2018
DOI: 10.4028/www.scientific.net/df.18.7
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Dissimilar Welding between 2205 Duplex Stainless Steel and API X52 High Strength Low Alloy Steel

Abstract: This work purposes to investigate the microstructure and the mechanical behavior of dissimilar metals weld between 2205 duplex stainless steel (UNS 31803) and high strength low alloy steel API X52. The joining was produced by shielded metal arc welding process using two different filler metals, the duplex E2209 and austenitic E309 grade.The microstructures of the dissimilar welded joints have been investigated by optical microscopy, scanning electron microscopy and energy-dispersive spectroscopy (EDS). The EDS… Show more

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Cited by 8 publications
(5 citation statements)
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“…17c, these new grains are ferritic grains (green color). This last observation is in agreement with that of Belkassa et al [14] who conducted research on the welding of a DSS with high mechanical strength steel. They found that in HAZ of DSS, the region close to the fusion line contains a high proportion of ferrite.…”
Section: Fz/haz2supporting
confidence: 92%
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“…17c, these new grains are ferritic grains (green color). This last observation is in agreement with that of Belkassa et al [14] who conducted research on the welding of a DSS with high mechanical strength steel. They found that in HAZ of DSS, the region close to the fusion line contains a high proportion of ferrite.…”
Section: Fz/haz2supporting
confidence: 92%
“…This is an area devoid of pearlite. The same area was observed by Belkassa et al [14] when studying the welding of low alloyed steel with duplex stainless steel. It is explained by the fact that the molten metal is richer in Cr and that the latter has a strong affinity for carbon, which promotes the migration of carbon from the base metal to the fusion zone during welding.…”
Section: Microstructural Evolution During Isothermal Treatment At 200...supporting
confidence: 72%
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“…In this case, there was an interdiffusion process, because the atoms of iron diffuse from the X70 steel to the DSS, however, the atoms of chromium and nickel diffuse from the DSS to X70 steel. Belkessa et al [31] revealed a high concentration gradient of alloying elements (Cr, Ni and Mo) in welded duplex stainless steel and low alloy steel. Based on the measured values given in Table 2 and calculated from equation ( 5), the diffusion coefficient values of 'Cr', 'Ni', and 'Fe' were calculated for the same diffusion distance x = 30 μm (Table 3).…”
Section: )mentioning
confidence: 99%
“…Low carbon steel normally has good weldability, and the welding of high strength steels produces a softened zone where the strain is concentrated making it vulnerable to HSC initiation. Furthermore, the welding microstructures have high hardness, such as MA constituent and martensite, accelerate hydrogen embrittlement [16][17][18]. In the case of dissimilar-welded joints in DSS and carbon steel, the ferrite phase fraction is increased in the heat affected zone (HAZ) of the DSS and the softened HAZ of high-strength carbon steels.…”
Section: Introductionmentioning
confidence: 99%