
Making photoelastic particle molds

We love interactions, in particular with particles


Whyyyy is this space so tinyyy

Sustaining the questionable cycle of systematic self-promotion…

Check out the paper on contact force imaging on compressed hydrogel spheres, done at Duke University. Don’t forget the associated discrete element modeling work.

It never hurts to brush up on your chemistry. Well actually it does hurt, but it’s also fun.
N. Brodu, J.A. Dijksman, R.P. Behringer — Nature Communications 6 (2015)

Detecting network structures in packings of cyclically loaded spheres requires math. Lots of math….
D.M. Walker, A. Tordesillas, N. Brodu, J.A. Dijksman, R.P. Behringer, G. Froyland — Soft Matter 11, 2157–2173 (2015)

Measuring power laws is hard! Fortunately, Newtonian fluids are well behaved.
J.A. Dijksman, S. Mukhopadhyay, C. Gaebler, T.P. Witelski, R.P. Behringer — Physical Review. E, Statistical nonlinear, and soft matter physics 92 (2015)

Deformable spheres in a packing under compression can develop additional physics when new contacts are created due to their deformability and volume conservation. Here we introduce a DEM code that can calculate these consequences.
N. Brodu, J.A. Dijksman, R.P. Behringer — Physical Review. E, Statistical nonlinear, and soft matter physics 91 (2015)

Mixing stuff in very viscous fluids, or better said: at low Reynolds number, is not easy. Here is a microfluidics tool that allows one to do so anyway. It uses a simple small magnet aka stirring bar in a small chamber.
M.J. Workamp, V. Saggiomo, J.A. Dijksman — Journal of Micromechanics and Microengineering 25 (2015)