(2014), Evaluation of Hydration Heat of Mass Concrete with Capsulated Slurry PCM
and FEM Study for Analyzing Thermal Crack, Journal of the Korea Institute of Building
Construction, 14(5), 379-388.
(2012), An experimental study to apply for high-rise construction according to various
technical properties of ultra high-strength concrete, Journal of the Architectural
Institute of Korea Structure & Construction, 28(1), 85-92.
(2010), Field Application of the Mass Concrete Utilizing Combined Method for Temperature
Crack Reduction, Journal of the Korea Institute of Building Construction Spring Conference,
10(1), 37-39.
(2006), Study of Strength Development of Ultra High-Strength Concrete, Journal of
the Architectural Institute of Korea, Structure & Construction, 22(6), 111-118.
(2006), A Fundamental Study on the Hydration Heat Reduction of Transfer Girder Mass
Concrete Controlling Setting Time, Journal of the Architectural Institute of Korea,
Structure & Construction, 22(3), 87-93.
(2006), Prediction of Setting Time of Concrete Using Fly Ash and Super Retarding
Agent, Journal of the Korea Concrete Institute, 18(6), 759-767.
(2005), Field Application of Setting Time Difference Method Using SRA for Reduction
of Hydration Heat of Mass Concrete, Journal of the Korea Institute of Building Construction
Spring Conference, 5(1), 21-24.
(2003), The Properties of Temperature History of Mass Concrete Place with Horizontal
Division Using Setting Time Difference by Super Retarding Agent, Journal of the Architectural
Institute Fall Conference of Korea, 23(2), 447-450.
(2000), Application and Concrete Mix design by Control methods of Thermal Cracking
in Mass Concrete Structure considering the Constructional Condition, Journal of the
Architectural Institute of Korea, Structure & Construction, 16(7), 87-94.
(2007), Hydration Heat Analysis of Mass Concrete Considering Low Heat Mixture and
Block Placement, Master’s course Thesis, Cheongju University
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(2009), Concrete standard specification
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(2007), Effect of water/cement ratio on the fresh and hardened properties of selfcompacting
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