Published on July 16, 2024–Updated on July 16, 2024
Dates
on the July 17, 2024
11h
Location
Institut de Physique de Nice
Rigidity development in shear-thickening suspensions
Exceptional seminar
Abstract:
The phenomenon of discontinuous shear thickening (DST) in concentrated suspensions has been rationalized as being due to the formation of frictional contacts formed when the imposed stress is sufficient to drive particles together. This implies a balancing resisting force, whose magnitude sets the threshold for the imposed stress to induce contacts. Thus, the number of contacts is an increasing function of stress, but it also fluctuates as the suspension flows. The resulting system can be thought of as a three-component system, composed of particles, fluid, and contacts.
The rheological behavior of highly concentrated suspensions, including DST and jamming, and the basis in the formation of contacts (and networks of these contacts) will be discussed in terms of simulation results that include hydrodynamic and frictional interactions, along with a repulsive force of short range. This simulational model has been shown to reproduce the basic phenomenology seen in experiments on suspensions of near hard spheres. The work presented will focus on describing the development of rigid structures within the suspension, and relating their formation to the loss of degrees of freedom in their motion induced by frictional contacts.
When browsing Université Côte d'Azur website and Université Côte d'Azur components websites by profile ("I am" menu), informations may be saved in a "Cookie" file installed by Université Côte d'Azur on your computer, tablet or mobile phone. This Cookie file contains informations, such as a unique identifier, the name of the portal, and the chosen profile. This Cookie file is read by its transmitter. During its 12-month validity period, it allows to recognize your terminal and to propose the chosen profile as your default home page.
You have accepted the deposit of profile information cookies in your navigator.
You have declined the deposit of profile information cookies in your navigator.
"Do Not Track" is enabled in your browser. No profiles information will be collected.