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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. 
Bindiganavile, V., Banthia, N (2001), Polymer and Steel fiber-Reinforced Cementitious Composites under ImpactLoading-part 2: Flexural Toughness, ACI Materials Journal, 98(1), 17-24.Google Search
2. 
Cho, Y.I., Han, S.H., Park, J.K., Yeon, Y.M., Hong, K.N (2017), Flexural Behavior of RC Beam Repaired with PolymerMortar, Journal of the Korea Institute for Structural of Maintenance and Inspection, 21(1), 91-99.Google Search
3. 
Choi, j.G., Lee, G.C., Ko, K.T., Rue, G.S (2015), Effect of VAE Type Powder Polymer on Strength Properties of High Strength Polymer Cement Mortars, The Korea Institute of Building Construction, 15(3), 299-306.Google Search
4. 
Han, S.H., Kim, G.Y., Kim, H.S., Kim, J.Y., Nam, J.S (2015), Evaluation on Rear Fracture Reduction and Crack Properties of Cement Composites with High-Velocity Projectile Impact by Fiber Types, Journal of the Korea Concrete Institute, 27(2), 157-167.DOI
5. 
Kim, S.H., Hong, S.G., Yun, H.D., Kang, H.K. (2015), High-Velocity Impact Experiment on Impact Resistance of Steel Fiber-Reinforced Concrete Panels with Wire Mesh, Journal of the Korea Concrete Institute, 27(2), 103-113.DOI
6. 
Kim, S.H., Kang, M.B., Lee, D.W. (2015), Chloride penetration Resistance and Flexural Behavior of Hybrid organic fibers reinforced Concrete, J. Korean Geosynthetics Society, 14(4), 105-115.DOI
7. 
Kim, Y.W., Min, K.W., Yang, J.M., Yoon, W.S. (2009), Flexural and Impact Resisting Performance of HPFRCCs using Hybrid PVA Fibers, Journal of the Korea Concrete Institute,21(6), 705-712.DOI
8. 
Lee, B.Y., Bang, J.W., Kim, Y.Y (2013), Enhancing the performance of Polypropylene Fiber Reinforced Cementitious Composite Produced with High Volume Fly Ash, Journal of the Korea Institute for Structural of Maintenance and Inspection, 17(3), 118-125.DOI
9. 
Lee, S.Y., Kim, G.D., Kim, S.J, Chang, C.H (2018), High-Energy Impact Behaviors of Hybrid Composite Plates Strengthened with 3D-UHMWPE Composites, Shock and Vibration, High-Energy Impact Behaviors of Hybrid Composite Plates Strengthened with 3D-UHMWPE Composites, Shock and Vibration, 2018(2018), 1-11. 10.1155/2018/76260751070-9622, 2018, 1-11.DOI
10. 
Li, L. (2013), Evaluation Local Damages and Blast Resistance of RC Slabs Subjected to Contact Detonation, Journal of the Korea Institute for Structural ofMaintenance and Inspection, 17(1), 37-45.Google Search
11. 
Min, J.Y., Cho, H.W., Lee, J.W., Kim, S.W., Moon, J.H (2015), Evaluation of Fracture Behaviours of Cementitious Composites by High-Velocity Projectile Impact, Journal of the Korea Institute for Structural of Maintenance and Inspection,19(6), 55-62.DOI
12. 
Min, K.H., Lee, J.Y., Kim, M.H., Yoon, Y.S (2011), Behavior of Concrete Segmented Composites using Polymer Mortar under Static and Impact loadings, Journal of the Korea Institute for Structural of Maintenance and Inspection, 15(5), 169-177.DOI
13. 
Mindess, S., Bentur, A., Yan, C., Vondran, G (1989), Impact resistance of Concrete Containing both Conventional SteelReinforcement and Fibrillated Polypropylene Fibers, ACI Materials Journal, 86(6), 545-549.Google Search
14. 
Park, S.S., Kim, J.H (2010), Study on Adhesive Strength of Polymer Modified Cement Mortar for Maintenance in Concrete Structures, Journal of the Korea Institute for Structural of Maintenance and Inspection, 14(5), 128-135.Google Search
15. 
Poston, R.W., Kesner, K.E., Vaysburd, A.M., Emmons, P.H (2001), Concrete Repair Material Performance – Laboratory Study, ACI Materials Journal, 98(2), 137-147.Google Search
16. 
Shao, Y., Shah, S.P (1997), Mechanical Properties of PVA Fiber reinforced Cement Composites Fabricated by ExtrusionProcessing, ACI Materials Journal, 94(3), 555-564.Google Search
17. 
Son, M.J., Kim, G.Y., Lee, S.K., Kim, H.S., Nam, Y.S (2017)