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Original Articles

Evaluation of anti-reflective cracking measures by laboratory test

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Pages 553-560 | Received 24 Oct 2011, Accepted 13 Aug 2012, Published online: 06 Sep 2012

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Ziqi Zeng, Yinchuan Guo, Peng Li, Aiqin Shen & Chaowei Zhai. (2021) Performance research of fiber-reinforced asphalt rubber as a stress-absorbing membrane interlayer. Journal of Adhesion Science and Technology 35:19, pages 2047-2063.
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Mohammad Taghipoor, Pedram Balooch Sirgani & Ehsan Ahmadi Dehaghi. (2023) Improving the resistance of asphalt pavements against cracking with an Interlayer: A comprehensive review. Construction and Building Materials 409, pages 134086.
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Yasmin S. Ajool, Abbas A. Allawi & Amjad H. Kalil. (2023) Mitigation of Reflection Cracking in Asphalt Concrete Overlay on Rigid Pavements. E3S Web of Conferences 427, pages 03004.
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Mihai Gabriel Lobază. (2021) Accelerated Laboratory Testing for Reflective Cracking. Romanian Journal of Transport Infrastructure 10:1, pages 34-49.
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Géssica Soares Pereira, Heraldo Nunes Pitanga, Taciano Oliveira da Silva, Déborah Castro e Almeida & Kamila Bazoni Lunz. (2020) Effect of geosynthetic reinforcement insertion on mechanical properties of hot and cold asphalt mixtures. International Journal of Pavement Research and Technology 14:4, pages 496-504.
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Ehsan Solatiyan, Nicolas Bueche & Alan Carter. (2020) A review on mechanical behavior and design considerations for reinforced-rehabilitated bituminous pavements. Construction and Building Materials 257, pages 119483.
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Ipshit Ibne Idris, Husam Sadek & Marwa Hassan. (2020) State-of-the-Art Review of the Evaluation of Asphalt Mixtures’ Resistance to Reflective Cracking in Laboratory. Journal of Materials in Civil Engineering 32:9.
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Hongyu Ye, Xuancang Wang, Naren Fang, Ziyuan Su & Xiaowen Sun. (2019) Interlayer Working Conditions Classification and Treatment Measures of Airport Asphalt Pavement Overlay. Journal of Advanced Transportation 2019, pages 1-16.
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Shaoquan Wang, Kezhen Yan, Dongdong Ge & Zheng Hong. (2019) Laboratory research on the performance of stress-absorption interlayer (SAI) of waste tire rubber and amorphous ploy alpha olefin modified asphalt. Construction and Building Materials 223, pages 830-840.
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Yuanyuan Gao. (2018) Theoretical Analysis of Reflective Cracking in Asphalt Pavement with Semi-rigid Base. Iranian Journal of Science and Technology, Transactions of Civil Engineering 43:S1, pages 149-157.
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Fauzia Saeed, Mujib Rahman, Denis Chamberlain & Phil Collins. (2019) Asphalt surface damage due to combined action of water and dynamic loading. Construction and Building Materials 196, pages 530-538.
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Tirupan Mandal, Hao Yin & Richard Ji. (2018) Correlating laboratory and full-scale reflective cracking tests for airfield pavements. Construction and Building Materials 169, pages 47-58.
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A. NooryF. Moghadas NejadA. Khodaii. (2017) Evaluation of shear bonding and reflective crack propagation in a geocomposite reinforced overlay. Geosynthetics International 24:4, pages 343-361.
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X. Y. Zhu, Z. Du, Y. S. Cai & F. Li. (2017) Performance Evaluation and Technical Requirement of Interlayer Stress Absorbing Composite Sticker (ISACS) for Mitigating Reflective Cracking in Asphalt Concrete Overlays. Journal of Testing and Evaluation 45:4, pages 20150490.
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N. S. CorreiaJ. G. Zornberg. (2016) Mechanical response of flexible pavements enhanced with geogrid-reinforced asphalt overlays. Geosynthetics International 23:3, pages 183-193.
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Quan Hong Ma, Mei Yan Qu, Xue Song Xu & Le Le Hu. (2015) Influence of Layered Materials on Properties of Cement Stabilized Macadam. Advanced Materials Research 1095, pages 254-257.
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Jia Li, Yong Zhang, Lei Mao, Jianmin Zi & Tao Hu. (2014) Laboratory Research on the Application of Phosphogypsum as an Anti-Cracking Agent in a Cement-Treated Base. Laboratory Research on the Application of Phosphogypsum as an Anti-Cracking Agent in a Cement-Treated Base.

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