Every reference with a DOI in the deposited reference list resolved to a known
work in Crossref or DataCite at the dated check, and none carried a retraction,
withdrawal, or removal notice.
The 28 checked references that resolve
resolves10.1122/1.550858Experimental study of pure bitumens in tension, compression, and shear
resolves10.3141/1728-01Establishing Linear Viscoelastic Conditions for Asphalt Binders
resolves10.1617/s11527-010-9696-3The use of asphalt low shear viscosity to predict permanent deformation performance of asphalt concrete
resolves10.1016/j.mechrescom.2012.02.012Nonlinear viscoelastic response of asphalt binders: An experimental study of the relaxation of torque and normal force in torsion
resolves10.1061/(ASCE)EM.1943-7889.0000682Nonlinear Viscoelastic Model for Describing the Response of Asphalt Binders within the Context of a Gibbs-Potential–Based Thermodynamic Framework
resolves10.1177/0361198196153500103Zero-Shear Viscosity of Bituminous Binder and Its Relation to Bituminous Mixture's Rutting Resistance
The 21 references without a DOI — listed, not checked
no DOI — not checkedASTM D6925 (2009) Standard test method for preparation and determination of the relative density of hot mix asphalt (HMA) Specimens by means of the superpave gyratory compactor. ASTM International, West Conshohocken
no DOI — not checkedASTM D7175 (2008) Standard test method for determining the rheological properties of asphalt binder using a dynamic shear rheometer. ASTM International, West Conshohocken
no DOI — not checkedASTM D7175 (2015) Standard test method for multiple stress creep and recovery (MSCR) of asphalt binder using a dynamic shear rheometer. ASTM International, West Conshohocken
no DOI — not checkedBahia HU, Hislop WP, Zhai H, Rangel A (1998) Classification of asphalt binders into simple and complex binders. J Assoc Asph Paving Technol 67:1–41
no DOI — not checkedBahia HU, Hanson DI, Zeng M, Zhai H, Khatri MA, Anderson RM (2001) Characterization of modified asphalt binders in superpave mix design. NCHRP Report, 459, National Cooperative Highway Research Program, Washington, DC
no DOI — not checkedD’Angelo J (2010) New high-temperature binder specification using multistress creep and recovery. development in asphalt binder specifications—Transportation Research Circular E-C147 pp 1–13
no DOI — not checkedD’Angelo J, Kluttz R, Dongre R, Stephens K, Zanzotto L (2007) Revision of the superpave high temperature binder specification: the multiple stress creep recovery test. J Assoc Asph Paving Technol 76:123–162
no DOI — not checkedDelgadillo R, Cho DW, Bahia HU (2006) Nonlinearity of repeated creep and recovery binder test and relationship with mixture permanent deformation. Transportation research record. Transportation Research Board, Washington, pp 3–11
no DOI — not checkedEN 12697–22, (2003) Bituminous mixtures- test methods for hot mix asphalt Part 22: Wheel tracking. European Committee for Standardization, Brussels
no DOI — not checkedGibson N, Qi X, Shenoy A, Al-Khateeb G, Kutay ME, Andriescu A, Stuart K, Youtcheff J, Harman T (2012) Performance testing for superpave and structural validation—FHWA-HRT-11-045. Federal Highway Administration, McLean, VA
no DOI — not checkedIS15462, (2004) Indian Standard for Polymer and Rubber Modified Bitumen. Bureau of Indian Standards, New Delhi
no DOI — not checkedIS73 (2013) Indian Standard for Paving Bitumen—Fourth Revision. Bureau of Indian Standards, New Delhi
no DOI — not checkedIslam MR, Tarefder RA (2013) Measuring thermal effect in the structural response of flexible pavement based on field instrumentation. Int J Pavement Res Technol 6(4):274–279
no DOI — not checkedKennedy T, Huber GA, Harrigan ET, Cominsky RJ, Hughes CS, Von Quintus HL, Moulthrop JS (1994) SHRP-A-410: superior performing asphalt pavements (Superpave): the product of the SHRP asphalt research program. National Research Council, Washington DC
no DOI — not checkedMasad EA, Huang CW, D’Angelo J, Little DN (2009) Characterization of asphalt binder resistance to permanent deformation based on nonlinear viscoelastic analysis of multiple stress creep recovery (MSCR) test. J Assoc Asphalt Paving Technol 78:535–666
no DOI — not checkedMATLAB (2012) MATLAB R2012a. The MathWorks Inc., Massachusetts
no DOI — not checkedMoRTH (2014) Specifications for roads and bridge works. Indian Road Congress, New Delhi, India Fifth Revision
no DOI — not checkedNarayan SPA (2013) A model for the nonlinear mechanical behaviour of asphalt binders and its applications in prediction of rutting susceptibility. Ph.D. thesis, Texas A&M University
no DOI — not checkedNarayan SPA, Little DN, Rajagopal KR (2014) Analysis of rutting prediction criteria using a nonlinear viscoelastic model. J Mater Civil Eng 27(3):04014–137
no DOI — not checkedNarayan SPA, Krishnan JM, Little DN, Rajagopal KR (2017) Mechanical behaviour of asphalt binders at high temperatures and specification for rutting. Int J Pavement Eng 18(10):916927
no DOI — not checkedVijay R, Deshpande AP, Varughese S (2008) Nonlinear rheological modeling of asphalt using White–Metzner model with structural parameter variation based asphaltene structural build-up and breakage. Appl Rheol 18(2):23–214
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