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Journal of the Korea Concrete Institute

J Korea Inst. Struct. Maint. Insp.
  • Indexed by
  • Korea Citation Index (KCI)

References

1 
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2 
Wu, R.-J., Xia, J., Cheng, X., Liu, K.-H., Chen, K.-Y., Liu, Q.-F., and Jin, W.-L. (2022), Effect of random aggregate distribution on chloride-induced corrosion morphology of steel in concrete, Construction and Building Materials, 322, 126378.DOI
3 
Jeong, Y.-S., Park, K.-M., and Kim, I.-T. (2021), Evaluation for airborne salt and deposited salt of offshore steel bridge, Proceedings of Annual Conference of Korea Institute for Structural Maintenance and Inspection, 25(2), 126 (in Korean).URL
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Cho, G.-H., Lim, M.-H., and Park, D.-C. (2015), Effect of coating materials for steel on the threshold of corrosive amount of airborne chlorides and the evaluation of their corrosion speeds, Journal of the Korea Institute of Building Construction, 15(2), 143-151 (in Korean).DOI
6 
Jin, Y.-H., Ha, M-.G., Jeon, S. H., Jeong, Y.-S., and Ahn, J.-H. (2020), Evaluation of corrosion conditions for the steel box members by corrosion monitoring exposure test, Construction and Building Materials, 258, 120195.DOI
7 
Jin, Y.-H., Ha, M-.G., Jeong, Y.-S., and Ahn, J.-H. (2020), Relative corrosion environment conditions of steel box members examined by corrosion current measurement, Journal of the Korea Institute for Structural Maintenance and Inspection, 24(6), 171-179 (in Korean).URL
8 
Ha, M.-G., Jeon, S. H., Jeong, Y.-S., Mha, H.-S., and Ahn, J-.H. (2021), Corrosion environment monitoring of local structural members of a steel truss bridge under a marine environment, International Journal of Steel Structures, 21, 167-177.DOI
9 
Ha, M.-G., Jeong, Y. S., Park, S. h., and Ahn, J.-H. (2019), Evaluation of relative corrosion rate depending on local location and installation of structural member in steel water gate, Journal of the Korea Institute for Structural Maintenance and Inspection, 23(7), 16-24 (in Korean).URL
10 
Jeon, S. H., Ha, M.-G., Jeong, Y. S., and Ahn, J.-H. (2019), Evaluation of corrosion damage of structural steel depending on atmospheric exposure test, Journal of Korean Society of Steel Construction, 31(4), 245-252 (in Korean).DOI
11 
Ahn, J.-H., Jeon, S. H., Seong, T.-R., and Jeong, Y. S. (2019), Estimation of corrosion damage rate using corrosion current depending on atmospheric corrosion environment, Journal of Korean Society of Steel Construction, 31(4), 253-260 (in Korean).DOI
12 
Ha, M.-G., Heo, C.-J., and Ahn, J.-H. (2022), Correlation evaluation of time of wetness and mean corrosion depth depending on corrosive environment, Journal of Korean Society of Steel Construction, 34(3), 119-127 (in Korean).DOI
13 
Jung, J., Min, J., Lee, B., and Lee, J.-S. (2022), Properties on the aitborne chlorides of offshore bridges on the Western/Southern coast in South Korea, Journal of the Korea Institute for Structural Maintenance and Inspection, 26(2), 59-67 (in Korean).URL
14 
Park, K. M., Kim, I. T., Choi, Y. T., Yoo, H., and Jeong, Y. S. (2022), Characteristic of airborne sea salt and deposited salt on a offshore steel bridge considering environmental changes, Journal of Korean Society of Steel Construction, 34(6), 373-381 (in Korean).DOI
15 
ISO 8502-6 (2020), Preparation of steel substrates before application of paints and related products — Tests for the assessment of surface cleanliness — Part 6: Extraction of soluble contaminants for analysis — The Bresle method.URL
16 
KS D 0060 (2020), Recommended practice for weathering test.URL
17 
ISO 8407 (2021), Corrosion of metals and alloys — Removal of corrosion products from corrosion test specimens.URL
18 
Lee, J.-S., Ahn, K-H., Kim, D.-G., and Park, J.-J. (2010), Distribution properties of airborne chlorides in Korea, Journal of the Korea Concrete Institute, 22(6), 769-776 (in Korean).URL