Electrocodeposition of Metal Matrix Nanocomposites: Investigation on the Mechanism of  Electrocodeposition and the Structure-properties  Correlation of Nickel Nanocomposites - Denny Thiemig - Books - Suedwestdeutscher Verlag fuer Hochschuls - 9783838105222 - May 4, 2009
In case cover and title do not match, the title is correct

Electrocodeposition of Metal Matrix Nanocomposites: Investigation on the Mechanism of Electrocodeposition and the Structure-properties Correlation of Nickel Nanocomposites

Denny Thiemig

Price
Íkr 8,029
excl. VAT

Ordered from remote warehouse

Expected delivery Aug 8 - 18
Add to your iMusic wish list

Electrocodeposition of Metal Matrix Nanocomposites: Investigation on the Mechanism of Electrocodeposition and the Structure-properties Correlation of Nickel Nanocomposites

Metal matrix nanocomposites consisting of ultrafine particles in a metal matrix are promising candidates for advanced materials due to their beneficial electrical, magnetic and mechanical properties. A variety of preparation techniques, such as thermal and plasma spraying, chemical and physical vapor deposition, powder metallurgy or stir casting have been investigated for developing MMNCs. Among those the process of electrocodeposition, i.e. the process of particle codeposition during the electrolytic deposition of metal, has the advantages of uniform depositions on complexly shaped substrates, low cost, homogenous distribution of particles, ability of continuous processing, and reduction of waste. Unfortunately the simple ad-hoc approach of putting particles in a standard plating bath and using established plating parameters does not work very well. Several techniques to increase the amount and improve the distribution of codeposited particles such as the application of pulsating current, the usage of special hydrodynamic techniques and the application of magnetic fields in the case of super- paramagnetic particles will be discussed.

Media Books     Paperback Book   (Book with soft cover and glued back)
Released May 4, 2009
ISBN13 9783838105222
Publishers Suedwestdeutscher Verlag fuer Hochschuls
Pages 128
Dimensions 209 g
Language German