Innovative pre-treatment techniques to prevent corrosion of metallic surfaces /
There has long been a need for effective pre-treatment techniques to prevent corrosion of metallic surfaces. This important volume discusses key research on the development of pre-treatment techniques for a range of metals. Chapters review various coatings and preparation methods for aluminium and a...
Clasificación: | Libro Electrónico |
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Autor Corporativo: | |
Otros Autores: | , , |
Formato: | Electrónico eBook |
Idioma: | Inglés |
Publicado: |
Cambridge, England ; Boca Raton, Florida :
Woodhead Publishing Limited : CRC Press,
2007.
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Colección: | Woodhead Publishing in materials.
Publications (European Federation of Corrosion) ; no. 54. |
Temas: | |
Acceso en línea: | Texto completo |
Tabla de Contenidos:
- Cover; Innovativepre-treatmenttechniques toprevent corrosion ofmetallic surfaces; Copyright; Contents; Contributor contact details; European Federation of Corrosion (EFC)publications: Series introduction; Volumes in the EFC series; 1Silane films for the pre-treatment of aluminium: film formation mechanism and curing; 1.1 Introduction; 1.2 Experimental procedures; 1.3 Results and discussion; 1.4 Conclusions; 1.5 References; 2EIS investigation of the behaviour in 0.1 M sodium chloride solution of a double layer cerium-silane pre-treatment on Al 2024-T3; 2.1 Introduction.
- 2.2 Experimental procedures2.3 Results and discussion; 2.4 Conclusions; 2.5 Acknowledgements; 2.6 References; 3Deposition of zirconia as an adhesion promoter on Al 1050 alloy: two preparation routes; 3.1 Introduction; 3.2 Experimental procedures; 3.3 Results and discussion; 3.4 Conclusions; 3.5 References; 4Sol-gel coatings for pitting corrosion resistance of AA 2024-T3 aluminium alloy; 4.1 Introduction; 4.2 Experimental procedures; 4.3 Results and discussion; 4.4 Conclusions; 4.5 Acknowledgements; 4.6 References.
- 5Magnesium-rich primers for chromate-free protective systems on Al 2024 and Al 70755.1 Introduction; 5.2 Experimental procedures; 5.3 Results and discussion; 5.4 Conclusions; 5.5 Acknowledgements; 5.6 References; 6The importance of the near-surface region in the surface pre-treatment of rolled recycled aluminium; 6.1 Introduction; 6.2 Experimental procedures; 6.3 Results; 6.4 Discussion; 6.5 Conclusions; 6.6 Acknowledgements; 6.7 References; 7Corrosion studies and analytical characterisation of galvanised steel substrates pre-treated with doped silane solutions; 7.1 Introduction.
- 7.2 Experimental procedures7.3 Results and discussion; 7.4 Conclusions; 7.5 Acknowledgements; 7.6 References; 8Electrochemical evaluation of protection methods for galvanised steel using passivation treatments without hexavalent chromium; 8.1 Introduction; 8.2 Experimental procedures; 8.3 Results; 8.4 Conclusions; 8.5 Acknowledgments; 8.6 References; 9The effect of cerium nitrate on the corrosion behaviour of electrogalvanised steel substrates, evaluated by XPS and SVET; 9.1 Introduction; 9.2 Experimental procedures; 9.3 Results and discussion; 9.4 Conclusions; 9.5 Acknowledgements.
- 9.6 References10Inhibition of corrosion of zinc by Cr(VI) and Cr(III) treatments; 10.1 Introduction; 10.2 Experimental procedures; 10.3 Results; 10.4 Discussion; 10.5 Conclusions; 10.6 Acknowledgements; 10.7 References; 11Use of a surfactant to develop an aqueous conversion coating based upon zinc heptanoate; 11.1 Introduction; 11.2 Experimental procedures; 11.3 Experimental results; 11.4 Discussion; 11.5 Conclusions; 11.6 Acknowledgements; 11.7 References; 12Effect of silane solution concentration on the anticorrosive protection of pretreatments applied on steel; 12.1 Introduction.