The deterioration of bridge deck pavement appears to be inevitable and is attributable to both the environment and to traffic density and loading. In particular, the intrusion of chlorides or other corrosive solutions can cause corrosion in the reinforcing bars, consequently deteriorating the bridge deck pavement. The current study investigated the optimum mix proportions of mineral admixture concrete for bridge deck overlays. The basic mix proportion was determined using the Box–Behnken design technique, which is a response surface method. The optimum mix proportions were then calculated using a response surface analysis based on a statistical optimisation method. The present study also evaluated the durability performance of the optimum bridge deck overlay mixture. The mixture proved to be highly resistant to chloride intrusion, abrasion, and freeze–thaw deterioration, and it is expected to provide superior long-term service with minimal maintenance.
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November 2006
Research Article|
November 01 2006
Statistical optimisation and durability characteristics of bridge deck overlay concrete Available to Purchase
J.-P. Won;
J.-P. Won
*
Department of Civil and Environmental System Engineering, Konkuk University
Seoul, 143-701, South Korea
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J.-M. Seo;
J.-M. Seo
*
Department of Civil and Environmental System Engineering, Konkuk University
Seoul, 143-701, South Korea
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C.-G. Park;
C.-G. Park
*
Department of Civil and Environmental System Engineering, Konkuk University
Seoul, 143-701, South Korea
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J.-H. Kim
J.-H. Kim
*
Department of Civil and Environmental System Engineering, Konkuk University
Seoul, 143-701, South Korea
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Publisher: Emerald Publishing
Received:
June 30 2005
Revision Received:
February 02 2006
Accepted:
May 25 2006
Online ISSN: 1751-763X
Print ISSN: 0024-9831
© 2006 Thomas Telford Ltd
2006
Magazine of Concrete Research (2006) 58 (9): 601–608.
Article history
Received:
June 30 2005
Revision Received:
February 02 2006
Accepted:
May 25 2006
Citation
Won J, Seo J, Park C, Kim J (2006), "Statistical optimisation and durability characteristics of bridge deck overlay concrete". Magazine of Concrete Research, Vol. 58 No. 9 pp. 601–608, doi: https://doi.org/10.1680/macr.2006.58.9.601
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