Novel corrosion protective coatings for aluminium alloys and steels based on oxidic nanoparticles
-
Wolfram Fürbeth
, Hong-Quang Nguyen and Michael Schütze
Abstract
Based on chemical nanotechnology glass-like protective coatings thermally processed at comparatively low temperatures of around 500 °C were developed for aluminium and steel substrates by two different means. Starting from polymeric sols containing a multicomponent oxide of the SiO2 – B2O3 – P2O5 – Na2O system produced by sol-gel technology under acidic conditions, coatings were developed which are thin, hard, transparent, crack-free and corrosion resistant. Electrophoretic deposition of coatings from particulate sols containing multicomponent oxide synthesised under basic conditions proved to be a promising method when very thick coatings are required. Both routes offer the potential of a new type of purely inorganic coatings for corrosion and abrasion protection.
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© 2007, Carl Hanser Verlag, München
Articles in the same Issue
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- Notifications
- Robert W. Cahn: 1924–2007
- DGM News
Articles in the same Issue
- Contents
- Contents
- Editorial
- Editorial
- Basic
- Diffusional decomposition of supersaturated solid solutions at grain boundaries
- Characterization of oriented protein-ceramic and protein-polymer-composites for cartilage tissue engineering using synchrotron μ-CT
- Effect of ageing on optical and thermal properties of YBa2Cu3O7–δ
- Calorimetric study and thermodynamic assessment of the SrO–Ga2O3 system
- Re-determination of transition temperatures in the Fe–Al system by differential thermal analysis
- Applied
- Novel corrosion protective coatings for aluminium alloys and steels based on oxidic nanoparticles
- Novel biomimetically based ice-nucleating coatings
- Biomimetically inspired hybrid materials based on silicified collagen
- Magnesium sponges as a bioabsorbable material – attributes and challenges
- Morphology of bony tissues and implants uncovered by high-resolution tomographic imaging
- Review
- The effects of metal implants on inflammatory and healing processes
- Formation of nano hydroxyapatite – a straightforward way to bioactivate bone implant surfaces
- Drug-eluting stent technologies for vascular regeneration
- Fiber structures for the regenerative medicine
- Stimuli-responsive polymer layers for advanced cell culture technologies
- Notifications
- Robert W. Cahn: 1924–2007
- DGM News