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Pitting potential modelling of EN 1.4404 stainless steelJIMENEZ-COME, M. J; TURIAS, I; MOSCOSO, J. A et al.Materials and corrosion (1995). 2014, Vol 65, Num 9, pp 881-890, issn 0947-5117, 10 p.Article

Effect of chlorides on the stability of the passive state of low Mn steelsSZUMMER, A; LUBLINSKA, K; JANIK-CZACHOR, M et al.Werkstoffe und Korrosion. 1990, Vol 41, Num 11, pp 618-622, issn 0043-2822, 5 p.Article

Limitations on use of pitting potential measurementsSTREICHER, M. A.Materials performance. 1997, Vol 36, Num 1, pp 65-66, issn 0094-1492Article

Zu einem Phänomen der Lochkorrosionsbegrenzung bei hochlegierten Sonderedelstählen und NiCrMo-Legierungen in Chloridlösungen = On a phenomenon of the limitation of pitting corrosion at high alloyed special stainless steels and NiCrMo-alloys in chloride solutionsWERNER, H; VOIGT, C; RIEDEL, G et al.Werkstoffe und Korrosion. 1996, Vol 47, Num 7, pp 383-386, issn 0043-2822Article

The use of experimental design method for the investigation of pitting potential of aluminumTOSUN, A; ERGUN, M; BALBASI, M et al.Materials and corrosion (1995). 2007, Vol 58, Num 7, pp 502-505, issn 0947-5117, 4 p.Article

Computer simulation of pitting potential measurementsLAYCOCK, N. J; NOH, J. S; WHITE, S. P et al.Corrosion science. 2005, Vol 47, Num 12, pp 3140-3177, issn 0010-938X, 38 p.Article

Dependence of the pitting potential of Al alloys on solubility of alloying element oxidesINTURI, R. B; SZKLARSKA-SMIALOWSKA, Z.Corrosion science. 1993, Vol 34, Num 4, pp 705-710, issn 0010-938XArticle

New aspects of the galvanokinetic polarization technique for pitting corrosion studiesLE XUAN, Q; KRAIEM, J; VU QUANG, K et al.Corrosion science. 1993, Vol 34, Num 10, pp 1715-1721, issn 0010-938XArticle

Quantitative measurements of the degree of exfoliation on aluminium alloysHABASHI, M; BONTE, E; GALLAND, J et al.Corrosion science. 1993, Vol 35, Num 1-4, pp 169-183, issn 0010-938XConference Paper

Influence de la teneur en manganèse sur les caractéristiques de corrosion des alliages Al-MnSERI, O; TAGASHIRA, K.Keikinzoku. 1986, Vol 36, Num 12, pp 806-812, issn 0451-5994Article

Electrochemical and XPS studies and the potential scan rate dependent pitting corrosion behavior of Zircaloy-2 in 5% NaCl solutionSATPATI, A. K; PHADNIS, S. V; SUNDARESAN, R. I et al.Corrosion science. 2005, Vol 47, Num 6, pp 1445-1458, issn 0010-938X, 14 p.Article

Electrochemical studies on the stability and corrosion resistance of titanium-based implant materialsAZIZ-KERRZO, Maan; CONROY, Kenneth G; FENELON, Anna M et al.Biomaterials. 2001, Vol 22, Num 12, pp 1531-1539, issn 0142-9612Article

Effect of biomineralized manganese on pitting corrosion of type 304L stainless steelOLESEN, B. H; YURT, N; LEWANDOWSKI, Z et al.Materials and corrosion (1995). 2001, Vol 52, Num 11, pp 827-832, issn 0947-5117Article

Electrochemical characterisation of surface layers of aluminium alloys of the 3000-series in relation with filiform corrosionHUISERT, M. H. M; SHARMAN, J. D. B; VAN ROOIJEN, H. W et al.International symposium on aluminium surface science and technology. 2000, pp 461-466Conference Paper

Elektrochemische Untersuchungen von handelsüblichen Kupferrohren mit verschiedenen Oberflächenzuständen = Electrochemical potential measurements of commercial copper tubes with different surfacesACKFELD, C; VON FRANQUE, O; SIEDLAREK, W et al.Werkstoffe und Korrosion. 1997, Vol 48, Num 9, pp 624-630, issn 0043-2822Article

Korrosionsmonitoring mit elektrochemischen Sensoren unter Einsatz von Evolutionsstrategien = Corrosion monitoring with electrochemical sensors by using evolution-inspired optimization techniquesZOSEL, J; FICHTNER, W; KADEN, H et al.Werkstoffe und Korrosion. 1996, Vol 47, Num 6, pp 299-306, issn 0043-2822Article

The electrochemical behaviour of Fe in acetate solution containing chlorideAZAMBUJA, D. S; MULLER, I. L; FERIS, L. A et al.Corrosion science. 1996, Vol 38, Num 8, pp 1235-1244, issn 0010-938XArticle

Studies on the passivation of aluminium in chromate and molybdate solutionsBRESLIN, C. B; TREACY, G; CARROLL, W. M et al.Corrosion science. 1994, Vol 36, Num 7, pp 1143-1154, issn 0010-938XArticle

Ermittlung charakteristischer Lochkorrosionspotentiale von NiCr20Mo Dental-legierungen mit unterschiedlichem Mo-Gehalt = Determination of characteristic pitting potentials of NiCr20Mo dental alloys as a function of Mo contentGEIS-GERSTORFER, J.Metall (Berlin, West). 1993, Vol 47, Num 7, pp 652-656, issn 0026-0746Article

The influence of tungsten on the pitting of aluminum filmsSHAW, B. A; FRITZ, T. L; DAVIS, G. D et al.Journal of the Electrochemical Society. 1990, Vol 137, Num 4, pp 1317-1318, issn 0013-4651, 2 p.Article

Microstructural characterization and pitting corrosion behavior of UNS S30466 borated stainless steelMORENO, D. A; MOLINA, B; RANNINGER, C et al.Corrosion (Houston, Tex.). 2004, Vol 60, Num 6, pp 573-583, issn 0010-9312, 11 p.Article

Relationship between induction time for pitting and pitting potential for high-purity aluminumWALL, F. D; MARTINEZ, M. A; VANDENAVYLE, J. J et al.Journal of the Electrochemical Society. 2004, Vol 151, Num 6, pp B354-B358, issn 0013-4651Article

Evaluation of pitting corrosion by means of dynamic electrochemical impedance spectroscopyDAROWICKI, K; KRAKOWIAK, S; SLEPSKI, P et al.Electrochimica acta. 2004, Vol 49, Num 17-18, pp 2909-2918, issn 0013-4686, 10 p.Conference Paper

Investigation of pitting potential of carbon steel using experimental design methodERGUN, M; AKCAY, L.British Corrosion Journal. 2002, Vol 37, Num 3, pp 235-238, issn 0007-0599Article

Pitting corrosion growth characteristics of aluminum alloys in the solution containing SO42- ionKURODA, S; TOHMA, K.Keikinzoku. 1998, Vol 48, Num 6, pp 288-293, issn 0451-5994Article

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