“…-relationship between ballast aggregate degradation, additionally cohesion, inner friction angle and the water permeability of material and its layer was investigated [29], -angularity breakage phenomenon [15,37], -relationship of PSD of ballast material and its mechanical abrasion was examined, and newly PSD was improved and induced according to more real loading conditions [26,56], -volumetric and axial deformations, additionally particle breakage were measured by laboratory triaxial testing regarding to different stress values (main stresses and deviator stresses) [8,37], -a special method was developed to be able to define PSD of ballast aggregate with using of ground penetrating radar (GPR) [4,55], -at DEM simulations more real particle shape generation method was researched and DEM models were validated [11,37,53], -laboratory and field tests were performed with and without geosynthetic inclusions, ballast material degradation was measured [10,15,38,46], -tyre derived aggregates (TDA) were tested in case of sand fouled ballasted tracks [18], -ballast grain degradation due to ballast tamping was investigated [1,17], -ballast structure with adhesive material was examined [30].…”