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1.


    Chernyadiev, I. N. (аспирант).
    (4-dimethylaminophenyl)dichalcogenides and their derivatives as inhibitors of corrosion of mild steel St3 in acidic solutions / I. N. Chernyadiev, A. B. Shein // Kinetics of electrode processes: 8th International Frumkin Symposium: abstracts. - Moscow, 2005. - P. 262
Рубрики: Химия


Доп.точки доступа:
Shein, A. B.

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2.


    Shein, A. B.
    Adsorption and inhibitive action of sulphonium,selenonium and telluronium salts on iron in acids / A. B. Shein, V. I. Kichigin // 9th European Symposium on Corrosion Inhibitors: Proceedings. - Ferrara (Italy), 2000. - Vol. 2. - С. 811-819


Доп.точки доступа:
Kichigin, V. I.

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3.


    Shein, A. B.
    An Electrochemical Impedance Spectroscopy Study of Inhibition Effect of SONKOR Composition on Hydrogen Sulfide Corrosion of Carbon Steel / A. B. Shein, A. V. Melnikova, V. I. Kichigin // Protection of Metals and Physical Chemistry of Surfaces. - 2019. - Vol. 55, № 6. - P. 1287-1293


Доп.точки доступа:
Melnikova, A. V.; Kichigin, V. I.

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4.


   
    Corrosion and electrochemical behavior of NI-P coating IN 0.5 M H SO / N. E. Skryabina // Protection of Metals and Physical Chemistry of Surfaces. - 2002. - Vol. 38, № 4. - P. 370–376


Доп.точки доступа:
Skryabina, N. E.

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5.


    Rakityanskaya, I. L.
    Corrosion and electrochemical behaviour of molybdenum and titanium silicides in different aggressive media / I. L. Rakityanskaya, O. U. Patokina // Electrochemical Technologies and Materials for 21 century: 9th International Frumkin Symposium: abstracts. - Moscow, 2010. - P. 181


Доп.точки доступа:
Patokina, O. U.

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6.


    Botin, A. V.
    Corrosion and Mechanical Testing of Steel Wires Protected by Films of Modified Solid Oil / A. Botin, N. Medvedeva, N. Lisovenko // Scientific Research of the Sco Countries: Synergy and Integration: International Conference, 27 Оctober. - Beijing, China, 2021. - P. 107-114

Перейти: http://naukarus.ru/public_html/wp-content/uploads/2021/Scientific%20research%20of%20the%20SCO%20countries%20-%20October%2027%20-%20Part%201.pdf

Доп.точки доступа:
Medvedeva, N.; Lisovenko, N.

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7.


   
    Corrosion inhibition of mild steel by triazole and thiadiazole derivatives in 5 M hydrochloric acid medium / M. D. Plotnikova [и др.] // International Journal of Corrosion and Scale Inhibition. - 2021. - Vol. 10, № 3. - P. 1336-1354

Перейти: https://www.elibrary.ru/item.asp?id=46573713

Доп.точки доступа:
Plotnikova, M. D.; Solovyev, A. D.; Shein, A. B.; Vasyanin, A. N.; Sofronov, A. S. (студент)

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8.


    Kameneva, A.
    Corrosion, Wear, and Friction Behavior of a Number of Multilayer Two-, Three-and Multicomponent Nitride Coatings on Different Substrates, Depending on the Phaseand Elemental Composition Gradient / A. Kameneva, V. I. Kichigin // Applied Surface Science. - 2019. - Vol. 489. - P. 165-174


Доп.точки доступа:
Kichigin, V. I.

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9.


   
    Corrosion-Electrochemical Behavior of Ni-P Coatings in Deaerated Acidic Sulfate Solutions / V. I. Kichigin [и др.] // Protection of Metals and Physical Chemistry of Surfaces . - 2014. - Т. 50, № 7. - С. 875-882


Доп.точки доступа:
Kichigin, V. I.; Medvedeva, N. A.; Petukhov, I. V.; Subakova, I. R.

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10.


    Shein, A. B.
    Cutting Fluids for the Glass Container Industry: Development, Physicochemical and Anti-Corrosion Properties / A. B. Shein, E. A. Salomasova // International Journal of Corrosion and Scale Inhibition. - 2023. - Vol. 12, № 3. - P. 867-877

Перейти: https://www.elibrary.ru/item.asp?id=54603377

Доп.точки доступа:
Salomasova, E. A.

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11.


    Kameneva, A.
    Data on the Effect of Structure, Elementaland Phase Composition Gradient of Nitride Multilayer Coatings on Corrosion Protection of Different Substrates in 3% NaCland 5% NaOH solutions / A. Kameneva, V. I. Kichigin, N. I. Lobov, N. Kameneva // Data in Brief. - 2019. - Vol. 27. - P. 104796


Доп.точки доступа:
Kichigin, V. I.; Lobov, N. I.; Kameneva, N.

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12.


    Kameneva, A.
    Effect of Structure, Phase, and Elemental Composition of Aln, CrALN, and ZrALN Coatings on their Electrochemical Behavior in 3% NaCl Solution / A. Kameneva, N. Bublik, V. I. Kichigin // Materials and Corrosion - Werkstoffe und Korrosion. - 2022. - Vol. 73, № 8. - P. 1308-1317

Перейти: https://onlinelibrary.wiley.com/doi/full/10.1002/maco.202213073

Доп.точки доступа:
Bublik, N.; Kichigin, V. I.

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13.
544.6
B 41


    Beloglazov, S. M.
    Electrochemical study of action of organic additives on microbiological (SRB-induced) corrosion of steel in aqueous salt media / S. M. Beloglazov, G. S. Beloglazov, A. A. Myamina // Microbial corrosion: EFC Publication. - London, 2000. - № 29. - С. 251-259
УДК
ББК 24.57
Рубрики: Химия
   Электрохимия



Доп.точки доступа:
Beloglazov, G. S.; Myamina, A. A.

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14.
620.193
E 81


   
    Estimation of Inhibitor Efficiency against hudrogen Sulfide and Carbonical Acid Corrosion of Carbon Steel by Impedance Spetroskopy Method / V. I. Vigdorovich [и др.] // ECS Transactions. - 2007. - Vol. 6, Issue 24. - P. 67-72
УДК
ББК 34.66
Рубрики: Инженерное дело. Техника в целом
   Дефекты материалов и их выявление (контроль). Химические и физико-химические воздействия. Коррозия. Эрозия

Кл.слова (ненормированные):
carbon steel -- hydrogen sulfide -- protective effect -- corrosion resistance


Доп.точки доступа:
Vigdorovich, V. I.; Tsygankova, L. E.; Siniutina, S.; Kichigin, V. I.

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15.
620.193
E 81


   
    Estimation of protective efficiency of oil-based compositions containing zinc and graphite powders against steel atmospheric corrosion / L. E. Tsygankova [и др.] // ECS Transactions. - 2008. - Vol. 11, Issue 18. - P. 11-22
УДК
ББК 34.66
Рубрики: Инженерное дело. Техника в целом
   Дефекты материалов и их выявление (контроль). Химические и физико-химические воздействия. Коррозия. Эрозия

Кл.слова (ненормированные):
atmospheric composition -- atmospheric corrosion -- blood vessel prostheses -- carbon steel -- chemical analysis -- corrosion -- dust -- electrochemical corrosion -- electrochemical impedance spectroscopy -- electrochemical properties -- electrolysis -- graphite -- spectroscopic analysis
Аннотация: Zinc-containing oil-based compositions containing 75 wt. % zinc powder protect carbon steel in the natural conditions of urban atmosphere for a year with the protective efficiency equal to 96%. More expedient binding is waste motor oil. The insertion of 4 wt.% graphite dust allows to decrease a content of Zn powder in the composition to 60 wt.% without essential alteration of the protective efficiency. The corrosion potential of the steel electrode covered with the oil composition containing 75 wt.% Zn powder or 60 wt.% Zn powder and 4 wt.% graphite dust in the 3% NaCl solution is near Zn electrode potential. The polarization curves are close to ones of metal zinc. The properties of the above oil compositions were studied by the electrochemical impedance spectroscopy method too. The values of the equivalent scheme parameters satisfactorily correlate with data of the gravimetrical corrosion tests and the results of the polarization measurements and allow to explain the peculiarities of the zinc-containing oil compositions and an influence of their modification with the graphite powder. © Electrochemical Society.


Доп.точки доступа:
Tsygankova, L. E.; Vigdorovich, V. I.; Kim, Y.; Kichigin, V. I.

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16.


   
    Experimental and Theoretical Investigation of (E)-5-{[4-(Dimethylamino)Benzylidene]Amino}-1,3,4-Thiadiazole-2(3H)-Thione (Datt) as an Acid Corrosion Inhibitor of Mild Steel / M. D. Plotnikov [и др.] // International Journal of Corrosion and Scale Inhibition. - 2023. - Vol. 12, № 4. - P. 1365-1391

Перейти: https://elibrary.ru/item.asp?id=60234118

Доп.точки доступа:
Plotnikov, M. D.; Shein, A. B.; Scherban, M. G.; Vasyanin, A. N.; Rubtsov, A. E.

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17.


   
    Influence of a Water-Miscible Surfactant-Based Cutting Fluid on the Corrosion Of R6m5 Steel in a Neutral Medium / A. S. Kolokolnikova, M. P. Krasnovskikh, D. A. Ponomarev, M. G. Shcherban’ // ChemChemTech. - 2022. - Vol. 65, № 4. - С. 39-46

Перейти: https://www.elibrary.ru/item.asp?id=48175598

Доп.точки доступа:
Kolokolnikova, A. S.; Krasnovskikh, M. P.; Ponomarev, D. A.; Shcherban’, M. G.

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18.
620.193
J 10


   
    Inhibition of carbon steel corrosion in media with H2S studied by impedance spectroscopy method / L. E. Tsygankova [и др.] // Surface and Interface Analysis. - 2008. - Vol. 40, Issue 3-4. - С. 303-306
УДК
ББК 34.66
Рубрики: Инженерное дело. Техника в целом
   Дефекты материалов и их выявление (контроль). Химические и физико-химические воздействия. Коррозия. Эрозия

Кл.слова (ненормированные):
carbon steel -- electrochemical impedance spectroscopy -- equivalent circuits -- hydrogen sulfide -- organic solvents -- carbon steel corrosion -- protective effect -- corrosion resistance
Аннотация: Investigations of carbon steel corrosion were conducted in the model stratum water saturated with hydrogen sulfide. Inhibitive properties of AMDORIC-6, that is, mixture of 10% aminoparafine C12-C18 and 10% imidazoline dissolved in specific mixture of organic solvents, EM-10 (imino-bis-[(ethyl-2)-(C-alkyl of tall oil acids)-(1,3-diazocyclopenten-2)]) and EM-11 (1-(3,6-diazo-8-amine)-(C-alkyl of coco oil acids)-1,3-diazocyclopenten- 2) have been studied by the electrochemical impedance spectroscopy (EIS) and for comparison by the weight loss and polarization measurements. The inhibitor concentration was equal to 25-200mg/l. EIS measurements (60 kHz-10 mHz) were carried out at the corrosion potential (Ecor), anodic and cathodic polarization. The suggested equivalent circuit consists of four parallel branches and satisfactorily fits the experimental data obtained in the solutions with and without the inhibitors at Ecor. The observed values of double layer capacity Cdl < 1 ?F/cm2 testify that multilayer adsorption of the inhibitors takes place on the electrode surface. It causes a retardation of the anodic reaction and slightly influences the cathodic one. Inhibitor efficiencies calculated on basis of impedance data qualitatively correlate with those obtained from the weight loss tests and the polarization measurements.


Доп.точки доступа:
Tsygankova, L. E.; Vigdorovich, V. I.; Kichigin, V. I.; Kuznetsova, E.

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19.
544
J 10


   
    Interaction of hydrogen with amorphous, nanostructural and fine crystalline functional materials / N. E. Skryabina [и др.] // Journal of Alloys and Compaunds. - 2009. - Vol. 483, Issue 1-2. - С. 507-509
УДК
ББК 24.5
Рубрики: Химия
   Физическая химия

Кл.слова (ненормированные):
alloys -- amorphous -- nanocrystalline -- phase transitions -- microhardness -- corrosion
Аннотация: The influence of hydrogen on the main characteristics of functional materials was investigated. Changes in the mechanical parameters were interpreted in terms of microstructure phase transitions.


Доп.точки доступа:
Skryabina, N. E.; Fruchart, D.; Cagnen, L.; Loodyanov, v. I.; Shelyakov, A. V.

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20.


    Melnikova, A. V.
    Investigation of industrial compositions SONKOR as corrosion inhibitors of mild steel in neutral media containing hydrogen sulfide / A. V. Melnikova, F. P. Figilyantov , A. B. Shein // Chimica techno acta. - 2015. - Vol. 2, № 3. - P. 247-256


Доп.точки доступа:
Figilyantov , F. P.; Shein, A. B.

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