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Measured Dynamic Response of Asphalt Pavement under FWD Load |
XIAO Chuan1,2, QIU Yan-jun1,2, ZENG Jie3, LI Bao-xian1,2 |
1. School of Civil Engineering, Southwest Jiaotong University, Chengdu Sichuan 610031, China;
2. Key Laboratory of Highway Engineering of Sichuan Province, Southwest Jiaotong University, Chengdu Sichuan 610031, China;
3. Sichuan Chengdu-Deyang-Nanchong Expressway Co. Ltd, Chengdu Sichuan 610041, China |
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Abstract To study the real dynamic response regularity of asphalt pavement structure under dynamic load, a road test was conducted for three types of typical asphalt pavement. Dynamic and static deflection basins were established.The characteristics of the dynamic deflection basin were studied.The set-in dynamic strain sensors at the bottom of the surface layer collected the dynamic strain response under falling weight deflectometer (FWD) load. Results show that the static deflection basin is deeper than the dynamic deflection basin, but the range of the latter is larger than that of the former.The characteristics of the two deflection basins differ.The change trends of dynamic response with an increase in FWD load reflect nonlinear characteristics.The dynamic strain of three typical asphalt pavements at the bottom of the surface layer does not induce fatigue failure in the pavement structure.The longitudinal strain is larger than the lateral strain.Different prediction models on dynamic strain on the basis of dynamic deflection basin parameters are established.
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Received: 18 February 2014
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Fund:Supported by the Fundamental Research Funds for the Central Universities (No.SWJTU12ZT05);the Science and Technology Project of Transportation Department of Sichuan Province (No.2010B28-2) |
Corresponding Authors:
XIAO Chuan, xcaaa6666@sina.com
E-mail: xcaaa6666@sina.com
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[1] YAO Zu-kang. Structural Design of Asphalt Pavements[M]. Beijing:China Communications Press, 2011. (in Chinese)
[2] QIAN Zhen-dong, ZHANG Lei, CHEN Lei-lei. Pavement Structural Dynamics[M]. Nanjing:Southeast University Press, 2010. (in Chinese)
[3] QIU Xing. Study on Modulus Parameter Back Calculation and Correction Method for CTB Asphalt Pavement Based on FWD Testing Technology[D]. Shanghai:Tongji University, 2009.
[4] REN Rui-bo, ZHONG Yang, YIN Jian-hua. The Solution of Road Surface Deflection in the Dynamic Case[J]. Chinese Journal of Geotechnical Engineering, 2000, 22(6):738-740. (in Chinese)
[5] HOU Yun, GUO Zhong-yin, TIAN Bo, et al. Dynamic Deflection Response of Layered Pavement Structure Subjected to Dynamic Load[J]. China Journal of Highway and Transport, 2002, 15(3):6-10. (in Chinese)
[6] PARK H M, KIM Y R, PARK S W. Assessment of Pavement Layer Condition with Use of Multiload-level Falling Weight Deflectometer Deflections[J]. Transportation Research Record, 2005, 1905:107-116.
[7] XU Bing, RANJITHAN S R, KIM R Y. New Condition Assessment Procedure for Asphalt Pavement Layers, Using Falling Weight Deflectometer Deflections[J]. Transportation Research Record, 2002, 1806:57-69.
[8] AL-QADI I L, LOULIZI A, ELSEIFI M, et al. The Virginia Smart Road:the Impact of Pavement Instrumentation on Understanding Pavement Performance[J]. Journal of the Association of Asphalt Paving Technologists, 2004, 73:427-465.
[9] PRIEST A L, TIMM D H. A Full Scale Pavement Structural Study for Mechanistic empirical Pavement Design[J]. Journal of the Association of Asphalt Paving Technologists, 2005, 74:519-556.
[10] DONG Zhong-hong, XU Quan-liang, LÜ Peng-min. Dynamic Response of Semi-rigid Base Asphalt Pavement Basedon Accelerated Pavement Test[J]. China Journal of Highway and Transport, 2011, 24(2):1-5. (in Chinese)
[11] LÜ Peng-min, DONG Zhong-hong. Mechanical Analysis of Vehicle-Asphalt Pavement System[M]. Beijing:China Communications Press, 2010. (in Chinese)
[12] BENEDETTO D H, ROCHE C D L, BAAJ H, et al. Fatigue of Bituminous Mixtures[J]. Materials and Structures, 2004, 37(3):202-216.
[13] ZHANG Zhi-xiang, CHEN Rong-sheng, BAI Qi-feng. Laboratory Study of Fatigue Limit of LSM Base Mixtures[J]. Journal of Highway and Transportation Research and Development, 2006, 23(4):19-22. (in Chinese)
[14] PING Shu-jiang, SHEN Ai-qin, LI Peng. Study of Fatigue Limit of Asphalt Mixture for Perpetual Pavement[J]. China Journal of Highway and Transport, 2009, 22(1):34-38. (in Chinese)
[15] WANG Xu-dong, SHA Ai-min, XU Zhi-hong. The Dynamic Characteristics and Dynamic Parameters of Asphalt Pavement Materials[M]. Beijing:China Communications Press, 2002. (in Chinese)
[16] LUO Qi-tian, QIU Xin, YANG Qing. Evaluation Study on Subgrade Modulus Based on FWD Dynamic Deflection Basin Parameters[J]. Highway Engineering, 2011, 36(2):4-8. (in Chinese)
[17] ZHANG Qi-shan, GUO Xi-jiang, DENG Ju-long. Grey Relation Entropy Method of Grey Relation Analysis[J]. Systems Engineering-Theory & Practice, 1996(8):7-11. (in Chinese)
[18] LIU Hong-ying. Grey Relation Entropy Method to Analyze Moisture Stability of Asphalt Concrete[J]. Journal of Chang'an University:Natural Science Edition, 2003, 23(6):7-10. (in Chinese)
[19] GUAN Yu. Applied Multivariate Statistical Analysis[M]. Hangzhou:Zhejiang University Press, 2011. (in Chinese) |
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