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Evaluation of Corrosion Progress for Reinforcing Steel Inside Concrete After Crack Initiation or After Crack Repair Using AC Impedance Method

https://doi.org/10.2472/jsms.69.921
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This work could not be checked — none of the deposited references carry a DOI. No claim is made either way about its reference list.

17 without a DOI — not checked. A reference deposited without a DOI is never matched by title or guessed at; it stays outside the checked set, and this line discloses that.

The 17 references without a DOI — listed, not checked
no DOI — not checked1) Japan Society of Civil Engineers, “Standard specifications for concrete structures-2018, Maintenance” JSCE Guidelines for Concrete (2018).
no DOI — not checked2) Japan Society of Civil Engineering “Corrosive evaluation and prevention of corrosion technology research subcommittee (338 Committee) committee's report”, (2009).
no DOI — not checked3) T. Matsumura, T. Kanazu and T. Nishiuchi, “An evaluation method for corroding of reinforcement in concrete structure located in seashore atmosphere”, Journal of JSCE, Vol.45, No.634, pp.303-314 (1999).
no DOI — not checked4) S. Tottori and T. Miyagawa, “Deterioration prediction of concrete structures concerning rebar corrosion due to initially-induced chlorides”, Journal of JSCE, Vol.66, No.781, pp.157-170 (2005).
no DOI — not checked5) K. Matsuda, M. Yokota, H. Nakagawa and M. Matsushima, “Prediction of progress of reinforcement corrosion embedded in concrete structures by experimental chloride attack based on exposure test”, Journal of JSCE, Vol.70, No.3, pp.289-300 (2014).
no DOI — not checked6) H. Morikawa, A. Miyamoto and K. Takeuchi, “Structural safety evaluation and remaining life prediction of concrete bridges based on statistical analysis”, Journal of JSCE, Vol.25, No.502, pp.53-62 (1994).
no DOI — not checked7) K. Kobayashi and J. Yoshikura, “Case study on LCC of concrete structures considering probability distributions of deterioration and re-deterioration rates”, Journal of the Society of Materials Science, Japan, Vol.67, No.8, pp.773-780 (2018).
no DOI — not checked8) Japan concrete institute, “Rehabilitation study committee's report of the concrete structure” (1998).
no DOI — not checked9) M. Stern and A. L. Geary, “Electrochemical Polarization”, Journal of the Electrochemical Society, Vol.104, No.1, 56-63 (1957).
no DOI — not checked10) K. Kobayashi and T. Miyagawa, “Study on estimation of corrosion rate of reinforcing concrete by measuring polarization resistance”, Journal of JSCE, Vol.50, No.669, pp.173-186 (2001).
no DOI — not checked11) T. Kanemitsu, “An experimental evaluation of the K constant when applying polarization resistance method to estimate corrosion rate after crack initiation and repairing of concrete”, Proceedings of the Concrete Structure Scenarios JSMS, Vol.18, pp.541-546 (2018).
no DOI — not checked12) H. Yoshida, Y. Horiie and M. Yokota, “Study on effects of heterogeneity on current propagation of reinforced concrete”, Journal of structural engineering. A, JSCE, Vol.62A, pp.12-22 (2016).
no DOI — not checked13) C. Okuma, H. Iwase, S. Okazaki and H. Yoshida, “Effect of steel bar heterogeneity on polarization resistance measured by non-destructive test method”, Proceedings of the Concrete Structure Scenarios JSMS, Vol.18, pp.149-154 (2018).
no DOI — not checked14) Japan concrete institute, “JCI standards 1977-2002”, pp.91-94 (2004).
no DOI — not checked15) Japan Society of Civil Engineers, “Standard specifications for concrete structures-2017, Design” JSCE Guidelines for Concrete (2017).
no DOI — not checked16) Japan Society of Civil Engineers, “Standard specifications for concrete structures-2012 revision document, Design about chloride attack checking” JSCE Guidelines for Concrete (2012).
no DOI — not checked17) K. Yokozeki, K. Motohashi, K. Okada and T. Tsutsumi, “A rational model to predict the service life of RC structures in marine environment”, Forth CANMET/ACI International Conference on Durability of Concrete (1997).
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