Paulino, Glaucio H, Seong Hyeok Song, and William Buttlar. 2004. “Cohesive Zone Modeling of Fracture in Asphalt Concrete”. In , 63–70. Reference Link
Song, Seong Hyeok, Glaucio H Paulino, and William Buttlar. 2006. “Simulation of Crack Propagation in Asphalt Concrete Using an Intrinsic Cohesive Zone Model”. Journal of Engineering Mechanics 132. American Society of Civil Engineers: 1215–1223. Reference Link
Song, Seong Hyeok, and Glaucio H Paulino. 2006. “Dynamic Stress Intensity Factors for Homogeneous and Smoothly Heterogeneous Materials Using the Interaction Integral Method”. International Journal of Solids and Structures 43. Elsevier: 4830–4866. Reference Link
Buttlar, William, Glaucio H Paulino, and Seong Hyeok Song. 2003. “Application of Graded Finite Elements for Asphalt Pavement Analysis”. Elsevier. Reference Link
Song, Seong Hyeok, Glaucio H Paulino, and William Buttlar. 2005. “Cohesive Zone Simulation of Mode I and Mixed-Mode Crack Propagation in Asphalt Concrete.” Reference Link
Song, Seong Hyeok, and Glaucio H Paulino. 2008. “Investigation of Dynamic Fracture Behavior in Functionally Graded Materials Using the Interaction Integral Method”. In , 973:254–260. Reference Link
Song, Seong Hyeok, Glaucio H Paulino, and William Buttlar. 2006. “A Bilinear Cohesive Zone Model Tailored for Fracture of Asphalt Concrete Considering Viscoelastic Bulk Material”. Engineering Fracture Mechanics 73. Elsevier: 2829–2848. Reference Link
Song, Seong Hyeok, Glaucio H Paulino, and William Buttlar. 2008. “Influence of the Cohesive Zone Model Shape Parameter on Asphalt Concrete Fracture Behavior”. In , 973:730–735. Reference Link
Song, Seong Hyeok, Michael P Wagoner, Glaucio H Paulino, and William Buttlar. 2008. “δ25 Crack Opening Displacement Parameter in Cohesive Zone Models: Experiments and Simulations in Asphalt Concrete”. Fatigue & Fracture of Engineering Materials & Structures 31. Wiley Online Library: 850–856. Reference Link
Buttlar, William, Glaucio H Paulino, and Seong Hyeok Song. 2006. “Application of Graded Finite Elements for Asphalt Pavements”. Journal of Engineering Mechanics 132. American Society of Civil Engineers: 240–249. Reference Link