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Galvannealing of (High‐)Manganese‐Alloyed TRIP‐ and X‐IP®‐Steel
Authors:M Blumenau  M Norden  F Friedel  K Peters
Affiliation:1. ThyssenKrupp Steel Europe AG, Bamenohler Stra?e 211, D‐57402 Finnentrop, Germany;2. DOC Dortmunder Oberfl?chencentrum GmbH, Eberhardstrasse 12, D‐44145 Dortmund, Germany;3. ThyssenKrupp Steel Europe AG, Kaiser‐Wilhelm‐Stra?e 100, D‐47166 Duisburg, Germany
Abstract:In this study the influence of Mn on galvannealed coatings of 1.7% Mn‐1.5% Al TRIP‐ and 23% Mn X‐IP®‐steels was investigated. It is shown that the external selective oxides like Mn, Al and Si of the TRIP steel which occur after annealing at 800 °C for 60 s at a dew point (DP) of ‐25 °C (5% H2) hamper the Fe/Zn‐reaction during subsequent galvannealing. Preoxidation was beneficially utilized to increase the surface‐reactivity of the TRIP steel under the same dew point conditions. The influence of Mn on the steel alloy was investigated by using a 23% Mn containing X‐IP®‐steel which was bright annealed at 1100 °C for 60 s at DP ‐50 °C (5% H2) to obtain a mainly oxide free surface prior to hot dip galvanizing (hdg) and subsequent galvannealing. As well known from the literature Mn alloyed to the liquid zinc melt stabilizes δ‐phase at lower temperatures by participating in the Fe‐Zn‐phase reactions, it was expected that the metallic Mn of the X‐IP®‐steel increases the Fe/Zn‐reactivity in the same manner. The approximation of the effective diffusion coefficient (Deff(Fe)) during galvannealing was found to be higher than compared to a low alloyed steel reference. Contrary to the expectation no increased Fe/Zn‐reaction was found by microscopic investigations. Residual η‐ and ζ‐phase fractions prove a hampered Fe/Zn‐reaction. As explanation for the observed hampered Fe/Zn‐reaction the lower Fe‐content of the high‐Mn‐alloyed X‐IP®‐steel was suggested as the dominating factor for galvannealing.
Keywords:Galvannealing  high‐manganese‐alloyed X‐IP®  ‐steel  Fe‐Zn‐intermetallics  manganese  TRIP  hot‐dip galvanizing
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