Sn and Ti influences on intermetallic phases damage in hot dip galvanizing

Protection against metallic materials corrosion is one of the most important means to reduce both  aintenance costs and environmental impact. In the last years new studies on chemical baths compositions and fluxes have been performed in order to improve processes, corrosion resistance and mechanical...

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Main Author: V. Di Cocco
Format: Article
Language:English
Published: Gruppo Italiano Frattura 2012-09-01
Series:Fracture and Structural Integrity
Subjects:
Online Access:https://212.237.37.202/index.php/fis/article/view/151
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author V. Di Cocco
author_facet V. Di Cocco
author_sort V. Di Cocco
collection DOAJ
description Protection against metallic materials corrosion is one of the most important means to reduce both  aintenance costs and environmental impact. In the last years new studies on chemical baths compositions and fluxes have been performed in order to improve processes, corrosion resistance and mechanical behavior of Zn based coatings. Chemical bath composition is often improved by the Sn addition which increases the fluidity of the melt. Ti addition makes the coatings to change color under appropriate heat treatment. In this work a comparative microstructural analysis, in Zn-Sn and Zn-Ti coatings, is performed to evaluate intermetallic phases formation kinetics and the influence of intermetallic microstructure on coating damage under constant bending deformation.
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series Fracture and Structural Integrity
spelling doaj-art-5a9b66d05f8b4284b497868fc8bf605a2025-01-03T00:46:06ZengGruppo Italiano FratturaFracture and Structural Integrity1971-89932012-09-01622Sn and Ti influences on intermetallic phases damage in hot dip galvanizingV. Di Cocco0DICeM - Università di Cassino e del Lazio Meridionale, Via G. Di Biasio 43, 03043, Cassino (FR), ItalyProtection against metallic materials corrosion is one of the most important means to reduce both  aintenance costs and environmental impact. In the last years new studies on chemical baths compositions and fluxes have been performed in order to improve processes, corrosion resistance and mechanical behavior of Zn based coatings. Chemical bath composition is often improved by the Sn addition which increases the fluidity of the melt. Ti addition makes the coatings to change color under appropriate heat treatment. In this work a comparative microstructural analysis, in Zn-Sn and Zn-Ti coatings, is performed to evaluate intermetallic phases formation kinetics and the influence of intermetallic microstructure on coating damage under constant bending deformation.https://212.237.37.202/index.php/fis/article/view/151Hot Dip Galvanizing
spellingShingle V. Di Cocco
Sn and Ti influences on intermetallic phases damage in hot dip galvanizing
Fracture and Structural Integrity
Hot Dip Galvanizing
title Sn and Ti influences on intermetallic phases damage in hot dip galvanizing
title_full Sn and Ti influences on intermetallic phases damage in hot dip galvanizing
title_fullStr Sn and Ti influences on intermetallic phases damage in hot dip galvanizing
title_full_unstemmed Sn and Ti influences on intermetallic phases damage in hot dip galvanizing
title_short Sn and Ti influences on intermetallic phases damage in hot dip galvanizing
title_sort sn and ti influences on intermetallic phases damage in hot dip galvanizing
topic Hot Dip Galvanizing
url https://212.237.37.202/index.php/fis/article/view/151
work_keys_str_mv AT vdicocco snandtiinfluencesonintermetallicphasesdamageinhotdipgalvanizing