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Predictingcarbonationinearlyagedcrackedconcrete早龄期开裂混凝土碳化预测
Cement and Concrete Research 36 (2006) 979 – 989
Predicting carbonation in early-aged cracked concrete
Ha-Won Song a,⁎, Seung-Jun Kwon a , Keun-Joo Byun a , Chan-Kyu Park b
a School of Civil and Environmental Engineering, Yonsei University, Seoul 120-479, Republic of Korea
b Samsung Corporation Co., LTD, Republic of Korea
Received 2 April 2005; accepted 22 December 2005
Abstract
Carbonation in cracked concrete is considered as one of major deteriorations accelerating steel corrosion in reinforced concrete structures. For
durable concrete structures, it is necessary to control crack in concrete through crack resistance evaluation for early-aged concrete structures, but
often unavoidable cracks in early-aged concrete may occur. These cracks become a main path for CO2 penetration inside concrete so that the
carbonation is accelerated in cracked concrete.
In this study, an analytical technique for carbonation prediction in early-aged cracked concrete was developed for considering both CO2
diffusion of pore water in sound concrete and in cracked concrete. Then, characteristics of diffusivity on the carbonation in early-aged concrete are
studied through finite element analysis implemented with the so-called multi-component hydration heat model and micro-pore structure formation
model. The carbonation behaviour in sound concrete and cracked concrete are also simulated by using the derived diffusivity with consideration of
reaction with dissolved CO2. Finally, numerical results obtained for cracked concrete made with 3 different W/ C ratios (45%, 55%, and 65%) with
different crack widths were compared with experimental results.
© 2005 Elsevier Ltd. All rights reserved.
Keywords: Concrete; Micro-models; FEM
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