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Hoc Mix Asphalt Fracture Mechanics: A Fundamental Crack Growth Law for Asphalt Mixtures
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Identification and Verification of a Suitable Crack Growth Law (with Discussion)
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Predicting Viscoelastic Response and Crack Growth in Asphalt Mixtures with the Boundary Element Method
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TRB, National Research Council, Washington, D.C.
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Application of Fracture Mechanics Principles to Analyze Cracking in Asphalt Concrete
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Fatigue Characterization of Asphalt Concrete Using Viscoelasticity and Continuum Damage Theory
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Determination of Crack Growth Rate Parameters of Asphalt Mixtures Using the Superpave™ Indirect Tension Test (IDT)
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Roque, R., Z. Zhang, and B. Sankar. Determination of Crack Growth Rate Parameters of Asphalt Mixtures Using the Superpave™ Indirect Tension Test (IDT). Journal of the Association of Asphalt Paving Technologists, Vol. 68, 1999, pp. 404-433.
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Evaluation of Laboratory-Measured Crack Growth Rate for Asphalt Mixtures
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TRB, National Research Council, Washington, D.C.
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Zhang, Z., R. Roque, and B. Birgisson. Evaluation of Laboratory-Measured Crack Growth Rate for Asphalt Mixtures. In Transportation Research Record: Journal of the Transportation Research Board, No. 1767, TRB, National Research Council, Washington, D.C., 2001, pp. 67-75.
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The Development of a Measurement and Analysis System to Accurately Determine Asphalt Concrete Properties using the Indirect Tensile Mode
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Development and Evaluation of the Strategic Highway Research Program Measurement and Analysis System for Indirect Tensile Testing at Low Temperatures
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TRB, National Research Council, Washington, D.C.
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Crack Growth Behavior of Asphalt Mixtures and Its Relation to Laboratory and Field Performance
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International Society for Asphalt Pavements, Copenhagen, Denmark
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Roque, R., B. Birgisson, B. Sangpetngam, and Z. Zhang. Crack Growth Behavior of Asphalt Mixtures and Its Relation to Laboratory and Field Performance. In Proc., 9th International Conference on Asphalt Pavement, International Society for Asphalt Pavements, Copenhagen, Denmark, 2002.
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