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Journal of the Korea Concrete Institute

J Korea Inst. Struct. Maint. Insp.
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  • Korea Citation Index (KCI)

References

1 
Glasser, F. P., Marchand, J., and Samson, E. (2008), Durability of concrete-Degradation phenomena involving detrimental chemical reactions. Cement and Concrete Research, 38(2), 226-246.DOI
2 
Cho, S. J., Yoon, Y. S., and Kwon, S. J. (2018), Carbonation behavior of GGBFS-based concrete with cold joint considering curing period, Journal of the Korean Recycled Construction Resources Institute, 6(4), 259-266 (in Korean).DOI
3 
Li, Z., Jin, Z., Wang, P., and Zhao, T. (2021), Corrosion mechanism of reinforced bars inside concrete and relevant monitoring or detection apparatus: A review. Construction and Building Materials, 279, 122432.DOI
4 
Kim, H. K., Nam, J. W., and Kwon, S. J. (2024), Corrosion behavior of ASTM A416 tendon steel in wet conditions under various chloride concentrations. International Journal of Electrochemical Science, 19(10), 100808 (in Korean).DOI
5 
Lee, H. W., Shin, G. C., and Kwon, S. J. (2024), Strength and Carbonation Characteristics in OPC Concrete under Long-Term Exposure Conditions in Various Sea Environments. Journal of the Korea Institute for Structural Maintenance and Inspection, 28(1), 53-60 (in Korean).DOI
6 
De Weerdt, K., Justnes, H., and Geiker, M. R. (2014), Changes in the phase assemblage of concrete exposed to sea water. Cement and Concrete Composites, 47, 53-63.DOI
7 
Zhu, X., Zi, G., Cao, Z., and Cheng, X. (2016), Combined effect of carbonation and chloride ingress in concrete. Construction and Building Materials, 110, 369-380.DOI
8 
Kobayashi, K., and Uno, Y. (1990), Mechanism of carbonation of concrete. Concrete Library of JSCE, 16(12), 139-151.URL
9 
Ishida, T., and Maekawa, K. (2000), Modeling of pH profile in pore water based on mass transport and chemical equilibrium theory. Doboku Gakkai Ronbunshu, 2000(648), 203-215.DOI
10 
Song, H. W., and Kwon, S. J. (2007), Permeability characteristics of carbonated concrete considering capillary pore structure. Cement and Concrete Research, 37(6), 909-915DOI
11 
Alshaeer, H. A. Y., Irwan, J. M., Alshalif, A. F., Al-Fakih, A., Ewais, D. Y. Z., Salmi, A., and Alhokabi, A. A. (2022), Review on carbonation study of reinforcement concrete incorporating with bacteria as self-healing approach. Materials, 15(16), 5543.DOI
12 
Seo, E. A., and Lee, H. J. (2024), Correlation Study of Carbonation Analysis Methods for Cement Paste with Fly Ash. Journal of the Korea Institute for Structural Maintenance and Inspection, 28(5), 54-61 (in Korean).DOI
13 
fib Bulletin No. 34 (2006), Model Code for Service Life Design (bulletin), International Federation for Structural Concrete (fib), 72-79.URL
14 
Ashraf, W. (2016), Carbonation of cement-based materials: Challenges and opportunities. Construction and Building Materials, 120, 558-570.DOI
15 
Kim, G. Y., Choe, G. C., Nam, J. S., and Choi, H. G. (2015), Durability design of concrete structure based on carbonation. Magazine of the Korea Concrete Institute, 27(5), 21-24DOI
16 
Zhu, J., Zhang, R., Zhang, Y., and He, F. (2019), The fractal characteristics of pore size distribution in cement-based materials and its effect on gas permeability. Scientific Reports, 9(1), 17191.DOI
17 
Cheng, Z., Wang, Y., Zhao, J., and Huang, C. (2022), Gas permeability prediction of mortar samples based on different methods. Crystals, 12(5), 581.DOI
18 
Shi, J., Qian, R., Wang, D., Liu, Z., Chun, Q., and Zhang, Y. (2022), Experimental study on gas permeability of cement-based materials. Cement and Concrete Composites, 129, 104491.DOI
19 
Care, S., and Derkx, F. (2011), Determination of relevant parameters influencing gas permeability of mortars. Construction and Building Materials, 25(3), 1248-1256.DOI
20 
Zhang, D., and Li, K. (2019), Concrete gas permeability from different methods: Correlation analysis. Cement and Concrete Composites, 104, 103379.DOI
21 
Torrent, R. J. (1992), A two-chamber vacuum cell for measuring the coefficient of permeability to air of the concrete cover on site. Materials and Structures, 25, 358-365.DOI
22 
Kim, J. H., and Chung, C. W. (2019), Utilization of Mercury Intrusion Porosimetry, Gas Adsorption, and Pycnometry for Characterization of Pore Structure in Cementitious Materials. Magazine of the Korea Concrete Institute, 31(3), 26-30.URL
23 
Papadakis, V. G., Vayenas, C. G., and Fardis, M. N. (1991), Fundamental modeling and experimental investigation of concrete carbonation. Materials Journal, 88(4), 363-373.DOI
24 
Yoon, I. S. (2016), Modeling of gas permeability coefficient for cementitious materials with relation to water permeability coefficient. KSCE Journal of Civil and Environmental Engineering Research, 36(2), 207-217 (in Korean).DOI