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Journal of the Korea Concrete Institute

J Korea Inst. Struct. Maint. Insp.
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  • Korea Citation Index (KCI)
1. 
An, E., J., Shin, M., S. (2014), Healing Mechanisms and Assessment Techniques of Self-healing Concrete, Proceeding of Korea Concrete Institute, Healing Mechanisms and Assessment Techniques of Self-healing Concrete, Proceeding of Korea Concrete Institute, 26(2), 477-479 (in Korean)., 26(2), 477-479.Google Search
2. 
Blaiszika, B.J., Sottos, N.R., White, S.R. (2007), Nanocapsules for self-healing materials, Journal of Composites Science and Technology, Nanocapsules for self-healing materials, Journal of Composites Science and Technology, 68(3), 978-986., 68(3), 978-986.Google Search
3. 
Choi, Y. W., Oh, S. R., Kim, C. G., Im, H. S. (2018), Preparation Characteristics of Self-healing Microcapsules for Mixing Cement Composites Utilizing Liquid Inorganic Materials, Preparation Characteristics of Self-healing Microcapsules for Mixing Cement Composites Utilizing Liquid Inorganic Materials, 6(4), 236-243 (in Korean)., 6(4), 236-243.Google Search
4. 
Erik Schlangen and Senot Sangadji (2013), Addressing Infrastructure Durability and Sustainability by Self Healing Mechanisms - Recent Advances in Self Healing Concrete and Asphalt, Journal of Procedia Engineering, The 2nd International Conference, 54, 39-57.Google Search
5. 
Nesterova, Tatyana, Dam-Johansena, Kim, Pedersen, Lars Thorslund, Kiil, Søren (2012), Microcapsule-based Self-Healing Anticorrosive Coatings: Capsule Size, Coating Formulation, and Exposure Testing, Journal of Organic Coatings, Microcapsule-based Self-Healing Anticorrosive Coatings: Capsule Size, Coating Formulation, and Exposure Testing, Journal of Organic Coatings, 75(4), 309-318. 10.1016/j.porgcoat.2012.08.002, 75(4), 309-318.DOI
6. 
Kim, C. G. (2017), A Study on the Crack Self Healing Properties of Cement Mortar Utilizing Micro Capsules with Liquid-typeInorganic materials, A Study on the Crack Self Healing Properties of Cement Mortar Utilizing Micro Capsules with Liquid-typeInorganic materials, Master Thesis, Semyung University (in Korean).Google Search
7. 
Kim, P. S., Jo, C. K., Ju, T. H., Choi, Y. C., Lee, J. K. (2003), Preparation and Thermal Characteristics of MicroencapsulatedPCM for None Supercooling Phenomenon
8. 
Hunger, M., Entrop, A.G., Mandilaras, I., Brouwers, H.J.H., Founti, M. (2009), The Behavior of Self-Compacting ConcreteContaining Micro-Encapsulated Phase Change Materials, Journal of Cement & Concrete Composites, The Behavior of Self-Compacting ConcreteContaining Micro-Encapsulated Phase Change Materials, Journal of Cement & Concrete Composites, 31(10), 731-743. 10.1016/j.cemconcomp.2009.08.002, 31(10), 731-743.DOI
9. 
Oh, S. R. (2017), A Study on the Development and Properties of Cementitious Composite Materials Utilizing Capsules for Crack Self-Healing, Ph.D Thesis, Semyung University (in Korean). Google Search
10. 
Shazim Ali Memon, H.Z. (2014), Utilization of Macro Encapsulated Phase Change Materials for the Development of Thermal Energy Storage and Structural Lightweight Aggregate Concrete, Journal of Applied Energy, Utilization of Macro Encapsulated Phase Change Materials for the Development of Thermal Energy Storage and Structural Lightweight Aggregate Concrete, Journal of Applied Energy, 139,43-55. 10.1016/j.apenergy.2014.11.022, 139, 43-55.DOI
11. 
Song, Y. K., Jo, Y. H., Lim, Y. J., Cho, S. Y., Yu, H. C., Ryu, B. C., Lee, S. I., Chung, C. M. (2013), Sunlight-induced self-healing of a microcapsule-type protective coating, Journal of ACS AppliedMaterials and Interfaces, 5(4), 1378-1384.DOI
12. 
Wang, Xianfeng, Xing, Feng, Zhang, Ming, Han, Ningxu, Qian, Zhiwei (2003), Experimental Study on Cementitious Composites Embedded with Organic Microcapsules, Journal of Materials, Experimental Study on Cementitious Composites Embedded with Organic Microcapsules, Journal of Materials, 6(9), 4064-4081. 10.3390/ma6094064287883182314-4866, 6(9), 4064-4081.DOI