Title of article
Corrosion behavior in high heat input welded heat-affected zone of Ni-free high-nitrogen Fe–18Cr–10Mn–N austenitic stainless steel
Author/Authors
Moon، نويسنده , , Joonoh and Ha، نويسنده , , Heon-Young and Lee، نويسنده , , Tae-Ho، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2013
Pages
7
From page
113
To page
119
Abstract
The pitting corrosion and interphase corrosion behaviors in high heat input welded heat-affected zone (HAZ) of a metastable high-nitrogen Fe–18Cr–10Mn–N austenitic stainless steel were explored through electrochemical tests. The HAZs were simulated using Gleeble simulator with high heat input welding condition of 300 kJ/cm and the peak temperature of the HAZs was changed from 1200 °C to 1350 °C, aiming to examine the effect of δ-ferrite formation on corrosion behavior. The electrochemical test results show that both pitting corrosion resistance and interphase corrosion resistance were seriously deteriorated by δ-ferrite formation in the HAZ and their aspects were different with increasing δ-ferrite fraction. The pitting corrosion resistance was decreased by the formation of Cr-depleted zone along δ-ferrite/austenite (γ) interphase resulting from δ-ferrite formation; however it didnʹt depend on δ-ferrite fraction. The interphase corrosion resistance depends on the total amount of Cr-depleted zone as well as ferrite area and thus continuously decreased with increasing δ-ferrite fraction. The different effects of δ-ferrite fraction on pitting corrosion and interphase corrosion were carefully discussed in terms of alloying elements partitioning in the HAZ based on thermodynamic consideration.
Keywords
High-nitrogen steel (HNS) , Heat-affected zone (HAZ) , Pitting corrosion , Electrochemical test , Interphase corrosion
Journal title
Materials Characterization
Serial Year
2013
Journal title
Materials Characterization
Record number
2268915
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