JKCI
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the Korea Concrete Institute
KCI
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ISSN : 1229-5515 (Print)
ISSN : 2234-2842 (Online)
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Journal of the Korea Concrete Institute
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J Korea Concr Inst.
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2025-02
(Vol.37 No.1)
10.4334/JKCI.2025.37.1.013
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REF
References
1
Choi, Y. W., Choi, B. K., and Oh, S. R. (2016) Absorption Properties of Coarse Aggregate according to Pressurization for Development of High Fluidity Concrete under High Pressure Pumping. Journal of the Korea Institute for Structural Maintenance and Inspection 20(3), 122-129. (In Korean)
2
KATS (2022) Test Method for Concrete Slump (KS F 2402). Seoul, Korea: Korea Agency for Technology and Standards (KATS), Korean Standards Association (KSA). (In Korean)
3
KCI (2019a) Standard Test Method for Rheology of Concrete : Vane Rotation Method (KCI-UC109). Seoul, Korea; Korea Concrete Institute (KCI). (In Korean)
4
KCI (2019b) Standard Test Method for Rheology of Lubricating Layer in Pipe during Concrete Pumping Cylinder Rotation Method (KCI-UC110). Seoul, Korea; Korea Concrete Institute (KCI). (In Korean)
5
KCI (2021a) Normal Concrete (KCS 14 20 10). Seoul, Korea, Korea Concrete Institute (KCI). (In Korean)
6
KCI (2021b) Standard Concrete Specification and Commentary. Seoul, Korea; Korea Concrete Institute (KCI). (In Korean)
7
Kim, J. S., Kwon, S. H., Jang, K. P., and Choi, M. S. (2018) Concrete Pumping Prediction Considering Different Measurement of the Rheological Properties. Construction and Building Materials 171, 493-503.
8
Kwon, S. H., Jo, S. D., Park, C. K., Jeong, J. H., and Lee, S. H. (2013a) Prediction of Concrete Pumping: Part I - Development of a New Tribometer to Measure Rheological Properties of Lubricating Layer. ACI Materials Journal 110(6), 647-655.
9
Kwon, S. H., Jo, S. D., Park, C. K., Jeong, J. H., and Lee, S. H. (2013b) Prediction of Concrete Pumping: Part II – Analytical Prediction and Experimental Verification. ACI Materials Journal 110(6), 657-668.
10
Lee, J. S., Jang, K. P., Park, C. K., and Kwon, S. H. (2023) Experimental Study on Variation in Rheological Properties of Concrete Subjected to Pressure and Shearing by Pumping. Advances in Concrete Construction 16(1), 59-68.
11
Lee, J. S., Kim, E. S., Jang, K. P., Park, C. K., and Kwon, S. H. (2022) Prediction of Concrete Pumping Based on Correlation between Slump and Rheological Properties. Advances in Concrete Construction 13(5), 395-410.
12
Moon, H. Y., and Moon, D. J. (1998) Utilization of Mineral Admixtures for the Reduction of Slump Loss in Fresh Concrete, Magazine of the Korea Concrete Institute 10(2), 155-165. (In Korean)
13
Ouchi, M., and Sakue, J. (2008) Self-Compactability of Fresh Concrete in terms of Dispersion and Coagulation of Particles of Cement Subject to Pumping. SCC2008, Chicago, IL, USA.
14
Petit, J. Y., Khayat, K. H., and Wirquin, E. (2008) Methodology to Couple Time-Temperature Effects on Rheology of Mortar, ACI Materials Journal 105(4), 342-349.
15
Watanabe, K., Ono, H., Katou, K., and Tanigawa, Y. (2007) Analytical and Experimental Study on Flow of Fresh concrete in Conveying Pipe. Proceedings of the 5th International RILEM Symposium on Self-Compacting Concrete, Ghent, Belgium, 393-398.