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Original Articles

Effects of paving conditions on built-in curling and pavement performance

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Pages 291-296 | Received 04 Oct 2005, Published online: 24 Nov 2006

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Read on this site (4)

Shuo Yang, Ahmad Alhasan, Yang Zhang, Halil Ceylan & Sunghwan Kim. (2021) Pavement curling and warping analysis using wavelet techniques. International Journal of Pavement Engineering 22:14, pages 1833-1848.
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T. Sok, Y.K. Kim & S.W. Lee. (2021) Numerical evaluation of built-in temperature distribution effects on stress development in concrete pavements. Road Materials and Pavement Design 22:4, pages 871-893.
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Y. Wei, X. Gao, F. Wang & Y. Zhong. (2019) Nonlinear strain distribution in a field-instrumented concrete pavement slab in response to environmental effects. Road Materials and Pavement Design 20:2, pages 367-380.
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Xiang Gao, Ya Wei & Wei Huang. (2017) Strain-based equivalent temperature gradient in concrete pavement and comparison with other quantification methods. Road Materials and Pavement Design 18:6, pages 1460-1472.
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Articles from other publishers (16)

Mohammad ShafieeOmran Maadani. (2022) Investigation of climate change impacts on early-age cracking of jointed plain concrete pavements in Canada. Canadian Journal of Civil Engineering 49:7, pages 1121-1127.
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Tetsya Sok & Seung Woo Lee. (2021) A mechanistic approach to predict built-in temperature in concrete pavements. Proceedings of the Institution of Civil Engineers - Transport 174:4, pages 227-238.
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Tetsya Sok, Young Kyu Kim & Seung Woo Lee. (2020) Numerical approach to predict zero-stress temperature in concrete pavements. Construction and Building Materials 262, pages 120076.
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Changjun Zhou, Guoshu Lan, Peng Cao, Changbing Tang, Qi Cao, Yunxi Xu & Decheng Feng. (2020) Impact of freeze-thaw environment on concrete materials in two-lift concrete pavement. Construction and Building Materials 262, pages 120070.
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Chaomei Meng, Liangcai Cai, Guanhu Wang, Xingang Shi & Jianming Ling. (2020) An Approximate Model to Predict Stress and Displacement of Cross-Tensioned Prestressed Concrete Pavement under Temperature Loading. ACI Materials Journal.
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Chaomei Meng, Liangcai Cai & Guanhu Wang. (2019) An Approximate Model for Continuously Reinforced Concrete Pavement under Temperature Loading. ACI Materials Journal 116:6.
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Ya WeiSiming LiangJingsong Huang. (2019) Concrete Creep Modeling: Application to Slabs on Ground. Journal of Engineering Mechanics 145:10.
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Han Jin Oh, Jun Young Park, Ki Hoon Moon, Hyung Bae Kim & Hye Min Jeong. (2019) Field Performance Evaluation of Damage due to Built-in Curling of Jointed Concrete Pavement. International Journal of Highway Engineering 21:2, pages 39-48.
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Nikola Stefanović, Radmila Veličković-Radovanović, Aleksandra Catić-Djordjević, Ivana Damnjanović, Katarina Dinić, Branka Mitić, Tatjana Jevtović-Stoimenov, Jelena Bašić, Milena Despotović & Tatjana Cvetković. (2019) INTERINDIVIDUAL AND INTRAINDIVIDUAL PHARMACOKINETIC VARIABILITY OF TACROLIMUS WITHIN THE FIRST YEAR AFTER RENAL TRANSPLANTATION: EFFECT OF CYP3A5 GENE POLYMORPHISM. Acta Medica Medianae 58:1, pages 93-101.
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Minjiang Zhang, Chao Guo, Baoyang Yu, Yanhai Yang & Zhengran Lu. (2017) CTCP temperature fields and stresses. International Journal of Pavement Research and Technology 10:6, pages 553-562.
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Armen N. Amirkhanian & Jeffery R. Roesler. (2017) Unrestrained Curling in Concrete with Fine Lightweight Aggregates. Journal of Materials in Civil Engineering 29:9.
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Yinghong Qin. (2016) Pavement surface maximum temperature increases linearly with solar absorption and reciprocal thermal inertial. International Journal of Heat and Mass Transfer 97, pages 391-399.
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Halil Ceylan, Shiyun Wang, Sunghwan Kim, Kasthurirangan Gopalakrishnan, Lev Khazanovich & Shongtao Dai. (2015) Impact of farm equipment loading on low-volume concrete road structural response and performance. The Baltic Journal of Road and Bridge Engineering 10:4, pages 325-332.
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Liangliang ChenDecheng FengLei Quan. (2015) Inclusion of Built-In Curling Temperature Profile in Curling-Stress Determination for Rigid Pavement. Journal of Transportation Engineering 141:4.
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Li Zhi Han, Liang Liang Chen & Bo Tian. (2013) Influence of Paving Condition on Longitudinal Cracking of Portland Cement Concrete Pavement. Advanced Materials Research 857, pages 204-211.
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Rania E. AsbahanJulie M. Vandenbossche. (2011) Effects of Temperature and Moisture Gradients on Slab Deformation for Jointed Plain Concrete Pavements. Journal of Transportation Engineering 137:8, pages 563-570.
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