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Electroless brassing of historical artefacts Cover

Electroless brassing of historical artefacts

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Open Access
|Apr 2024

References

  1. Sarver, E., et al., Review of Brass Dezincification Corrosion in Potable Water Systems. <em>Corrosion Reviews </em><bold>2010,</bold> <em>28</em> (3-4), 155-196.
  2. Fink, F. W., The Dezincification of Alpha Brass with Special Reference to Arsenic. <em>Transactions of The Electrochemical Society </em><bold>1939,</bold> <em>75</em>, 441-448.
  3. Stillwell, C. W.; Turnipseed, E. S., Mechanism of Dezincification. <em>Industrial and Engineering Chemistry </em><bold>1934,</bold> <em>26</em> (7), 740-743.
  4. Dinnappa, R. K.; Mayanna, S. M., The Dezincification of Brass and its Inhibition in Acidic Chloride and Sulphate Solutions. <em>Corrosion Science </em><bold>1987,</bold> <em>27</em> (4), 349-361.
  5. Chao, S.-J., et al., Dezincification of brass water meters in a long-term study: effects of anions, alkalinity, and residual chlorine. <em>Environmental Science: Water Research &amp; Technology </em><bold>2021,</bold> <em>7</em> (9), 1666-1676.
  6. Choucri, J., et al., Corrosion Behavior of Different Brass Alloys for Drinking Water Distribution Systems. <em>Metals </em><bold>2019,</bold> <em>9</em> (6).
  7. Newman, R. C., et al., Direct Electrochemical Measurement of Dezincification Including the Effect of Alloyed Arsenic. <em>Corrosion Science </em><bold>1988,</bold> <em>28</em> (9), 873-886.
  8. Ravichandran, R., et al., Effect of benzotriazole derivatives on the corrosion and dezincification of brass in neutral chloride solution. <em>Journal of Applied Electrochemistry </em><bold>2004,</bold> <em>34</em>, 1171–1176.
  9. Selvaraj, S., et al., Dezincification of Brass and its Control-An Overview. <em>Corrosion Reviews </em><bold>2003,</bold> <em>21</em> (1), 41-74.
  10. Zhou, P., et al., An in situ kinetic study of brass dezincification and corrosion. <em>Electrochimica Acta </em><bold>2017,</bold> <em>229</em>, 141-154.
  11. Sugawara, H.; Ebiko, H., Dezincification of Brass. <em>Corrosion Science </em><bold>1967,</bold> <em>7</em>, 513-523.
  12. Selucká, A., Grenade launching guns with wheellock – survey and restoring after a fire. In <em>Conference of restorers and conservators </em>Rožnov pod Radhoštěm, Czech Republic, 2019.
  13. Itoh, I.; Hikage, T., Dezincification Mechanism of Brass in Vacuum at High Temperature. <em>Transactions of Japan Institute of Metals </em><bold>1976,</bold> <em>17</em>, 165-169.
  14. Wilk, M., et al., Zinc Evaporation from Brass Scraps in the Atmosphere of Inert Gas. <em>Materials </em><bold>2023,</bold> <em>16</em> (14).
  15. Assaf, F. H., et al., Electroplating of brass from citrate based alloy baths. <em>Indian Journal of Chemical Technology </em><bold>1995,</bold> <em>2</em> (5), 147-152.
  16. de Almeida, M. R. H., et al., Electrodeposition of copper–zinc from an alkaline bath based on EDTA. <em>Surface and Coatings Technology </em><bold>2011,</bold> <em>206</em> (1), 95-102.
  17. de Almeida, M. R. H., et al., Copper–zinc electrodeposition in alkaline-sorbitol medium: Electrochemical studies and structural, morphological and chemical composition characterization. <em>Applied Surface Science </em><bold>2015,</bold> <em>333</em>, 13-22.
  18. de Senna, L. F., et al., Hardness Analysis and Morphological Characterization of Copper-Zinc Alloys Produced in Pyro-phosphate-Based Electrolytes. <em>Materials Research </em><bold>2005,</bold> <em>8</em> (3), 275-279.
  19. Kamel, M. M., et al., Brass Alloy Coatings Electrodeposited from an Environmentally Friendly Alkaline Lactate Bath under Different Operating Conditions. <em>Biointerface Research in Applied Chemistry </em><bold>2022,</bold> <em>13</em> (1).
  20. Rashwan, S. M., Electrodeposition of Zn–Cu coatings from alkaline sulphate bath containing glycine. <em>Transactions of the IMF </em><bold>2013,</bold> <em>85</em> (4), 217-224.
  21. Survila, A., et al., Codeposition of Zinc and Copper in Gluconate-Sulfate Solutions. <em>Journal of The Electrochemical Society </em><bold>2013,</bold> <em>160</em> (10), D428-D433.
  22. URL3 Turning Copper Pennies into “Silver” and “Gold”! <ext-link ext-link-type="uri" xmlns:xlink="http://www.w3.org/1999/xlink" xlink:href="https://www.flinnsci.com/api/library/Download/674479ccda964683ac6201381ffbdb89">https://www.flinnsci.com/api/library/Download/674479ccda964683ac6201381ffbdb89</ext-link> (accessed 19.10.2023).
  23. URL2 Turning copper coins into ‘silver’ and ‘gold’. <ext-link ext-link-type="uri" xmlns:xlink="http://www.w3.org/1999/xlink" xlink:href="https://edu.rsc.org/experiments/turning-copper-coins-into-silver-and-gold/839.article">https://edu.rsc.org/experiments/turning-copper-coins-into-silver-and-gold/839.article</ext-link> (accessed 19.10.2023).
  24. URL1 Cu/Zn- Turning Pennies Into Gold. <ext-link ext-link-type="uri" xmlns:xlink="http://www.w3.org/1999/xlink" xlink:href="https://www.colorado.edu/lab/lecture-demo-manual/x880-cuzn-turning-pennies-gold">https://www.colorado.edu/lab/lecture-demo-manual/x880-cuzn-turning-pennies-gold</ext-link> (accessed 19.10.2023).
  25. Eastman, C. M., et al., Diffusion Coefficients and Phase Equilibria of the Cu-Zn Binary System Studied Using Diffusion Couples. <em>Journal of Phase Equilibria and Diffusion </em><bold>2020,</bold> <em>41</em> (5), 642-653.
  26. Hoxha, A.; Heger, D., The growth of beta phase in the gamma-brass–copper diffusion couple. <em>Materials and Technology </em><bold>2017,</bold> <em>51</em>, 105–110.
  27. Hoxha, A., et al., Calculation of the interdiffusion coefficient in the Cu–Zn diffusion couple. In <em>7th International Conference of the Balkan Physical Union</em>, American Institute of Physics: 2009; pp 591–597.
  28. Liu, K., et al., Diffusional behaviors and mechanical properties of Cu–Zn system. <em>Journal of Alloys and Compounds </em><bold>2020,</bold> <em>812</em>.
  29. Shtapenko, E. P., et al., Diffusion at the boundary between the film and substrate upon the electrocrystallization of zinc on a copper substrate. <em>The Physics of Metals and Metallography </em><bold>2015,</bold> <em>116</em> (3), 256-260.
  30. Basak, P. S., Phase growth in alpha brass with thin layer of electroplated zinc during homogenization annealing. <em>SN Applied Sciences </em><bold>2021,</bold> <em>3</em> (4).
DOI: https://doi.org/10.2478/kom-2024-0001 | Journal eISSN: 1804-1213 | Journal ISSN: 0452-599X
Language: English
Page range: 1 - 8
Published on: Apr 4, 2024
Published by: Association of Czech and Slovak Corrosion Engineers
In partnership with: Paradigm Publishing Services
Publication frequency: 4 times per year

© 2024 V. Gerstner, R. Bureš, J. Stoulil, published by Association of Czech and Slovak Corrosion Engineers
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.