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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 
Abdi, H., and Williams, L. J. (2010), Principal component analysis, Wiley Interdisciplinary Reviews: Computational Statistics, 2(4), 433–459.URL
2 
Alwash, M., Breysse, D., Sbartaï, Z. M., Szilágyi, K., and Borosnyói, A. (2017), Factors affecting the reliability of assessing the concrete strength by rebound hammer and cores, Construction and Building Materials, Elsevier, 140, 354–363.DOI
3 
Arrhenius, S. (1889), Über die Dissociationswärme und den Einfluss der Temperatur auf den Dissociationsgrad der Elektrolyte, Zeitschrift für Physikalische Chemie, Wilhelm Ostwald, 4(1), 96–116.DOI
4 
ASTM C1074 (2019), Standard Specification for Concrete Aggregates, ASTM International.URL
5 
ASTM C33 (2016), Standard Specification for Concrete Aggregates, ASTM International.URL
6 
Breysse, D., Dérobert, X., and Sirieix, C. (2008), Non-destructive assessment of concrete strength: An historical review and a new perspective by combining NDT methods, Construction and Building Materials, Elsevier, 22(4), 388–397.URL
7 
Carino, N. J. (1984), The Maturity Method: Theory and Application, Cement, Concrete, and Aggregates, ASTM International, 6(2), 61–73.DOI
8 
Gayarre, F. L., Perez, C. L. C., Lopez, M. A. S., and Cabo, A. D. (2014), The effect of curing conditions on the compressive strength of recycled aggregate concrete, Construction and Building Materials, Elsevier, 53, 260–266.DOI
9 
Jain, A. K. (2010), Data clustering: 50 years beyond K-means, Pattern Recognition Letters, Elsevier, 31(8), 651–666.DOI
10 
John, S. T., Roy, B. K., Sarkar, P., and Davis, R. (2020), IoT enabled real-time monitoring system for early-age compressive strength of concrete, Journal of Construction Engineering and Management, ASCE, 146(2), 05019020.DOI
11 
Kaufman, L., and Rousseeuw, P. J. (2009), Finding Groups in Data: An Introduction to Cluster Analysis, John Wiley & Sons, Hoboken.URL
12 
KCS 14 20 00 (2024), Standard Specification for Concrete Works, Korean Construction Specification, Ministry of Land, Infrastructure and Transport.URL
13 
Lin, T. H., Putranto, A., and Wang, Y. T. (2021), Smart sensor tags for seepage sensing protected by 3D-printed case for embedding in concrete structures, Construction and Building Materials, Elsevier, 284, 122784.DOI
14 
Lothenbach, B., Winnefeld, F., Alder, C., Wieland, E., and Lunk, P. (2007), Effect of temperature on the pore solution, microstructure and hydration products of Portland cement pastes, Cement and Concrete Research, Elsevier, 37(4), 483–491.DOI
15 
MacQueen, J. (1967), Multivariate observations, Proceedings of the 5th Berkeley Symposium on Mathematical Statistics and Probability, University of California Press, Berkeley 1, 281–297.URL
16 
Malhotra, V. M., and Carino, N. J. (2003), Handbook on Nondestructive Testing of Concrete, CRC Press, Boca Raton.URL
17 
Ortiz, J., Aguado, A., Agulló, L., and García, T. (2005), Influence of environmental temperatures on the concrete compressive strength: Simulation of hot and cold weather conditions, Cement and Concrete Research, Elsevier, 35(10), 1970–1979.DOI
18 
Pichler, C., Schmid, M., Traxl, R., and Lackner, R. (2017), Influence of curing temperature dependent microstructure on early-age concrete strength development, Cement and Concrete Research, Elsevier, 102, 48–59.DOI
19 
Rousseeuw, P. J. (1987), Silhouettes: A graphical aid to the interpretation and validation of cluster analysis, Journal of Computational and Applied Mathematics, Elsevier, 20, 53–65.DOI
20 
Türkel, S., and Alabas, V. (2005), The effect of excessive steam curing on Portland composite cement concrete, Cement and Concrete Research, Elsevier, 35(2), 405–411.DOI
21 
Visual Crossing Corporation (2023), Visual Crossing Weather API – Historical and Forecast Weather Data, Visual Crossing Corporation, Leesburg, VA.URL
22 
Wang, J., Li, H., Ma, C., Cai, C., and Wang, J. (2024), Effect of surface curing condition on the humidity field and moisture transfer in concrete, Construction and Building Materials, Elsevier, 411, 134701.DOI
23 
Wang, X. Y., and Park, K. B. (2017), Analysis of the compressive strength development of concrete considering the interactions between hydration and drying, Cement and Concrete Research, Elsevier, 102, 1–15.DOI
24 
Waller, V., d’Aloïa, L., Cussigh, F., and Lecrux, S. (2004), Using the maturity method in concrete cracking control at early ages, Cement and Concrete Composites, Elsevier, 26(5), 589–599.DOI
25 
Yikici, T. A., and Chen, H. L. R. (2015), Use of maturity method to estimate compressive strength of mass concrete, Construction and Building Materials, Elsevier, 95, 802–812.DOI
26 
Zhang, L., Qian, X., Lai, J., Qian, K., and Fang, M. (2020), Effect of different wind speeds and sealed curing time on early-age shrinkage of cement paste, Construction and Building Materials, Elsevier, 255, 119366.DOI