During this investigation, both microstructural and fatigue analyses were carried out to determine the structural integrity of a flexible pavement system with a 4% cement-stabilised base course. Scanning electron microscope analyses as well as material characterisation studies, which included Texas triaxial, resonant-frequency, ultrasonic pulse, and accelerated load facility tests, were conducted to collect the requisite data. Additionally, dynamic finite element analyses were employed to determine the critical strains necessary to calculate the fatigue performance. Correlations between selected microstructural parameters and the fatigue performance of treated pavement structures were established by multilayer feed-forward neural networks. The results, which demonstrated a meaningful relationship between microstructural information and fatigue characteristics of a flexible pavement, may be used to predict the fatigue performance of such systems.
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November 2008
Research Article|
November 01 2008
Fatigue analysis of stabilised cement with image processing
A. B. Göktepe;
A. B. Göktepe
Project Manager
Kolin Construction Co., Akkoy Dam & HEPP Construction, Kurtun
Gumushane, Turkey
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A. H. Lav;
A. H. Lav
Professor
Civil Engineering Department, Istanbul Technical University
Istanbul, Turkey
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S. Altun;
S. Altun
Asstistant Professor
Civil Engineering Department, Ege University
Izmir, Turkey
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C. Akgüner;
C. Akgüner
Lecturer
Civil Engineering Department, Yıldız Technical University
Istanbul, Turkey
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A. Sezer
A. Sezer
Research Assistant
Civil Engineering Department, Ege University
Izmir, Turkey
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Publisher: Emerald Publishing
Received:
April 16 2007
Accepted:
March 11 2008
Online ISSN: 1751-7710
Print ISSN: 0965-092X
© 2008 Thomas Telford Ltd
2008
Proceedings of the Institution of Civil Engineers - Transport (2008) 161 (4): 197–206.
Article history
Received:
April 16 2007
Accepted:
March 11 2008
Citation
Göktepe AB, Lav AH, Altun S, Akgüner C, Sezer A (2008), "Fatigue analysis of stabilised cement with image processing". Proceedings of the Institution of Civil Engineers - Transport, Vol. 161 No. 4 pp. 197–206, doi: https://doi.org/10.1680/tran.2008.161.4.197
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