Title: MAMFHRE_WP3_T3.2_part01_v01 Authors: Jose R. Morillas, Óscar Martínez-Cano, Martin Cvek, Jeffrey F. Morris, Juan de Vicente Alternative title: Data sets of the manuscript 'Flow-Induced Layer Formation in Dipolar Non-Brownian Suspensions' Date: 01/04/2025 Version no.: 1 DOI: Work Package: 2 and 3 Part: - Deliverable: P4 Origin: Numerical and experimental Format: .txt Rights: Creative Commons license Keywords: Magnetorheology, magnetorheological fluids, flow-induced layer formation, layered patterns, gap size. Abstract: =========================================================================================================================================================== Sets of numerical and experimental data for the manuscript 'Flow-Induced Layer Formation in Dipolar Non-Brownian Suspensions'. Data is organized in two folders, one for experiments (exp) and another one for numerical simulations (sim). Sim contains 7 txt files. Each one gathers the initial and final positions of the particles for the simulation repetitions run for the same input parameters. Input parameters are given in the file name: a (particle radius, multiplied by 1e3), L (computational box side), N (no. of particles), rcut (cutoff distance for the magnetic interaction). Exp contains 13 txt files. Each one gathers the repetitions of a given experiment/analysis. The file name corresponds to the table (T), supplementary table (TS), figure (F) or supplementary figure (FS) of the manuscript where that experiment/analysis is shown: F4: flow curves under different magnetic fields using a plate-plate geometry with gap 300 microns. F5b: viscosity curves under different magnetic fields using a cone-plate geometry. F8: critical shear rate where layers appear for different gaps. FS3: flow curves forr different gaps using a plate-plate geometry and a magnetic field of 10.81 kA/m. T1_FS2a: detected number of layers in the images got during the flow curve experiment under different magnetic fields (plate-plate geometry, gap 300 microns). T1_FS2b: detected layer mean width in the images got during the flow curve experiment under different magnetic fields (plate-plate geometry, gap 300 microns). T1_FS2c: detected layer percentage of occupation in the images got during the flow curve experiment under different magnetic fields (plate-plate geometry, gap 300 microns). T1_FS2d: detected layer mean period in the images got during the flow curve experiment under different magnetic fields (plate-plate geometry, gap 300 microns). T2_FS4a: detected number of layers in the images got during the flow curve experiment for different gaps of the plate-plate geometry (field 10.81 kA/m). T2_FS4b: detected layer mean width in the images got during the flow curve experiment for different gaps of the plate-plate geometry (field 10.81 kA/m). T2_FS4c: detected layer percentage of occupation in the images got during the flow curve experiment for different gaps of the plate-plate geometry (field 10.81 kA/m). T2_FS4d: detected layer mean period in the images got during the flow curve experiment for different gaps of the plate-plate geometry (field 10.81 kA/m). TS2: magnetization curve of the particles (powder sample) used in the experiments. From here, particle permeability and contrast factor are computed. =========================================================================================================================================================== Sponsorship: MSCA 101030666 (among others)