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The Effect of Constant and Pulsed Current Gas Tungsten Arc Welding on Joint Properties of 2205 Duplex Stainless Steel to 316L Austenitic Stainless Steel
by
Hajihashemi, M
, Neissi, R
, Shamanian, M
in
Austenitic stainless steels
/ Base metal
/ Chromium nitride
/ Corrosion potential
/ Corrosion resistance
/ Delta ferrite
/ Duplex stainless steels
/ Filler metals
/ Gas tungsten arc welding
/ Hardness tests
/ Heat affected zone
/ Impact strength
/ Impact tests
/ Mechanical properties
/ Metals
/ Microhardness
/ Microscopy
/ Microstructure
/ Optical properties
/ Pitting (corrosion)
/ Pitting potential
/ Precipitates
/ Pulsed current
/ Scanning microscopy
/ Sigma phase
/ Sigma phase precipitation
/ Stainless steel
/ Tensile strength
/ Tensile tests
/ Welded joints
2016
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The Effect of Constant and Pulsed Current Gas Tungsten Arc Welding on Joint Properties of 2205 Duplex Stainless Steel to 316L Austenitic Stainless Steel
by
Hajihashemi, M
, Neissi, R
, Shamanian, M
in
Austenitic stainless steels
/ Base metal
/ Chromium nitride
/ Corrosion potential
/ Corrosion resistance
/ Delta ferrite
/ Duplex stainless steels
/ Filler metals
/ Gas tungsten arc welding
/ Hardness tests
/ Heat affected zone
/ Impact strength
/ Impact tests
/ Mechanical properties
/ Metals
/ Microhardness
/ Microscopy
/ Microstructure
/ Optical properties
/ Pitting (corrosion)
/ Pitting potential
/ Precipitates
/ Pulsed current
/ Scanning microscopy
/ Sigma phase
/ Sigma phase precipitation
/ Stainless steel
/ Tensile strength
/ Tensile tests
/ Welded joints
2016
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The Effect of Constant and Pulsed Current Gas Tungsten Arc Welding on Joint Properties of 2205 Duplex Stainless Steel to 316L Austenitic Stainless Steel
by
Hajihashemi, M
, Neissi, R
, Shamanian, M
in
Austenitic stainless steels
/ Base metal
/ Chromium nitride
/ Corrosion potential
/ Corrosion resistance
/ Delta ferrite
/ Duplex stainless steels
/ Filler metals
/ Gas tungsten arc welding
/ Hardness tests
/ Heat affected zone
/ Impact strength
/ Impact tests
/ Mechanical properties
/ Metals
/ Microhardness
/ Microscopy
/ Microstructure
/ Optical properties
/ Pitting (corrosion)
/ Pitting potential
/ Precipitates
/ Pulsed current
/ Scanning microscopy
/ Sigma phase
/ Sigma phase precipitation
/ Stainless steel
/ Tensile strength
/ Tensile tests
/ Welded joints
2016
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The Effect of Constant and Pulsed Current Gas Tungsten Arc Welding on Joint Properties of 2205 Duplex Stainless Steel to 316L Austenitic Stainless Steel
Journal Article
The Effect of Constant and Pulsed Current Gas Tungsten Arc Welding on Joint Properties of 2205 Duplex Stainless Steel to 316L Austenitic Stainless Steel
2016
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Overview
In this study, dissimilar 316L austenitic stainless steel/2205 duplex stainless steel (DSS) joints were fabricated by constant and pulsed current gas tungsten arc welding process using ER2209 DSS as a filler metal. Microstructures and joint properties were characterized using optical and electron scanning microscopy, tensile, Charpy V-notch impact and micro-hardness tests, and cyclic polarization measurements. Microstructural observations confirmed the presence of chromium nitride and delta ferrite in the heat-affected zone of DSS and 316L, respectively. In addition, there was some deviation in the austenite/ferrite ratio of the surface welding pass in comparison to the root welding pass. Besides having lower pitting potential, welded joints produced by constant current gas tungsten arc welding process, consisted of some brittle sigma phase precipitates, which resulted in some impact energy reduction. The tensile tests showed high tensile strength for the weld joints in which all the specimens were broken in 316L base metal.
Publisher
Springer Nature B.V
Subject
/ Metals
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