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Original Articles

Restricting the heat-affected zone during the plasma cutting of high-alloy steels

Pages 5-9 | Published online: 08 Jul 2010

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Soroush Masoudi, Mostafa Mirabdolahi, Mohammad Dayyani, Farshid Jafarian, Ana Vafadar & Mohammad Reza Dorali. (2019) Development of an intelligent model to optimize heat-affected zone, kerf, and roughness in 309 stainless steel plasma cutting by using experimental results. Materials and Manufacturing Processes 34:3, pages 345-356.
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Articles from other publishers (6)

Jacek Górka. (2023) The effect of air plasma cutting on the quality, structural transformations and changes in the chemical composition of structural steel. Archives of Civil and Mechanical Engineering 23:3.
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Nehal Dash, Apurba Kumar Roy, Sanghamitra Debta & Kaushik Kumar. 2018. Soft Computing Techniques and Applications in Mechanical Engineering. Soft Computing Techniques and Applications in Mechanical Engineering 123 139 .
Kh. M. Rakhimyanov, N. P. Gaar, A. Kh. Rakhimyanov & A. A. Loktionov. (2016) Estimation of accuracy in forming construction steels by the HiFocus technology of high-precision plasma cutting. Estimation of accuracy in forming construction steels by the HiFocus technology of high-precision plasma cutting.
Daniel J. Thomas. (2012) Optimising plasma cut-edge properties for improving the durability of bridge structures. International Journal of Steel Structures 11:4, pages 481-493.
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Daniel J. Thomas. (2011) The influence of the laser and plasma traverse cutting speed process parameter on the cut-edge characteristics and durability of Yellow Goods vehicle applications. Journal of Manufacturing Processes 13:2, pages 120-132.
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Sungje Kim, Joachin Heberlein, Jon Lindsay & John Peters. (2010) Methods to evaluate arc stability in plasma arc cutting torches. Journal of Physics D: Applied Physics 43:50, pages 505202.
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