The Physics of Dense Suspensions

IF 14.3 1区 物理与天体物理 Q1 PHYSICS, CONDENSED MATTER
C. Ness, Ryohei Seto, R. Mari
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引用次数: 20

Abstract

Dense suspensions of particles are relevant to many applications and are a key platform for developing a fundamental physics of out-of-equilibrium systems. They present challenging flow properties, apparently turning from liquid to solid upon small changes in composition or, intriguingly, in the driving forces applied to them. The emergent physics close to the ubiquitous jamming transition (and to some extent the glass and gelation transitions) provides common principles with which to achieve a consistent interpretation of a vast set of phenomena reported in the literature. In light of this, we review the current state of understanding regarding the relation between the physics at the particle scale and the rheology at the macroscopic scale. We further show how this perspective opens new avenues for the development of continuum models for dense suspensions.
稠密悬浮液的物理学
粒子的密集悬浮液与许多应用有关,是发展非平衡系统基本物理学的关键平台。它们表现出具有挑战性的流动特性,明显地在成分的微小变化上从液体变成固体,或者有趣的是,在施加于它们的驱动力上。接近无所不在的干扰跃迁(在某种程度上还有玻璃化和凝胶化的跃迁)的涌现物理学提供了共同的原理,用它来实现对文献中报道的大量现象的一致解释。鉴于此,我们回顾了目前对颗粒尺度物理与宏观尺度流变之间关系的认识现状。我们进一步展示了这种观点如何为密集悬浮液的连续统模型的发展开辟了新的途径。
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来源期刊
Annual Review of Condensed Matter Physics
Annual Review of Condensed Matter Physics PHYSICS, CONDENSED MATTER-
CiteScore
47.40
自引率
0.90%
发文量
27
期刊介绍: Since its inception in 2010, the Annual Review of Condensed Matter Physics has been chronicling significant advancements in the field and its related subjects. By highlighting recent developments and offering critical evaluations, the journal actively contributes to the ongoing discourse in condensed matter physics. The latest volume of the journal has transitioned from gated access to open access, facilitated by Annual Reviews' Subscribe to Open initiative. Under this program, all articles are now published under a CC BY license, ensuring broader accessibility and dissemination of knowledge.
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