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1、英語專業(yè)論文答辯稿英語專業(yè)論文答辯稿 Title of the article Initial stages of corrosion pits on AISI 1040 steel in sulfide solution analyzed by temporal series micrographs coupled with electrochemical techniques Available online 10 May 2013 Corrosion Science 76 (2013) 2734 Information of the author Alexsandro Mendes Zi

2、mer, Matheus A.S. De Carra, Emerson Costa Rios, Ernesto Chaves Pereira, Lucia Helena Mascaro* Laboratrio Interdisciplinar de Eletroqumica e Ceramica (LIEC), Universidade Federal de So Carlos (UFSCar), Chemistry Dept. Research objective and significance During the steel pipeline corrosion,the most ag

3、gressive corrosion form on metal surfaces is the pit corrosion. This corrosion occurs in specific regions such as the grain boundary, defects or MnS inclusions. Few papers use in situ techniques to study the pit formation, but many papers use an electrochemical approach together with ex situ techniq

4、ues to study this corrosion type. The disadvantage of this last approach is the lack of experimental information that preserves the spatial coordinates. Research objective and significance This work presents a study of the initial instants in the pitting corrosion of AISI 1040 steel, analyzed by tem

5、poral series micrographs coupled to an open circuit potential (Eoc) and polarization curves. The pit induction time and the initial pit growth in MnS inclusions was detected in alkaline sulfide solution. Finally, it was possible to create a three-dimensional model of the pit depth evolution on the m

6、etal, using Faradays law and the bullet-shaped geometry. Research status Rybalka et al. , have studied pit corrosion on 20Kh13 steel and have shown that there are specific regions where pit nucleation and evolution take place. The pit nucleation and metastable growth on microelectrodes of aluminum a

7、nd FeAl binary alloys below the pitting potential was studied by Speckert and Burstein. Gonslez-Garca et al. detected these transients in situ by scanning electrochemical microscopy (SECM). Metastable pitting has been imaged for them, for the first time using SECM. Research status Rueter and Heusler

8、 showed that the number of pits increases with polarization and with chloride concentration, but decreased with the increase of pH solution. It was also shown in their work that close to an active pit no other new pits were observed. The radius of the protected area for new pits increases as the con

9、centration of chloride ions decreases and the pH solution increases. In recent papers, our group, using in situ images, demonstrated the usefulness of following color changes on the corroding surface and associated it to sulfide films dissolution and precipitation mechanism. Approaches Temporal seri

10、es micrographs coupled to an open circuit potential (Eoc) and polarization curvesFig. 3. Inclusion analysis of recent polished surface of AISI 1040 steel (a) binarized image to select the defects or inclusions (b). Dotted circle highlight some defects or inclusions on steel surface.defects or inclus

11、ions Fig. 4. In situ optical microscopy observation of AISI 1040 steel during the Eoc, in 3110-3moldm-3 of HS species in phosphate buffer (pH 7.9) immediately after the immersion in solution (a) and in the exposition times: 800 (b), 1080 (c), 1400 (d), 2000 (e), and 2500 s (f). Dotted square indicat

12、es one defect or inclusion on steel surface and his evolution along with the grain-boundary corrosion (insets).Formation of FeS filmAverage size:62minduction perioda typical behavior for pit corrosion17Fig. 5. Eoc behavior of AISI 1040 steelin 3110-3moldm-3 of HS- species in phosphate buffer (pH 7.9

13、) (a).Total pit area, and total pit number as function of the time during Eoc measurement (b). Evs. Ag/AgCl/KCl.The pit area starts to increase continuously until 1400 s. Approximately 17 pits appear. This value is close to the number of inclusions.Cathodic haloFig. 6. In situ optical microscopy obs

14、ervation of AISI 1040 steel during the polarization curve, in 3110-3moldm-3 of HS- species in phosphate buffer (pH 7.9). Dotted square focalize just one stable pit with the presence of a cathodic halo more visible in sulfide film (inset).only the pit areas increaseboth the pit number and pit area in

15、creasesFig. 7. Polarization curve of AISI 1040 steel in 3110-3moldm-3 of HS- species in phosphate buffer (pH 7.9) (a). Total pit area and total pit number as function ofpotential applied during polarization curve (b). E vs. Ag/AgCl/KCl.Fig. 8. In situ optical microscopy observation of AISI 1040 stee

16、l during the polarization curve at potential of -556 mV showing one pit (a) and in -526 mV showing new others one (b). Polarization curve showing two distinct regions, A and B, where in the first one the pit 1 were analyzing before and after the new pit events marked how 2, 3, 4, and 5 occurring (c)

17、. E vs. Ag/AgCl/KCl.Individual rate of area changes of five pits in different potential regions during thepolarization curve of Fig. 6. E vs. Ag/AgCl/KCl.Approximately the same rates of area changes of pit.This means that they grow at the same rate, and therefore the changes in pit growth rates have

18、 the same value for all new pits investigated.-521 mVEoc-625 mV-585 mV-550 mV-535mVbullet-shaped geometrymaximum depth :25 mConclusion The initial stages of corrosion pitting, such as the induction time and growth, were detected and quantified. The Eoc measurement presents an accentuated decrease to

19、wards more negative values, while simultaneously, the quantity of pits and its area increases. During the polarization curves measurements, two distinct regions were observed. During the first one, a total pit area change is observed without any increase in their number. In the second one, news pits appear in r

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