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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 
Pang, X., Sun, L., Sun, F., Zhang, G., Guo, S., Bu, Y. (2021), Cement Hydration Kinetics Study in The Temperature Range from 15 °C to 95 °C, Cement and Concrete Research, 148, 106552DOI
2 
Neville, A.M. (1998), Properties of Concrete 4th. Edition, John Wiley & Sons Inc, New York, Pitman Publishing Ltd, London, 844Google Search
3 
Young, J. F. (1972), A Review of The Mechanisms of Set-Retardation in Portland Cement Pastes Containing Organic Admixtures, Cement and Concrete Research, 2(4), 415-433.DOI
4 
Carino, S. J. (1994), Nondestructive Testing of Concrete: History and Challenges, Concrete Technology: Past, Present and Future, ACI SP-144, 623-678.URL
5 
Carino, S. J. (1995), The Use of Temperature as An Indicator of Setting Time of Mortar Specimens, Undergraduate Research Project, Cornell University, Ithaca, NY.Google Search
6 
Pinto, R. C., Hover, K. C. (1999), Application of Maturity Approach to Setting Times, Materials Journal, 96(6), 686-691.URL
7 
Torrents, J. M., Pallas-Areny, R. (1997), Measurement of Cement Setting by Impedance Monitoring, InIEEE Instrumentation and Measurement Technology Conference Sensing, Processing, Networking. IMTC Proceedings, IEEE, 1089-1093.DOI
8 
Lee, H. K., Lee, K. M., Kim, Y. H., Yim, H., Bae, D. B. (2004), Ultrasonic In-Situ Monitoring of Setting Process of High- Performance Concrete, Cement and Concrete Research, 34(4), 631-640.DOI
9 
Chung, C. W., Suraneni, P., Popovics, J. S., Struble, L. J. (2012), Setting Time Measurement Using Ultrasonic Wave Reflection, ACI Materials Journal, 109(1), 109-117.URL
10 
Trtnik, G., Valič, M. I., Turk, G. (2013), Measurement of Setting Process of Cement Pastes Using Non-Destructive Ultrasonic Shear Wave Reflection Technique, NDT & E International, 56, 65-75.DOI
11 
Yim, H. J., Kim, J. H., Shah, S. P. (2014), Ultrasonic Monitoring of The Setting of Cement-Based Materials: Frequency Dependence, Construction and Building Materials, 65, 518-525.DOI
12 
Yim, H. J., Bae, Y. H., Jun, Y. (2021), Hydration and Microstructural Characterization of Early-Age Cement Paste with Ultrasonic Wave Velocity and Electrical Resistivity Measurements, Construction and Building Materials, 303, 124508DOI
13 
Heikal, M., Morsy, M. S., Aiad, I. (2005), Effect of Treatment Temperature on The Early Hydration Characteristics of Superplasticized Silica Fume Blended Cement Pastes, Cement and Concrete Research, 35(4), 680-687.DOI
14 
Schwarz, N., DuBois, M., Neithalath, N. (2007), Electrical Conductivity Based Characterization of Plain and Coarse Glass Powder Modified Cement Pastes, Cement and concrete composites, 29(9), 656-666.DOI
15 
Koleva, D. A., Copuroglu, O., Van Breugel, K., Ye, G., De Wit, J. H. W. (2008), Electrical Resistivity and Microstructural Properties of Concrete Materials in Conditions of Current Flow, Cement and Concrete Composites, 30(8), 731-744.DOI
16 
Yim, H. J., Lee, H., Kim, J.H. (2017), Evaluation of Mortar Setting Time by Using Electrical Resistivity Measurements, Construction and Building Materials, 146, 679-686.DOI
17 
Campo, M. A., Woo, L. Y., Mason, T. O., Garboczi, E. J. (2002), Frequency-Dependent Electrical Mixing Law Behavior in Spherical Particle Composites, Journal of electroceramics, 9(1), 49-56.DOI
18 
Wang, Z., Zeng, Q., Wang, L., Yao, Y., Li, K. (2015), Electrical Resistivity of Cement Pastes Undergoing Cyclic Freeze-Thaw Action, Journal of Materials in Civil Engineering, 27(1), 04014109DOI
19 
Topçu, İ. B., Uygunoğlu, T., Hocaoğlu, İ. (2012), Electrical Conductivity of Setting Cement Paste with Different Mineral Admixtures, Construction and Building Materials, 28(1), 414-420.DOI
20 
Andi, M., Yohanes, G. R. (2019), Experimental Study of Crack Depth Measurement of Concrete with Ultrasonic Pulse Velocity (UPV, In IOP Conference Series: Materials Science and Engineering, IOP Publishing, 673(1), 012047DOI
21 
Bishop, M., Barron, A. R. (2006), Cement Hydration Inhibition with Sucrose, Tartaric Acid, and Lignosulfonate: Analytical and Spectroscopic Study, Industrial & engineering chemistry research,45(21), 45(21), 7042-7049.DOI
22 
Rai, S., Singh, N. B., Singh, N. P. (2006), Interaction of Tartaric Acid during Hydration of Portland Cement, Indian journal of chemical technology, 13(3), 255-261.Google Search
23 
Stauffer, J. D., Woodward, C. B., White, K. R. (2005), Nonlinear Ultrasonic Testing with Resonant and Pulse Velocity Parameters for Early Damage in Concrete, ACI materials journal, 102(2), 118URL
24 
Zhang, J., Scherer, G. W. (2011), Comparison of Methods for Arresting Hydration of Cement, Cement and Concrete Research, 41(10), 1024-1036.DOI
25 
Jeong, Y., Oh, J. E., Jun, Y., Park, J., Sohn, S. G. (2016), Influence of Four Additional Activators on Hydrated-Lime [Ca(OH)2] Activated Ground Granulated Blast-Furnace Slag, Cement and Concrete Composites, 65, 1-10.DOI
26 
Zhang, Y., Zhang, W., She, W., Ma, L., Zhu, W. (2012), Ultrasound Monitoring of Setting and Hardening Process of Ultra-High Performance Cementitious Materials, Ndt & E International, 47, 177-184.DOI
27 
ASTM C305-14, Standard Practice for Mechanical Mixing of Hydraulic Cement Pastes and Mortars of Plastic Consistency, ASTM International, West Conshohocken, PA, 2014Google Search
28 
ASTM C191-21, Standard Test Methods for Time of Setting of Hydraulic Cement by Vicat Needle, ASTM International, West Conshohocken, PA, 2021.Google Search
29 
, ASTM C597-16Standard Test Method for Pulse Velocity Through Concrete, ASTM International, West Conshohocken, PA, 2016.Google Search
30 
Han, C. G., Han, M. C., Yoon, C. W., Sim, B. K. (2001), Setting and Compressive Strength Properties of Cement Mortar Using Super Retarding Agent, Journal of the Architecture Institute of Korea Structure & Construction, AURIC, 17(10), 87-94.Google Search
31 
Lee, H. K., Lee, K. M., Kim, Y. H., Yim, H. J. (2002), Estimation of Setting Time and Early-Age Strength of Concrete Using the Ultrasonic Pulse Velocity, Journal of the Korean Society for Nondestructive Testing, 22(3), 292-303.URL
32 
Kim, D. J., Kim, S. C., Han, W., Lee, J. S., Byun, Y. H. (2020), Evaluation of Early-age Properties of Controlled Low Strength Material Using Non-destructive Testing, Journal of The Korean Society of Agricultural Engineers, 62(2), 31-38.DOI
33 
Lee, B. H., Lee, S. C. (1999), Major Foundational Techniquess for Grounding Systems, Uije Publication Ltd, 45-51.Google Search
34 
Hwang, G. R., Shin, S. W. (2012), Setting Monitoring of Hydration Cement-Based Materials Using Electrical Impedance Spectroscopy, Proceedings of Korean Society of Civil Engineers Conference, Korean Society of Civil Engineers, Gwangju, Korea, 2449-2452.Google Search
35 
Shin, S. W., Hwang, G., Lee, C. J. (2014), Electrical Impedance Response Model of Concrete in Setting Process, Journal of the Korean Society of Safety, 29(5), 116-122.DOI