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@ARTICLE{,
            author = {M{\'{a}}lek, Josef and Rajagopal, K. R. and Tůma, Karel},
             title = {A thermodynamically compatible model for describing asphalt binders: solutions of problems},
           journal = {International Journal of Pavement Engineering},
            volume = {17},
            number = {6},
              year = {2016},
             pages = {550-564},
               doi = {10.1080/10298436.2015.1007575},
          abstract = {In this sequel to the first paper (M{\'{a}}lek et al., 2014. International Journal of Pavement Engineering), in which we identified a generalisation of the model due to Burgers which was corroborated against two sets of experiments, including a challenging one showing distinctly different relaxation times for shear and normal stresses, we solve several time-dependent boundary value problems wherein the boundary of the material is deforming, that have relevance to applications involving asphalt. Problems wherein the boundary is subject to time-varying compressive loads such as those due to moving automobiles and the attendant rutting, and the compaction due to rollers are considered in additions to other problems.},
  Preprint project = {MORE},
     Preprint year = {2015},
   Preprint number = {20},
       Preprint ID = {MORE/2015/20}
}

