[1] Kim J, Koh C. Development of a predictive system for estimating fatigue life of asphalt mixtures using the indirect tensile test [J]. Journal of Transportation Engineering, 2012, 138(12): 1530-1540. DOI:10.1061/(asce)te.1943-5436.0000452.
[2] Yang J, Wang H, Liao H. Key influential factors of fatigue and self-healing properties of asphalt mixture[J]. Journal of Southeast University(English Edition). 2016, 46(1): 196-201.
[3] Wang C, Castorena C, Zhang J, et al. Unified failure criterion for asphalt binder under cyclic fatigue loading[J]. Road Materials and Pavement Design, 2015, 16(sup2): 125-148. DOI:10.1080/14680629.2015.1077010.
[4] Bahadori A M, Mansourkhaki A, Ameri M. A phenomenological fatigue performance model of asphalt mixtures based on fracture energy density [J]. Journal of Testing and Evaluation, 2014, 43(1): 133-139. DOI:10.1520/jte20130057.
[5] Saha G, Biligiri K P. Fracture properties of asphalt mixtures using semi-circular bending test: A state-of-the-art review and future research [J]. Construction and Building Materials, 2016, 105: 103-112. DOI:10.1016/j.conbuildmat.2015.12.046.
[6] Wagoner M P, Buttlar W G, Paulino G H. Development of a single-edge notched beam test for asphalt concrete mixtures [J]. Journal of Testing and Evaluation, 2005, 33(6): 452-460. DOI: 10.1520/JTE12579.
[7] Yang P, Zhang X N, Liu X W. Study on simplified test method about fatigue performance of cold patch asphalt mixtures[J].Key Engineering Materials, 2010, 417-418: 493-496.
[8] Nguyen M T, Lee H J, Baek J. Fatigue analysis of asphalt concrete under indirect tensile mode of loading using crack images [J]. Journal of Testing and Evaluation, 2012, 41(1): 148-158. DOI: 10.1520/JTE104589.
[9] Masad E, Castelo Branco V T F, Little D N, et al. A unified method for the analysis of controlled-strain and controlled-stress fatigue testing [J]. International Journal of Pavement Engineering, 2008, 9(4): 233-246. DOI:10.1080/10298430701551219.
[10] Im S, Kim Y R, Ban H. Rate-and temperature-dependent fracture characteristics of asphaltic paving mixtures [J]. Journal of Testing and Evaluation, 2013, 41(2): 257-268. DOI: 10.1520/JTE20120174.
[11] Shen S, Lu X. Energy based laboratory fatigue failure criteria for asphalt materials [J]. Journal of Testing and Evaluation, 2010, 39(3): 313-320. DOI: 10.1520/JTE103088.
[12] Zhang J, Sabouri M, Guddati M N, et al. Development of a failure criterion for asphalt mixtures under fatigue loading [J]. Road Materials and Pavement Design, 2013, 14(sup2): 1-15. DOI:10.1080/14680629.2013.812843.
[13] Gao L, Ni F, Braham A, et al. Mixed-mode cracking behavior of cold recycled mixes with emulsion using Arcan configuration [J]. Construction and Building Materials, 2014, 55: 415-422. DOI:10.1016/j.conbuildmat.2013.12.079.
[14] Birgisson B, Montepara A, Romeo E, et al. An optical strain measurement system for asphalt mixtures [J]. Materials and Structures, 2009, 42(4): 427-441. DOI:10.1617/s11527-008-9392-8.
[15] Tan Y, Hou M, Zhang L, et al. Studying the strain field distribution of asphalt mixture with the digital speckle correlation method [J]. Road Materials and Pavement Design, 2014, 15(1): 90-101. DOI:10.1080/14680629.2013.863159.
[16] Wu H, Huang B, Shu X. Characterizing fatigue behavior of asphalt mixtures utilizing loaded wheel tester [J]. Journal of Materials in Civil Engineering, 2013, 26(1): 152-159. DOI:10.1061/(asce)mt.1943-5533.0000791.
[17] Li Q, Lee H J, Kim T W. A simple fatigue performance model of asphalt mixtures based on fracture energy [J]. Construction and Building Materials, 2012, 27(1): 605-611. DOI:10.1016/j.conbuildmat.2011.07.001.