Otimização do banho eletrolítico da liga Fe-W-B resistente à corrosão



Título del documento: Otimização do banho eletrolítico da liga Fe-W-B resistente à corrosão
Revista: Quimica nova
Base de datos: PERIÓDICA
Número de sistema: 000313392
ISSN: 0100-4042
Autors: 1


2
Institucions: 1Universidade Federal de Campina Grande, Departamento de Engenharia Quimica, Campina Grande, Paraiba. Brasil
2Universidade Estadual da Paraiba, Departamento de Quimica, Campina Grande, Paraiba. Brasil
Any:
Període: Abr
Volum: 30
Número: 2
Paginació: 360-365
País: Brasil
Idioma: Portugués
Tipo de documento: Artículo
Enfoque: Experimental, aplicado
Resumen en inglés A study on optimization of bath parameters for electrodeposition of Fe-W-B alloys from plating baths containing ammonia and citrate is reported. A 2³ full factorial design was successfully employed for experimental design analysis of the results. The corrosion resistance and amorphous character were evaluated. The bath conditions obtained for depositing the alloy with good corrosion resistance were: 0.01 M iron sulfate, 0.10 M sodium tungstate and 0.60 M ammonium citrate. The alloy was deposited at 12% current efficiency. The alloy obtained had Ecorr -0.841 V and Rp 1.463 x 10(4) Ohm cm². The deposit obtained under these conditions had an amorphous character and no microcracks were observed on its surface. Besides this, the bath conditions obtained for depositing the alloy with the highest deposition efficiency were: 0.09 M iron sulfate, 0.30 M sodium tungstate and 0.50 M ammonium citrate. The alloy was deposited at 50% current efficiency, with an average composition of 34 wt% W, 66 wt% Fe and traces of boron. The alloy obtained had Ecorr -0.800 V and Rp 1.895 x 10³ Ohm cm². Electrochemical corrosion tests verified that the Fe-W-B alloy deposited under both conditions had better corrosion resistance than Fe-Mo-B
Disciplines Ingeniería,
Química
Paraules clau: Ingeniería de materiales,
Ingeniería química,
Aleaciones hierro-wolframio-boro,
Electrodeposición,
Resistencia a la corrosión
Keyword: Engineering,
Chemistry,
Chemical engineering,
Materials engineering,
Iron-wolframium-boron alloys,
Electrodeposition,
Corrosion resistance
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