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Original Articles

Development of the indirect ring tension fracture test for hot-mix asphalt

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References

  • ANSYS, Inc. (2009a). LS-DYNA user's guide, release 12.0. Canonsburg, PA: Author.
  • ANSYS, Inc. (2009b). Theory reference for the mechanical APDL and mechanical applications, release 12.1. Canonsburg, PA: Author.
  • ASTM E399-12e1. (2012). Standard test method for linear-elastic plane-strain fracture toughness KIC of metallic materials. ASTM Book of Standards, 03.01.
  • Bahgat, A. G., & Herrin, M. (1968). Brittle fracture of asphalt mixtures. Proceedings of the Association of Asphalt Paving Technologists, 37, 32–50.
  • Barsoum, R. S. (1976). On the use of isoparametric finite elements in linear fracture mechanics. International Journal for Numerical Methods in Engineering, 10(1), 25–37. doi: 10.1002/nme.1620100103
  • Bhurke, A. S., Shin, E. E., & Drzal, L. T. (1997). Fracture morphology and fracture toughness measurement of polymer-modified asphalt concrete. Transportation Research Record, 1590, 23–33. doi: 10.3141/1590-04
  • Blankenship, P., Anderson, R. M., King, G. N., & Hanson, D. I. (2010). A laboratory and field investigation to develop test procedures for predicting non-load associated cracking of airfield HMA pavements (AAPTP Project 06-01Report). Airfied Asphalt Pavement Technology Program.
  • Dong, S., Wang, Y., & Xia, Y. (2004). Stress intensity factors for central cracked circular disk subjected to compression. Engineering Fracture Mechanics, 71, 1135–1148. doi: 10.1016/S0013-7944(03)00120-6
  • Dore, G., & Zubeck, H. K. (2009). Cold regions pavement engineering. Reston, VA: ASCE Press, McGraw-Hill Construction.
  • Fett, T. (2001). Stress intensity factors and T-stress for internally cracked circular disks under various boundary conditions. Engineering Fracture Mechanics, 68, 1119–1136. doi: 10.1016/S0013-7944(01)00025-X
  • Gubler, R., Partl, M. N., Canestrari, F., & Grilli, A. (2005). Influence of water and temperature on mechanical properties of selected asphalt pavements. Materials and Structures, 38(279), 523–532. doi: 10.1617/14317
  • Harison, J. A., Hardin, B. O., & Mahboub, K. (1994). Fracture toughness of compacted cohesive soils using the ring test. ASCE Journal of Geotechnical Engineering, 120(5), 872–891. doi: 10.1061/(ASCE)0733-9410(1994)120:5(872)
  • Hertzberg, R. W. (1996). Deformation and fracture mechanics of engineering materials (4th ed.). New York: Wiley.
  • Hiltunen, D. R., & Roque, R. (1994). Mechanics-based prediction model for thermal cracking of asphalt concrete pavements. Proceedings of the Association of the Asphalt Paving Technologists, 63, 81–106.
  • Hou, T., Underwood, B. S., & Kim, Y. R. (2010). Fatigue performance prediction of north Carolina mixtures using the simplified viscoelastic continuum damage model. Journal of the Association of the Asphalt Paving Technologists, 79, 35–73.
  • Hyunwook, K., Wagoner, M. P., & Buttlar, W. G. (2008). Simulation of fracture behavior in asphalt concrete using a heterogeneous cohesive zone discrete element model. Journal of Materials in Civil Engineering, 20(8), 552–563. doi: 10.1061/(ASCE)0899-1561(2008)20:8(552)
  • Jia, Z., Castro-Montero, A., & Shah, S. P. (1996). Observation of mixed mode fracture with center notched disk specimen. Cement and Concrete Research, 26(1), 125–137. doi: 10.1016/0008-8846(95)00194-8
  • Li, X., & Marasteanu, M. (2004). Evaluation of the low temperature fracture resistance of asphalt mixtures using the semi-circular bend test. Journal of the Association of the Asphalt Paving Technologists, 73, 401–426.
  • Little, D. N., & Mahboub, K. (1985). Engineering properties of first generation plasticized sulfur binders and low temperature fracture evaluation of plasticized sulfur paving mixtures. Transportation Research Record, 1034, 103–111.
  • Majidzadeh, K., Kauffman, E. M., & Ramsamooj, D. V. (1971). Application of fracture mechanics in the analysis of pavement fatigue. Proceedings of the Association of Asphalt Paving Technologists, 40, 227–246.
  • Mobasher, B. M., Mamlouk, M. S., & Lin, H. M. (1997). Evaluation of crack propagation properties of asphalt mixtures. Journal of Transportation Engineering, 123(5), 405–413. doi: 10.1061/(ASCE)0733-947X(1997)123:5(405)
  • Molenaar, J. M. M., & Molenaar, A. A. A. (2000). Fracture toughness of asphalt in the semi-circular bend test. Proceedings of the 2nd eurasphalt and eurobitume congress, Barcelona, Spain, pp. 509–517.
  • Paris, P. C., & Sih, G. C. (1965). Stress analysis of cracks. In ASTM (Ed.), Fracture toughness testing and its application (pp. 30–83). Philadelphia, PA: American Society for Testing and Materials.
  • Pellinen, T. K., Xiao, S., Carpenter, S., Eyad, M., Di Benedetto, H., & Roque, R. (2005). Relationship between triaxial shear strength and indirect tensile strength of hot mix asphalt. Journal of the Association of the Asphalt Paving Technologists, 74, 347–379.
  • Sangpetngam, B., Bjorn, B., & Roque, R. (2003). Development of efficient crack growth simulator based on hot-mix asphalt fracture mechanics. Transportation Research Record, 1832, 115–112. doi: 10.3141/1832-13
  • Wagoner, M. P., Buttlar, W. G., & Paulino, G. H. (2005). Disk-shaped compact tension test for asphalt concrete fracture. Experimental Mechanics, 45(3), 270–277. doi: 10.1177/0014485105053205
  • Yang, S., Tang, T., Zollinger, D. G., & Gurjar, A. (1997). Splitting tension tests to determine concrete fracture parameters by peak-load method. Advanced Cement Based Materials, 5(1), 18–28. doi: 10.1016/S1065-7355(97)90011-0

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