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Original Articles

A Model for Fatigue Cracking Prediction of Asphalt Pavements Based on Mixture Bonding Energy

Pages 133-149 | Received 25 Aug 1998, Published online: 01 Feb 2007

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Read on this site (1)

Luiz Guilherme Rodrigues de Mello, Márcio Muniz de Farias & Kamil Elias Kaloush. (2018) Effect of temperature on fatigue tests parameters for conventional and asphalt rubber mixes. Road Materials and Pavement Design 19:2, pages 417-430.
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Articles from other publishers (8)

Ambika Behl, G. Bharath & Satish Chandra. (2021) Characterization of Fatigue Resistance of Warm Mix Binders Using Linear Amplitude Sweep Test. International Journal of Pavement Research and Technology 15:2, pages 433-441.
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Lokesh Gupta & Rakesh Kumar. 2019. Recent Developments in Pavement Design, Modeling and Performance. Recent Developments in Pavement Design, Modeling and Performance 124 134 .
Muhammad Aniq Gul, Muhammad Irfan, Sarfraz Ahmed, Yasir Ali & Shahab Khanzada. (2018) Modelling and characterising the fatigue behaviour of asphaltic concrete mixtures. Construction and Building Materials 184, pages 723-732.
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Dong WangWang LinbingDruta ChristianGuoqing Zhou. (2013) Fatigue Properties of Asphalt Materials at Low In-Service Temperatures. Journal of Materials in Civil Engineering 25:9, pages 1220-1227.
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Dong WangLinbing WangXinyu GuGuoqing Zhou. (2013) Effect of Basalt Fiber on the Asphalt Binder and Mastic at Low Temperature. Journal of Materials in Civil Engineering 25:3, pages 355-364.
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Dong Wang, Linbing Wang & Guoqing Zhou. (2012) Fatigue of asphalt binder, mastic and mixture at low temperature. Frontiers of Structural and Civil Engineering 6:2, pages 166-175.
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Ghazi Al-Khateeb & Aroon Shenoy. (2009) A Simple Quantitative Method for Identification of Failure due to Fatigue Damage. International Journal of Damage Mechanics 20:1, pages 3-21.
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RE Link, RE Link & A Shenoy. (2002) Fatigue Testing and Evaluation of Asphalt Binders Using the Dynamic Shear Rheometer. Journal of Testing and Evaluation 30:4, pages 303.
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