Microstructure and Pitting Corrosion Characteristics of Tig Welded Joints of Super 304HCu Austenitic Stainless Steel

被引:0
作者
Kumar, M. Vinoth [1 ]
Rajendran, C. [2 ]
Balasubramanian, V. [3 ]
机构
[1] Hindustan Inst Technol & Sci, Dept Mech Engn, Chennai, India
[2] Sri Krishna Coll Engn & Technol, Dept Mech Engn, Coimbatore 641008, India
[3] Annamalai Univ, Res & Dev, Annamalainagar, India
来源
PRAKTISCHE METALLOGRAPHIE-PRACTICAL METALLOGRAPHY | 2023年 / 60卷 / 08期
关键词
Microstructure; polarization behaviour; oxalic acid etch test; 304HCu stainless steel; Pitting Corrosion;
D O I
10.1515/pm-2022-1034
中图分类号
TF [冶金工业];
学科分类号
0806 ;
摘要
Super 304HCu is an advanced ultra-super critical (A-USC) boiler grade austenitic stainless steel with the distinct addition of 3 wt.-% of Copper. A-USC power plants intended to operate in chloride rich environments (sea shore, feed water residues, etc.) are susceptible to chloride assisted corrosion failures. In this study, the pitting corrosion behaviour of the Super 304HCu parent material and tungsten inert gas weld joints was studied using a potentiodynamic cyclic polarization test in 3.5 % NaCl solution at three different pH levels (pH = 3, pH = 7, and pH = 11). The E-pit values of the parent material is found to be much nobler than that of the weld joints. The micrographs of the pitted weld joints and the oxalic acid etched structure of Super 304HCu joints are presented. From the micrographs it is revealed that the heat affected zone is the most susceptible region to pitting corrosion.
引用
收藏
页码:519 / 534
页数:16
相关论文
共 18 条
[1]   Impact of increased power plant cycling on the oxidation and corrosion of coal-fired superheater materials [J].
Abang, Roger ;
Weiss, Sabine ;
Krautz, Hans Joachim .
FUEL, 2018, 220 :521-534
[2]  
Bermejo MAV, 2012, WELD WORLD, V56, P2
[3]  
Bhaduri A., 2021, J MAT PERFORM CHARAC, V11, P21, DOI [10.1520/MPC20200189, DOI 10.1520/MPC20200189]
[4]   Development and Deployment of Welding Technologies for the Indian Sodium-Cooled Fast Reactor and Advanced Ultra-supercritical Thermal Power Programmes [J].
Bhaduri, Arun Kumar .
TRANSACTIONS OF THE INDIAN INSTITUTE OF METALS, 2021, 74 (05) :1035-1053
[5]  
Dudziak T., 2022, MAT HIGH TEMP, P1
[6]   Failure analysis of SS 304 HCu reheater tube of a supercritical power plant [J].
Gokhale, Aditya ;
Varma, Anand ;
Singh, Chetan ;
Halder, Prahlad ;
Jain, Jayant ;
Yadavalli, Ravi Kumar .
ENGINEERING FAILURE ANALYSIS, 2022, 137
[7]   The Effect of Service on Microstructure and Mechanical Properties of HR3C Heat-Resistant Austenitic Stainless Steel [J].
Golanski, Grzegorz ;
Zielinski, Adam ;
Sroka, Marek ;
Slania, Jacek .
MATERIALS, 2020, 13 (06)
[8]   Phase formation during solidification of AISI 304 austenitic stainless steel [J].
Hunter, A ;
Ferry, M .
SCRIPTA MATERIALIA, 2002, 46 (04) :253-258
[9]  
Iseda A., 2007, Energy Materials, V2, P199, DOI 10.1179/174892408X382860
[10]   Hot corrosion behaviour of Super 304H for marine applications at elevated temperatures [J].
Khan, M. Adam ;
Sundarrajan, S. ;
Natarajan, S. .
ANTI-CORROSION METHODS AND MATERIALS, 2017, 64 (05) :508-514