1997
DOI: 10.1007/s11665-997-0121-1
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Effect of sulfur and oxygen on weld penetration of high-purity austenitic stainless steels

Abstract: Convective flow during arc welding depends upon the surface tension gradient (dTIdT, Marangoni flow), buoyancy, arc drag force, electromagnetic force, shielding gas, and the viscosity of the melt. The Marangoni and the buoyancy-driven flow are the major factors in controlling weld penetration in ferrous alloys, especially austenitic stainless steels such as 304 and 316. Small variations in the concentration of surfactants, such as sulfur and oxygen, in stainless steels cause significant changes in the weld pen… Show more

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Cited by 47 publications
(35 citation statements)
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“…4,5) The presence of sulphur can also ensure adequate weld penetration of stainless steel and therefore improve its performance. 6) On the other hand, sulphides can induce pitting corrosion and weaken the corrosion resistance of stainless steel. [2][3][4][5] To utilize the beneficial effects of the sulphide inclusions and to depress their detrimental effects, it is essential to control the sulphur content and sulphides formation in stainless steel production.…”
Section: Introductionmentioning
confidence: 99%
“…4,5) The presence of sulphur can also ensure adequate weld penetration of stainless steel and therefore improve its performance. 6) On the other hand, sulphides can induce pitting corrosion and weaken the corrosion resistance of stainless steel. [2][3][4][5] To utilize the beneficial effects of the sulphide inclusions and to depress their detrimental effects, it is essential to control the sulphur content and sulphides formation in stainless steel production.…”
Section: Introductionmentioning
confidence: 99%
“…Dikenal beberapa gaya yang menentukan, yaitu tekanan, olakan, dan aliran cairan dalam kolam lasan. Keseimbangan aliran dalam kolam lasan ini ditentukan oleh gaya akibat tekanan busur, gaya gravitasi, gaya elektromagnetik, dan gaya akibat tegangan permukaan [1,2].…”
Section: Pendahuluanunclassified
“…For example, an oxide coating consisting of iron, chromium, silicon, titanium, manganese, nickel, cobalt, molybdenum and calcium has been reported to improve weldability and increase welding penetration in stainless steel. [4][5][6]16 The halogens, calcium fluoride, sodium fluoride, aluminium fluoride and silicon dioxide, have been reported to constrict the arc and to increase the welding depth penetration in titanium alloys. 13,14,17 Liu et al 8 discovered that using halogen elements in activating flux in A-TIG for titanium alloy (Ti-6Al-4V) obviously improves the welding penetration.…”
Section: Introductionmentioning
confidence: 99%