Characterizing Oxide Inclusions in Welded Lean Duplex Stainless Steels and Their Influence on Impact Toughness

Author:

Moonngam Suphitcha12,Wangjina Pranpreeya123,Viyanit Ekkarut3,Banjongprasert Chaiyasit14

Affiliation:

1. Department of Physics and Materials Science, Faculty of Science, Chiang Mai University, 239 Huay Kaew Road, Chiangmai 50200, Thailand

2. Graduate Program in Materials Science, Faculty of Science, Chiang Mai University, 239 Huay Kaew Road, Chiangmai 50200, Thailand

3. National Science and Technology Development Agency, 114 Thailand Science Park, Paholyothin Road, Klong Luang, Pathum Thani 12120, Thailand

4. Center of Excellence in Materials Science and Technology, Chiang Mai University, 239 Huay Kaew Road, Chiangmai 50200, Thailand

Abstract

In newly developed 2101 lean duplex stainless steel, oxide inclusions have been detected on welded metal zones after subjecting them to flux-cored arc welding with an E2209T1-1 flux-cored filler metal. These oxide inclusions directly affect mechanical properties of the welded metal. Hence, a correlation requiring validation has been proposed between oxide inclusions and mechanical impact toughness. Accordingly, this study employed scanning electron and high-resolution transmission electron microscopy to assess the correlation between oxide inclusions and mechanical impact toughness. Investigations revealed that the spherical oxide inclusions comprised a mixture of oxides in the ferrite matrix phase and were close to intragranular austenite. The oxide inclusions observed were titanium- and silicon-rich oxides with amorphous structures, MnO with a cubic structure, and TiO2 with an orthorhombic/tetragonal structure, derived from the deoxidation of the filler metal/consumable electrodes. We also observed that the type of oxide inclusions had no strong effect on absorbed energy and no crack initiation occurred near them.

Funder

Thailand Science Research and Innovation

Chiang Mai University

Publisher

MDPI AG

Subject

General Materials Science

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