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Electrochemical noise of unalloyed steel in mixtures of water‐based binders and pigments
Author(s) -
Heyn A.,
Rosemann P.,
Babutzka M.,
Bender S.
Publication year - 2017
Publication title -
materials and corrosion
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.487
H-Index - 55
eISSN - 1521-4176
pISSN - 0947-5117
DOI - 10.1002/maco.201709671
Subject(s) - coating , electrochemical noise , materials science , corrosion , aqueous solution , electrochemistry , alkyd , metallurgy , nanotechnology , chemistry , organic chemistry , electrode
The development of organic coatings for corrosion protection is an elaborate process with a multitude of often interminable investigations and tests of protection properties. Electrochemical methods support the processes of development to a great extent and help to understand mechanisms of action and failure. They are usually carried out on applied coating systems with a completed formulation. An examination possibility is presented in this publication that enables the characterization of water‐based coatings with different formulation variations in the liquid (aqueous) state with the aid of electrochemical noise technique. Thus, selection of binders, pigments, and other additives is supported essentially and made more efficient in a very early phase of formulation development. The paper shows that a unique insight into the dynamic processes of a metal in contact with an aqueous coating dispersion is possible using the example of the development of zinc‐free corrosion‐inhibiting pigments for water‐based coatings. In addition, it is presented in which way the results correlate with the performance of applied coatings.

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