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Détail de l'auteur
Auteur T. Neddemeyer
Documents disponibles écrits par cet auteur
Affiner la rechercheA new approach to improve high temperature corrosion resistance of thermally sprayed coatings by using electrochemical corrosion tests / T. Neddemeyer in Materials and corrosion, Vol. 62 N° 7 (Juillet 2011)
[article]
in Materials and corrosion > Vol. 62 N° 7 (Juillet 2011) . - pp. 623–634
Titre : A new approach to improve high temperature corrosion resistance of thermally sprayed coatings by using electrochemical corrosion tests Type de document : texte imprimé Auteurs : T. Neddemeyer, Auteur ; M. Mocker, Auteur ; M. Faulstich, Auteur Année de publication : 2011 Article en page(s) : pp. 623–634 Note générale : Génie Mécanique Langues : Anglais (eng) Mots-clés : Corrosion protection Diamalloy 1005 Electrochemical tests in aqueous solution High temperature corrosion tests Thermal spraying Index. décimale : 620.1 Essais des matériaux. Défauts des matériaux. Protection des matériaux Résumé : In order to increase reliability and lifetime of heat exchangers in waste-to-energy plants corrosion resistant thermally sprayed coatings are applied in a higher extent. From the selection of a plant specific spray material and process via laboratory and field experiments up to a successful coating a high amount of time and money is necessary. In particular, experiments in corrosive surroundings at high temperature which are needed to optimize the coating quality are time-consuming. In order to decrease development times and to reduce costs, corrosion resistance of a thermally sprayed coating under high temperature conditions is compared with its behavior in an aqueous solution. If the high temperature corrosion resistance can be forecast by electrochemical tests, a fast, efficient and cheap possibility to improve the coating quality would be available and the efforts for tests in high temperature environments could be decreased. To accomplish this objective, Diamalloy 1005 was sprayed with the APS-process on a ferritic steel. Since the performance of thermally sprayed coatings is not only influenced by the coating material but also by the spraying parameters, three different spray parameter sets were used.
After analyzing the results of the corrosion tests under high temperature conditions and in aqueous solution an identical assessment of the spray parameter-specific corrosion protection could be obtained. Ongoing field tests in a waste-to-energy plant are expected to prove the laboratory results. So, a first step in the development of a fast, efficient and cheap method to predict the high temperature corrosion resistance of a thermally sprayed coating might have been done.
DEWEY : 620.1 ISSN : 0947-5117 En ligne : http://onlinelibrary.wiley.com/doi/10.1002/maco.201005860/abstract [article] A new approach to improve high temperature corrosion resistance of thermally sprayed coatings by using electrochemical corrosion tests [texte imprimé] / T. Neddemeyer, Auteur ; M. Mocker, Auteur ; M. Faulstich, Auteur . - 2011 . - pp. 623–634.
Génie Mécanique
Langues : Anglais (eng)
in Materials and corrosion > Vol. 62 N° 7 (Juillet 2011) . - pp. 623–634
Mots-clés : Corrosion protection Diamalloy 1005 Electrochemical tests in aqueous solution High temperature corrosion tests Thermal spraying Index. décimale : 620.1 Essais des matériaux. Défauts des matériaux. Protection des matériaux Résumé : In order to increase reliability and lifetime of heat exchangers in waste-to-energy plants corrosion resistant thermally sprayed coatings are applied in a higher extent. From the selection of a plant specific spray material and process via laboratory and field experiments up to a successful coating a high amount of time and money is necessary. In particular, experiments in corrosive surroundings at high temperature which are needed to optimize the coating quality are time-consuming. In order to decrease development times and to reduce costs, corrosion resistance of a thermally sprayed coating under high temperature conditions is compared with its behavior in an aqueous solution. If the high temperature corrosion resistance can be forecast by electrochemical tests, a fast, efficient and cheap possibility to improve the coating quality would be available and the efforts for tests in high temperature environments could be decreased. To accomplish this objective, Diamalloy 1005 was sprayed with the APS-process on a ferritic steel. Since the performance of thermally sprayed coatings is not only influenced by the coating material but also by the spraying parameters, three different spray parameter sets were used.
After analyzing the results of the corrosion tests under high temperature conditions and in aqueous solution an identical assessment of the spray parameter-specific corrosion protection could be obtained. Ongoing field tests in a waste-to-energy plant are expected to prove the laboratory results. So, a first step in the development of a fast, efficient and cheap method to predict the high temperature corrosion resistance of a thermally sprayed coating might have been done.
DEWEY : 620.1 ISSN : 0947-5117 En ligne : http://onlinelibrary.wiley.com/doi/10.1002/maco.201005860/abstract