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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 
Choi, Y. C., Choi, J. S., and Cho, Y. W. (2011), Biomimetic Functional Materials: Find a Solution from Mother Nature, Polymer Science and Technology, 22(5), 460-466 (in Korean).URL
2 
Barthelat, F. (2007), Biomimetics for next generation materials, Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences, 365(1861), 2907-2919.DOI
3 
Kakisawa, H., and Sumitomo, T. (2012), The toughening mechanism of nacre and structural materials inspired by nacre, Science and technology of advanced materials.URL
4 
Li, V. C. (1997), Damage tolerance of engineered cementitious composites, Elsevier Science Ltd.(UK), 619-629.URL
5 
Kwon, K. S., Bang, J. W., and Kim, Y. Y. (2018), Flexural Performance of Multi-layered Fiber-reinforced Cement Composites with Diverse Interface Shape, Journal of the Korea Concrete Institute, 30(4), 429-435 (in Korean).DOI
6 
Lin, Z., Kanda, T., and Li, V. C. (1999), On interface property characterization and performance of fiber reinforced cementitious composites, RILEM J. Concrete Science and Engineering, 1, 173-184.URL
7 
Cho, C. G., Kim, Y. Y., Feo, L., and Hui, D. (2012), Cyclic responses of reinforced concrete composite columns strengthened in the plastic hinge region by HPFRC mortar, Composite Structures, 94(7), 2246-2253.DOI
8 
Hyun, C. J., Seo, J. S., and Kim, Y. Y.(2023), Flexural Experiments on Reinforced Concrete Beams Strengthened with SHCC and Special Reinforcements, Journal of The Korea Institute for Structural Maintenance and Inspection, 27(1), 46-53 (in Korean).URL
9 
Hyun, J. H., Lee, B. Y., and Kim, Y. Y. (2018), Composite properties and micromechanical analysis of highly ductile cement composite incorporating limestone powder. Applied Sciences, 8(2), 151.DOI
10 
Boukhelf, F., Sebaibi, N., Boutouil, M., Yoris-Nobile, A. I., Blanco-Fernandez, E., Castro-Fresno, and E. Hall, A. (2022), On the Properties Evolution of Eco-Material Dedicated to Manufacturing Artificial Reef via 3D Printing: Long-Term Interactions of Cementitious Materials in the Marine Environment, Sustainability, 14(15), 9353.DOI
11 
Lee, B. J., Kim, B. K., and Kim, Y. Y. (2022), Strength and Durability Characteristics of Low-alkali Mortar for Artificial Reefs Produced by 3D Printers, Journal of the Korea Institute for Structural Maintenance and Inspection, 26(1), 67-72 (in Korean).DOI
12 
Seo, J. S., Hyun, C. J., and Kim, Y. Y. (2022), Effect of polymer post-treatment on the durability of 3D-printed cement composites, Journal of the Korea Institute for Structural Maintenance and Inspection, 26(5), 20-29 (in Korean).URL
13 
Kim, H. J., Lee, B. J., and Kim, Y. Y. (2023), Material Properties of 3D Printed Mortars Produced with Synthetic Fibers and Biopolymers, Journal of the Korea Institute for Structural Maintenance and Inspection, 27(4), 78-85 (in Korean).URL
14 
Kwon, K. S., Chun. J. Y., and Kim, Y. Y. (2020), Flexural Behavior of Highly Ductile Cement Composites Mimicking Boundary Conditions of Shellfish Skin Layer, Journal of the Korea Institute for Structural Maintenance and Inspection, 24(1), 108-115 (in Korean).DOI
15 
Seo, J. S., Lee, B. C., and Kim, Y. Y. (2020), The Effects of Void Ratio on Extrudability and Buildability of Cement-based Composites Produced by 3D Printers, Journal of the Korea Institute for Structural Maintenance and Inspection, 23(7), 104-112 (in Korean).DOI