id	author	title	date	pages	extension	mime	words	sentence	flesch	summary	cache	txt
hjic-926	Fertig, Dávid; Boda, Dezső; Szalai, István	Brownian dynamics simulation of chain formation in electrorheological fluids	2020	13	.pdf	application/pdf	9349	465	65	Chain length distribution averaged over three time intervals at the beginning (10,000 < t∗ < 25,000), in the middle (25,000 < t∗ < 65,000), and at the end (65,000 < t∗ < 100,000) of chain formation. 95–107 (2020) hjic.mk.uni-pannon.hu DOI: 10.33927/hjic-2020-15 BROWNIAN DYNAMICS SIMULATION OF CHAIN FORMATION IN ELEC- TRORHEOLOGICAL FLUIDS DÁVID FERTIG*1, DEZSŐ BODA1, AND ISTVÁN SZALAI2,3 1Department of Physical Chemistry, University of Pannonia, Egyetem u. 10, Veszprém, 8200, HUNGARY 2Institute of Physics and Mechatronics, University of Pannonia, Egyetem u. 10, Veszprém, 8200, HUNGARY 3Institute of Mechatronics Engineering and Research, University of Pannonia, Gasparich Márk u. 18/A, Zalaegerszeg, 8900, HUNGARY Brownian dynamics (BD) simulations based on a novel Langevin integrator algorithm are used to simulate the dynamics of chain formation in electrorheological (ER) fluids that are non-conducting solid particles suspended in a liquid that has a dielectric constant different from that of the ER particles.	cache/hjic-926.pdf	txt/hjic-926.txt
