Cargando…

The Microstructure and Pitting Resistance of 2002 Lean Duplex Stainless Steel after the Simulated Welding Thermal Cycle Process

In this paper, thermal cycles with different heat inputs and cooling rates were investigated for a novel lean duplex stainless steel 2002 using a welding simulation. The microstructure and pitting resistance of the simulated heat-affected zones were studied. With the increasing heat input, the amoun...

Descripción completa

Detalles Bibliográficos
Autores principales: Yang, Yuanyuan, Guo, Yanjun, Liu, Yuanyuan, Li, Jin, Jiang, Yiming
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6337741/
https://www.ncbi.nlm.nih.gov/pubmed/30587767
http://dx.doi.org/10.3390/ma12010070
_version_ 1783388320286375936
author Yang, Yuanyuan
Guo, Yanjun
Liu, Yuanyuan
Li, Jin
Jiang, Yiming
author_facet Yang, Yuanyuan
Guo, Yanjun
Liu, Yuanyuan
Li, Jin
Jiang, Yiming
author_sort Yang, Yuanyuan
collection PubMed
description In this paper, thermal cycles with different heat inputs and cooling rates were investigated for a novel lean duplex stainless steel 2002 using a welding simulation. The microstructure and pitting resistance of the simulated heat-affected zones were studied. With the increasing heat input, the amount and size of the austenite phase both increased, along with a transformation from rods to dendritic structures. The critical pitting temperature (CPT) and the pitting potential (E(pit)) both increased first and then declined as the heat input increased, indicating a strong dependence of pitting resistance on the heat input. For the different cooling rates, the amount of ferrite increased as the cooling rate increased from 0.25 °C/s to 20 °C/s. The CPT and E(pit) both increased with the increasing cooling rates, indicating an improved pitting resistance. The pits initiated preferentially at the boundaries of ferrite and austenite due to the precipitation of M(23)C(6) in the specimens with different cooling rates.
format Online
Article
Text
id pubmed-6337741
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-63377412019-01-22 The Microstructure and Pitting Resistance of 2002 Lean Duplex Stainless Steel after the Simulated Welding Thermal Cycle Process Yang, Yuanyuan Guo, Yanjun Liu, Yuanyuan Li, Jin Jiang, Yiming Materials (Basel) Article In this paper, thermal cycles with different heat inputs and cooling rates were investigated for a novel lean duplex stainless steel 2002 using a welding simulation. The microstructure and pitting resistance of the simulated heat-affected zones were studied. With the increasing heat input, the amount and size of the austenite phase both increased, along with a transformation from rods to dendritic structures. The critical pitting temperature (CPT) and the pitting potential (E(pit)) both increased first and then declined as the heat input increased, indicating a strong dependence of pitting resistance on the heat input. For the different cooling rates, the amount of ferrite increased as the cooling rate increased from 0.25 °C/s to 20 °C/s. The CPT and E(pit) both increased with the increasing cooling rates, indicating an improved pitting resistance. The pits initiated preferentially at the boundaries of ferrite and austenite due to the precipitation of M(23)C(6) in the specimens with different cooling rates. MDPI 2018-12-26 /pmc/articles/PMC6337741/ /pubmed/30587767 http://dx.doi.org/10.3390/ma12010070 Text en © 2018 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Yang, Yuanyuan
Guo, Yanjun
Liu, Yuanyuan
Li, Jin
Jiang, Yiming
The Microstructure and Pitting Resistance of 2002 Lean Duplex Stainless Steel after the Simulated Welding Thermal Cycle Process
title The Microstructure and Pitting Resistance of 2002 Lean Duplex Stainless Steel after the Simulated Welding Thermal Cycle Process
title_full The Microstructure and Pitting Resistance of 2002 Lean Duplex Stainless Steel after the Simulated Welding Thermal Cycle Process
title_fullStr The Microstructure and Pitting Resistance of 2002 Lean Duplex Stainless Steel after the Simulated Welding Thermal Cycle Process
title_full_unstemmed The Microstructure and Pitting Resistance of 2002 Lean Duplex Stainless Steel after the Simulated Welding Thermal Cycle Process
title_short The Microstructure and Pitting Resistance of 2002 Lean Duplex Stainless Steel after the Simulated Welding Thermal Cycle Process
title_sort microstructure and pitting resistance of 2002 lean duplex stainless steel after the simulated welding thermal cycle process
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6337741/
https://www.ncbi.nlm.nih.gov/pubmed/30587767
http://dx.doi.org/10.3390/ma12010070
work_keys_str_mv AT yangyuanyuan themicrostructureandpittingresistanceof2002leanduplexstainlesssteelafterthesimulatedweldingthermalcycleprocess
AT guoyanjun themicrostructureandpittingresistanceof2002leanduplexstainlesssteelafterthesimulatedweldingthermalcycleprocess
AT liuyuanyuan themicrostructureandpittingresistanceof2002leanduplexstainlesssteelafterthesimulatedweldingthermalcycleprocess
AT lijin themicrostructureandpittingresistanceof2002leanduplexstainlesssteelafterthesimulatedweldingthermalcycleprocess
AT jiangyiming themicrostructureandpittingresistanceof2002leanduplexstainlesssteelafterthesimulatedweldingthermalcycleprocess
AT yangyuanyuan microstructureandpittingresistanceof2002leanduplexstainlesssteelafterthesimulatedweldingthermalcycleprocess
AT guoyanjun microstructureandpittingresistanceof2002leanduplexstainlesssteelafterthesimulatedweldingthermalcycleprocess
AT liuyuanyuan microstructureandpittingresistanceof2002leanduplexstainlesssteelafterthesimulatedweldingthermalcycleprocess
AT lijin microstructureandpittingresistanceof2002leanduplexstainlesssteelafterthesimulatedweldingthermalcycleprocess
AT jiangyiming microstructureandpittingresistanceof2002leanduplexstainlesssteelafterthesimulatedweldingthermalcycleprocess