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Influence of calcium cations on the corrosion behavior of hot-dip galvanized steel in model concrete pore solutions

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1. Kuklík, V., Kudláček J., Žárové zinkování, 1st ed.; AČSZ, Praha 2014.Search in Google Scholar

2. Marder, A. R., The metallurgy of zinc-coated steel, Progress in Materials Science2000, 45 (3), 191-271.10.1016/S0079-6425(98)00006-1Search in Google Scholar

3. Slater, W. A., Richard, F. E., Scofield, G. G., Tests of bond resistance between concrete and steel, Technological Papers of the Bureau of Standards, No. 173, Washington Government Printing office, Washington, 1920.10.6028/nbst.5377Search in Google Scholar

4. Pokorný P., Tej P., Kouřil M., Evaluation of the impact of corrosion of hot-dip galvanized reinforcement on bond strength with concrete – A review, Construction and Building Materials2017, 132, 271-289.10.1016/j.conbuildmat.2016.11.096Search in Google Scholar

5. Pokorný P., Vliv koroze zinkované oceli na soudržnost s betonem, Koroze a ochrana materiálu2012, 56 (4), 119-135.10.2478/v10227-011-0020-9Search in Google Scholar

6. Kouřil M., Krtička Š., Novák P.; Soudržnost zinkované oceli s betonem, Koroze a ochrana materiálu2007, 51 (4), 80-83.Search in Google Scholar

7. Yeomans S.R. Galvanized steel reinforcement in concrete, 2st ed; Elsevier: Canberra, 2004.10.1016/B978-008044511-3/50016-5Search in Google Scholar

8. Pokorný, P., Kouřil, M., Hrdlička, L., Simon P., Faktory ovlivňující soudržnost povlakované výztuže s betonem, Tribotechnika2014, 2, 80-82.Search in Google Scholar

9. Andrade, C., Holst, J. D., Nürnberger, U., Whiteley, J. D., Woodman, N., Protection System for Reinforcement, CEB-Bulletin D’Information, Lousanne 1992.Search in Google Scholar

10. Belaïd, F., Arliguie, G., François, R., Porous structure of ITZ around galvanized and ordinary steel reinforced, Cement and Concrete Research2001, 31, 1561-1566.10.1016/S0008-8846(01)00597-XSearch in Google Scholar

11. Rovnaníková, P., Bayer, P., Nové poznatky ve vztahu zinku a cementového tmelu, 8. Konference žárového zinkování, Všemina, sborník 1-6.Search in Google Scholar

12. Rovnaníková, P., Bayer, P., Microstructure of hardened portland cement paste in galvanized reinforcement surroundings, 9. Konference žárového zinkování 2003, sborník, 57-62.Search in Google Scholar

13. Pokorný P., Pernicová R., Vokáč M., Sedlářová I., Kouřil M., Vliv vodíku a Ca[Zn(OH)3]2·2H2O na změny pórovitosti cementového tmelu v okolí žárově zinkované výztuže betonu, Koroze a ochrana materiálu2017, 61 (2), 67-79.10.1515/kom-2017-0012Search in Google Scholar

14. Rovnaníková, P., Bayer, P., Study of the interficial transition zone between cement paste and zinc coated steel reinforcement, Corrosion of Underground Structures, 2003, 65-70.Search in Google Scholar

15. Rovnaníková, P., Bayer, P., Vlastnosti cementového tmelu v betonu na styku s pozinkovanou výztuží, konference: 11. Betonářské dny2004, 542-547.Search in Google Scholar

16. Macias, A., Andrade, C., Corrosion of galvanized steel in diluate Ca(OH)2 solutions (pH 11-12,6), British Corrosion Journal1987, 22 (3), 162-171.10.1179/000705987798271505Search in Google Scholar

17. Macías A., Andrade C.: Corrosion rate of galvanized steel immersed in saturated solutions of Ca(OH)2 in the pH range 12–13.8 British Corrosion Journal1983, 18, 82-87.10.1179/bcj.1983.18.2.82Search in Google Scholar

18. Blanco M. T., Macías A., Andrade C.: SEM study of the corrosion products of galvanized reinforcements immer- sed in solutions in the pH range 12.6–13.6 British Corrosion Journal1984, 19, 41-48.10.1179/000705984798273524Search in Google Scholar

19. Macías A., Andrade C.; Corrosion of galvanized steel reinforcements in alkaline solutions. Part 1: Electrochemical results, British Corrosion Journal1987, 22, 113-118.10.1179/000705987798271631Search in Google Scholar

20. Macías A., Andrade C.: Corrosion of galvanized steel reinforcements in alkaline solutions. Part 2: SEM study and identification of corrosion products British Corrosion Journal1987, 22, 119-129.10.1179/000705987798271749Search in Google Scholar

21. Macias, A., Andrade, C., Stability of the calcium hydro-xyzincate protective layer developer on galvanized reinforcements after a further increase of the pH value, Materials des Construcción1986, 36 (204), 19-28.10.3989/mc.1986.v36.i204.882Search in Google Scholar

22. Macias, A., Andrade, C., Galvanized steel behaviour in Ca(OH)2 saturated solution containing SO4 ions, Cement and Concrete Research1987, 17(2), 307-316.10.1016/0008-8846(87)90113-XSearch in Google Scholar

23. Macias, A., Comparison of different electrochemical techniques for corrosion-rate determination of zinc-coated reinforcements in simulated concrete pore solutions, Materials and Structures1991, 24, 456-465.10.1007/BF02472018Search in Google Scholar

24. Andrade, C., Macias, A., Galvanized reinforcement in concrete, Surface Coatings -2 (Edited by Wilson, A. D., Nicholson, J. W., Prosser, H. J.), 1988, Elsevier Applied Science Publishers Ltd., 137-182.10.1007/978-94-009-1351-6_5Search in Google Scholar

25. Bowsher, B., Corrosion protection of reinforcing steels, Technical report fib-Bulletin 49, IFSC, Lousanne 2009.Search in Google Scholar

26. Yeomans, S. R., Galvanized steel reinforcement-A prespect view, konference: Real World Concrete, ACI International Conference 1995, 57-70.Search in Google Scholar

27. Yeomans, S. R., Galvanized reinforcing steel, Corrosion Managment2002, 3-6.Search in Google Scholar

28. Macias, A., Andrade, C., Galvanized steel behaviour in Ca(OH)2 saturated solution containing SO4 ions, Cement and Concrete Research1987, 17(2), 307-316.10.1016/0008-8846(87)90113-XSearch in Google Scholar

29. Ramírez, E., González, J. A., Bautista, A., The protective efficiency of galvanizing against corrosion of steel in mortar and in Ca(OH)2 saturated solutions containing chlorides, Cement and Concrete Research1996, 26 (10), 1525-1536.10.1016/0008-8846(96)00150-0Search in Google Scholar

30. Ghost, R., Sign, D. D. N., Kinetics, mechanism and characterisation of pasive film formed on hot dip galvanized coating exposed in simulated concrete pore solution, Surface and Coating Technology2007, 201 (16-17), 7346-7359.10.1016/j.surfcoat.2007.01.048Search in Google Scholar

31. Vera, R., Venegas, R., Carvajal, A. M., Corvo, F., Pérez, T., Performance of carbon steel and galvanized steel in reinforced concrete structures after accelerated carbonation, International Journal of Electrochemical Science2012, 7, 10722-10734.10.1016/S1452-3981(23)16898-2Search in Google Scholar

32. Farina, S. B., Duffó, G. S., Corrosion of zinc in simulated carbonated cocrete pore solutions, Electrochimica Acta2007, 52, 5131-5139.10.1016/j.electacta.2007.01.014Search in Google Scholar

33. Zhang, X., Corrosion and electrochemistry of zinc, Plenum Press, New York 1996.10.1007/978-1-4757-9877-7Search in Google Scholar

34. Bautista, A., Gonzales, J.A., Analysis of the protective efficiency of galvanizing agains corrosion of reinforcements embedded in chloride contaminated concrete, Cement and Concrete Research1996, 26 (2), 214-223.10.1016/0008-8846(95)00215-4Search in Google Scholar

35. Hime, W.G., Machin, M., Performance variances of galvanized steel in mortar and concrete, Corrosion1993, 49 (10), 858-860.10.5006/1.3316010Search in Google Scholar

36. Vorkapic, J. Ž., Dražič, D. M., Despic, A. R., Corrosion of pure and amalgamated zinc in concentrated alkali hydroxide solutions, Journal of Electrochemical Society1974, 121 (11), 1385-1392.10.1149/1.2401695Search in Google Scholar

37. Liu, M. B., Faulds, B. R., Cook, G. M., Yao, N. P., Conductivity of KOH electrolyte supersaturated with zincate, Electrochemical Science and Technology1981, 128 (10), 2049-2052.10.1149/1.2127187Search in Google Scholar

38. Keily, T., Sinclair, T. J., Effect of additives on the corrosion of zinc in KOH solution, Journal of Power Sources1981, 6, 47-62.10.1016/0378-7753(81)80005-5Search in Google Scholar

39. Wakkad, S. E. S. El., Shams El Din, A. M., Kotb, H., The anodick oxidation of zinc and zinc-tin alloys at very low current density, Electrochemical Science and Technology1958, 1, 47-51.10.1149/1.2428746Search in Google Scholar

40. Shams, El D., Abd El Wahab, F. M., Abd El Haleem, S. M., Effect of electrolyte concentration on the passivation of Zn in alkaline solutions, Werkstoffe und Korrosion1973, 5, 389-394.10.1002/maco.19730240508Search in Google Scholar

41. Grauer, R., Kaesche, H., Elektronenmikroskopische und elektrochemische Untersuchungen über die Passivierung von zink in 0,1 M natronlauge, Corrosion Science1972, 12, 617-624.10.1016/S0010-938X(72)80061-1Search in Google Scholar

42. Baugh, L. M., Higginson, A., Passivation of zinc in concentrated alkaline solution-I. Characteristics of active dissolution prior to passivation, Electrochimica Acta1985, 30 (9), 1163-1172.10.1016/0013-4686(95)80008-5Search in Google Scholar

43. Dirkse, T. P., Timmer, R., The corrosion of zinc in KOH solutions, Electrochemical Science and Technology1969, 116 (2), 162-165.10.1149/1.2411786Search in Google Scholar

44. Liu, M. B., Cook, G. M., Yao, N. P., Passivation of zinc anodes in KOH electrolytes, Electrochemical Science and Technology1981, 128 (8), 1663-1668.10.1149/1.2127707Search in Google Scholar

45. Hampson, N. A., Tarbox, M. J., Lilley J. T., Farr, J. P. G., The passivation of vertical zinc anodes in potassium hydroxide solution, Electrochemical Technology1964, 2 (11-12), 309-313.Search in Google Scholar

46. Abd El Haleem, S. M., Initiation and inhibition of pitting corrosion in alkali solutions under potentiostatic polarization conditions, Werkstoffe und Korrosion1979, 30, 631-637.10.1002/maco.19790300905Search in Google Scholar

47. Mouanga, M., Berçot, P., Rauch, J. Y., Comparison of corrosion behaviour of zinc in NaCl and in NaOH solutions, Part I: Corrosionlayer characterization, Corrosion Science2010, 52, 3984-3992.10.1016/j.corsci.2010.08.003Search in Google Scholar

48. Duval, R., Arliguie, G. M., Passivation du zinc dans l’hydroxyde de calcium, eu égard au comportement de l´acier galvanisé dans le béton, Mémories Scientifiques Rev. Métallurg1974, 71 (11), 719-727.Search in Google Scholar

49. Kaesche, H., Zum Elektrodenverhalten des Zinks und des Eisens in Calciumhydroxidlösung und in Mörtel, Werkstoffe und Korrosion1969, 20 (2), 119-12410.1002/maco.19690200207Search in Google Scholar

50. Menzel, K., Zur Korrosion von verzinktem Stahl in Kontakt mit Beton – IWB (Mitteilungen), Universität Stuttgart, 1992.Search in Google Scholar

51. Wienerová, K., Kouřil, M., Stoulil, J., Koroze a ochrana zinkované oceli v prostředí betonu, Koroze a ochrana materiálu2010, 54 (4), 148-154.Search in Google Scholar

52. Zhenga H., Daib J-G., Poonb Ch.S., Lia W., Influence of calcium ion in concrete pore solution on the passivation of galvanized steel bars, Cement and Concrete Research2018, 108, 46-58.10.1016/j.cemconres.2018.03.001Search in Google Scholar

53. Ziegler, F., Johnson, C. A., The solubility of calcium zincate (CaZn2(OH)6·2H2O), Cement and Concrete Research2001, 31, 1327-1332.10.1016/S0008-8846(01)00557-9Search in Google Scholar

54. Kučera, V., Kouřil, M., Pokorný P., Vliv transportu vody na kinetiku koroze žárově zinkované oceli v betonu, Semestrální práce, VŠCHT Praha, Praha 2014.Search in Google Scholar

55. Santos, P., Influencia de la estructura metalográfica y del tipo de cemento en la corrosion de armaduras galvanizadas, 1986, Universidad Autónoma de Madrid.Search in Google Scholar

56. Pokorný P., Vliv externí vrstvy intermetalických fází Fe–Zn na korozní chování žárově zinkované výztuže v betonu, Koroze a ochrana materiálu2016, 60 (3), 91-100.10.1515/kom-2016-0015Search in Google Scholar

57. Pokorný P., Dobiáš D., Vokáč M., Kouřil M., Kubásek J., Zhodnocení vlivu koroze žárově zinkované oceli na soudržnost hladkých prutů s betonem třídy „NSC”, Koroze a ochrana materiálu2015, 59 (2), 53-65.10.1515/kom-2015-0014Search in Google Scholar

58. Gallego, A., Comparison between concrete-black steel and concrete-galvanized steel bond via the pull-out test supplied with acoustic emission, EWGAE 2004, poster 3, 761-767.Search in Google Scholar

59. Malíková, J., Soudržnost oceli s betonem – Protokol o zkoušce (TZÚS), 060-037722, Brno 2013.Search in Google Scholar

60. Ryant L., Vorel, J., Řepík M., Kotvení pozinkované výztuže, Výzkumná zpráva ze středoškolské odborné činnosti, Stavební škola J. Gočára, Praha, 2009.Search in Google Scholar

61. Kouřil, M., Koroze alternativních kovových materiálů v pórovém roztoku betonu, Disertační práce, VŠCHT Praha, Praha 2004.Search in Google Scholar

62. Kouřil, M., Koroze pozinkované oceli v modelovém pórovém roztoku betonu, 9. Konference žárového zinkování 2003, 23-30.Search in Google Scholar

63. Pokorný P., Předpokládaná účinnost konverzních povlaků proti aktivaci zinkované oceli v modelových pórových roztocích betonu, Koroze a ochrana materiálu2013, 57 (4), 115-126.Search in Google Scholar

64. Ostrá, V., Žárově zinkovaná ocelová výztuž do betonu, 15. Konference žárového zinkování, 2009, 173-179.10.1080/14753630902811383Search in Google Scholar

65. Montemor, M. F., Simões, A. M., Ferreira, M. G. S., Composition and behaviour of cerium film on galvanized steel, Progress in Organic Coatings2001, 43, 274-281.10.1016/S0300-9440(01)00209-0Search in Google Scholar

66. Lu, J., Wu, H., Kong, G., Che, Ch., Xu, Q., Growth and corrosion behaviour of rare earth film on hot-dip galvanized steel, Transaction of Nonferrous Metals Society of China2006, 16, 1397-1401.10.1016/S1003-6326(07)60027-2Search in Google Scholar

67. Arenas, M. A, Damborenea, J. J., Surface characterisation of cerium layers on galvanized steel, Surface and Coating Technology2004, 187, 320-325.10.1016/j.surfcoat.2004.02.033Search in Google Scholar

68. Arenas, M. A., Casado, C., Nobel-Pujol, V., Damborenea, J., Influence of the conversion coating on the corrosion of galvanized steel, Cement and Concrete Composites2006, 28, 267-275.10.1016/j.cemconcomp.2006.01.010Search in Google Scholar

69. Sanchez, M., Alonso, M. C., Cecilio, P., Montemor, M. F., Andrade, C., Electrochemical and analytical assessment of galvanized steel reinforcement pre-treated with Ce and La salts under alkaline media, Cement and Concrete Composites2006, 28, 256-266.10.1016/j.cemconcomp.2006.01.004Search in Google Scholar

70. Mirghasem, H.,Habib A-S., Heshmat, A. Y. G., Corrosion protection of electrogalvanized steel by green conversion coatings, Journal of rare Earths2007, 25, 537-543.10.1016/S1002-0721(07)60558-4Search in Google Scholar

71. Montemor, M.F., Cabral, A.M., Zheludkevich, M.L., Ferreira, M.G.S., The corrosion resistance of hot dip galvanized steel pretreated with Bis-functional silanes modified with microsilica, Surface & Coatings Technology2006, 200, 2875-2885.10.1016/j.surfcoat.2004.11.012Search in Google Scholar

72. Figueira, R. B., Silva, C. J. R., Pereira, E. V., Hybrid solgel coatings for corrosion protection on hot-dip galvanized steel in alkaline medium, Surface and Coating Technology2015, 265, 191-204.10.1016/j.surfcoat.2015.01.034Search in Google Scholar

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