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Articles

Effect of welding parameters on residual stress in type 420 martensitic stainless steel

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Pages 129-132 | Published online: 04 Dec 2013

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Read on this site (2)

K. H. Tseng & C. P. Chou. (2002) Effect of nitrogen addition to shielding gas on residual stress of stainless steel weldments. Science and Technology of Welding and Joining 7:1, pages 57-62.
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K.H. Tseng & C.P. Chou. (2001) Effect of pulsed gas tungsten arc welding on angular distortion in austenitic stainless steel weldments. Science and Technology of Welding and Joining 6:3, pages 149-153.
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Articles from other publishers (7)

Igor Felipe Grzybowski, Renan Rakoski Zientarski, Alexandre Aparecido Buenos & Auteliano Antunes dos Santos Junior. (2022) Residual stresses in weld bead of low carbon steel plates welded by GMAW using LCR waves. Journal of the Brazilian Society of Mechanical Sciences and Engineering 44:7.
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Andrii Mishchenko & Américo Scotti. (2018) Tensões Residuais em Soldagem a Arco: Uma Visão Holística. Soldagem & Inspeção 23:1, pages 93-112.
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Arne Kromm & Thomas Kannengiesser. (2014) <i>In Situ</i> Observation of Stress Accumulation during Sub-Merged Arc Welding. Advanced Materials Research 996, pages 417-423.
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Jörg Hildebrand & Hadi Soltanzadeh. (2014) A review on assessment of fatigue strength in welded studs. International Journal of Steel Structures 14:2, pages 421-438.
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K.H. Tseng & C.P. Chou. (2003) The study of nitrogen in argon gas on the angular distortion of austenitic stainless steel weldments. Journal of Materials Processing Technology 142:1, pages 139-144.
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K.H Tseng & C.P Chou. (2002) The effect of pulsed GTA welding on the residual stress of a stainless steel weldment. Journal of Materials Processing Technology 123:3, pages 346-353.
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Y.C. Lin & P.Y. Chen. (2001) Effect of nitrogen content and retained ferrite on the residual stress in austenitic stainless steel weldments. Materials Science and Engineering: A 307:1-2, pages 165-171.
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