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Articles

Manual metal arc weld modelling: Part 1 Effect of process parameters on dimensions of weld bead and heat-affected zone

Pages 1069-1080 | Published online: 18 Jul 2013

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A A Anokhov, B I Zil'berman, A N Telkova & I V Fedina. (1992) Effect of welding technology on the mechanical properties of cast casing components after long‐term service. Welding International 6:12, pages 969-972.
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J. N. Clark & J. Myers. (1988) Stress relief cracking in high strength structural steel BS 4360 grade 55F. Materials Science and Technology 4:7, pages 610-612.
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Articles from other publishers (6)

Kalpana Shankhwar & Shana Smith. (2022) An interactive extended reality-based tutorial system for fundamental manual metal arc welding training. Virtual Reality 26:3, pages 1173-1192.
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Adegoke Adesanmi, Ibrahim Momoh-Bello Omiogbemi, Nicholas Sylvester Gukop, Anand Kumar Gummadi, Semir Mohammadibrahim Negash & Ishaya Musa Dagwa. (2021) Microstructural and Corrosion Characteristics of a Heat Treatable Stainless-SteelWeldments. IOP Conference Series: Materials Science and Engineering 1185:1, pages 012030.
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HARI OM & SUNIL PANDEY. (2013) Effect of heat input on dilution and heat affected zone in submerged arc welding process. Sadhana 38:6, pages 1369-1391.
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S. Shen, I.N.A. Oguocha & S. Yannacopoulos. (2012) Effect of heat input on weld bead geometry of submerged arc welded ASTM A709 Grade 50 steel joints. Journal of Materials Processing Technology 212:1, pages 286-294.
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M Senthil Kumaran, R Krishna Kumar & S Sriraman. (2005) Finite element simulation of arc welding distortion and correction in thin sidepanel sheets of a railway coach. Proceedings of the Institution of Mechanical Engineers, Part F: Journal of Rail and Rapid Transit 214:1, pages 27-43.
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J.D. Parker & A.W.J. Parsons. (1994) The tempering performance of low-alloy steel weldments. International Journal of Pressure Vessels and Piping 57:3, pages 345-352.
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