Mobile QR Code QR CODE

Journal of the Korea Concrete Institute

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

References

1 
ACI 209R-92, (1992), Prediction of Creep, Shrinkage and Temperature Effect in Concrete Structure, ACI Manual lf Concrete Practice, ACI, 1-42.Google Search
2 
Alawais, Ahmed, West, Roger P. (2019), Ultra-violet and chemical treatment of crumb rubber aggregate in a sustainable concrete mix, Journal of Structural Integrity and Maintenance, 4(3), 144-152.DOI
3 
Bazant, Z. P., Kim, J. K. (1978), Improved prediction model for time-dependent deformations of concrete. Part 1, Mater. struct., 24, 327-234.Google Search
4 
Choi, S. Y., Kim, I. S., Choi, Y. S., Yang, E. I. (2019), A Study on the Applicability of Heavyweight Waste Glass and Steel Slag as Aggregate in Heavyweight Concrete, Journal of the Korea Institute for Structural Maintenance and Inspection, 23(2), 107-115 (in Korean).DOI
5 
Euro Code 2, (2004), European Committee for Standardization, 30-33.Google Search
6 
Gardner, N. J., Lockman, M. J. (2001), Design provisions for drying shrinkage and creep and normal-strength concrete, ACI Mater. J., 98(2), 159-167.Google Search
7 
Han, M. C., Moon, B. Y. (2017), The Effect of Combinations of Electric Arc Furnace Slag and Lime Stone aggregates on Engineering Properties of Ultra High Strength Concrete with 80MPa, Journal of the Korean Recycled Construction Resources Institute, 5(3), 253-260 (in Korean).DOI
8 
Japan Concrete Institute Technical Committee Report on Autogenous Shrinkage, (1998), Autogenous Shrinkage of Concrete, Proceedings of the International Workshop, ed. Tazawa, E&FN Spon London, 3-63.Google Search
9 
Jonasson, J., Hedlund, H. (2000), An Engineering Model for Creep and Shrinkage in high Performance Concrete, Proceedings of Internatioal RILEM Workshop on Shrinkage of Concrete, Shrinkage 2000, Edited by Baroghel-Bouny, V. and Aitcin, P. C., Paris, FranceGoogle Search
10 
Kim, N. W., Bae, J. S. (2009), A Fundamental Study on the Characteristics of Concrete with the Substitution Ratio of the Rapidly Cooled Steel Slag, Journal of the Korea Institute for Structural Maintenance and Inspection, 13(1), 78-87 (in Korean).Google Search
11 
Kim, S. M., Park, J. W., Lee, H. H., Kim, K. H. (2008), Study on Utilization of Electric Arc Furnace Oxidizing Slag as Fine Aggregates for Cement Concrete, Journal of the Korean Society of Civil Engineers A, 28(3a), 407-415 (in Korean).Google Search
12 
Korea Concrete Institute, (2012), Concrete Structure Design Code and Commentary, Korea Concrete Institute, Seoul.Google Search
13 
Kwon, S. H., Kim, J. K. (2016), Understanding of Drying Shrinkage and Autogeneous Shrinkage in Concrete, Magazine of the Korea concrete Institute, 31(5), 22-26 (in Korean).Google Search
14 
Kwon, S. H., Kim, J. K. (2016), Understanding of Drying Shrinkage and Autogeneous Shrinkage in Concrete, Magazine of the Korea concrete Institute, 31(5), 22-26 (in Korean).Google Search
15 
Mindess, S., Young, J. F., Darwin, D. (2003), Concrete, 2nd Edition, , Prentice Hall, Inc. U.S.A.Google Search
16 
Park, S. K. (2017), Prediction and Reduction Technology of Concrete Shrinkage, Magazine of the Korea concrete Institute, 29(6), 57-63 (in Korean).Google Search
17 
Ryu, D. H., Kim, K. H., Park, C. G., Son, Y. S. (2009), The Study of Concrete Basic Properties Using Oxidized Electric-furnace-slag Aggregate, Journal of the Architectural Institute of Korea Structure & Construction, 25(8), 143-150 (in Korean).Google Search