Effect of Heat Treatment on the Microstructure and Corrosion Properties of Mg–15Dy–1.5Zn Alloy with LPSO Phase

Publikation: Beiträge in SammelwerkenAufsätze in KonferenzbändenForschungbegutachtet

Authors

The influence of the amount and type of long-period stacking ordered (LPSO) phase on the corrosionCorrosion behavior of both the as-cast and heat-treated Mg–15Dy–1.5Zn alloys in 0.9% NaCl solution was investigated. It was found that the network structure 18R-LPSO phase is an effective barrier to further corrosion of the as-cast sample. After T4 treatment for 24 h, the dendrites disappeared and part of 18R-LPSO dissolved in the matrix, which weakened the corrosion protection. Meanwhile, such LPSO phase acts as a cathodic to accelerate the corrosionCorrosion of the matrix because of its potential difference from the magnesium matrix. After T4 treatment for a longer time, 18R-LPSO phase could transform into 14H-LPSO phase which has a different effect on corrosion. The galvanic corrosion also occurs between the 14H-LPSO phase and the matrix. Its uniform and dense distribution results in the formation of continuous corrosionCorrosion products on the surface, which is beneficial for corrosion resistance.

OriginalspracheEnglisch
TitelMagnesium Technology 2024
HerausgeberAeriel Leonard, Steven Barela, Neale R. Neelameggham, Victoria M. Miller, Domonkos Tolnai
Anzahl der Seiten7
ErscheinungsortCham
VerlagSpringer Science and Business Media Deutschland GmbH
Erscheinungsdatum01.01.2024
Seiten7-13
ISBN (Print)978-3-031-50239-2, 978-3-031-50242-2
ISBN (elektronisch)978-3-031-50240-8
DOIs
PublikationsstatusErschienen - 01.01.2024
VeranstaltungMagnesium Technology Symposium held at the Annual Meeting and Exhibition - TMS 2024: Decarbonization of Alumina and Primary Aluminum Production to be the Metal of Choice - Orlando, USA / Vereinigte Staaten
Dauer: 03.03.202407.03.2024
https://www.tms.org/TMS2024/TMS2024/Programming/Light_Metals_Programming.aspx

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© The Minerals, Metals & Materials Society 2024.

DOI