
自引率
8.70%
发文量
55
审稿时长
3 months
期刊介绍: "Rheologica Acta is the official journal of The European Society of Rheology. The aim of the journal is to advance the science of rheology, by publishing high quality peer reviewed articles, invited reviews and peer reviewed short communications. The Scope of Rheologica Acta includes: - Advances in rheometrical and rheo-physical techniques, rheo-optics, microrheology - Rheology of soft matter systems, including polymer melts and solutions, colloidal dispersions, cement, ceramics, glasses, gels, emulsions, surfactant systems, liquid crystals, biomaterials and food. - Rheology of Solids, chemo-rheology - Electro and magnetorheology - Theory of rheology - Non-Newtonian fluid mechanics, complex fluids in microfluidic devices and flow instabilities - Interfacial rheology Rheologica Acta aims to publish papers which represent a substantial advance in the field, mere data reports or incremental work will not be considered. Priority will be given to papers that are methodological in nature and are beneficial to a wide range of material classes. It should also be noted that the list of topics given above is meant to be representative, not exhaustive. The editors welcome feedback on the journal and suggestions for reviews and comments."
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