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Articles

Controlling welding hot cracking based on electromagnetic force

Pages 659-663 | Published online: 04 Dec 2013

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Read on this site (2)

N. B. Dahiwale, A. Kapil & A. Sharma. (2015) Integrated model for assessment of electromagnetic force field due to arc welding. Science and Technology of Welding and Joining 20:7, pages 563-570.
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D. Xu, X. S. Liu, P. Wang, J. G. Yang & H. Y. Fang. (2009) New technique to control welding buckling distortion and residual stress with non-contact electromagnetic impact. Science and Technology of Welding and Joining 14:8, pages 753-759.
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Articles from other publishers (4)

F. Bodaghi, M. Movahedi & A.H. Kokabi. (2023) Estimation of solidification cracking susceptibility in Al–Si–Cu alloy weld: effects of anisotropic permeability and deformation orientation. Journal of Materials Research and Technology 23, pages 2351-2361.
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Yiyuan Pang, Hong Li, Pan Tang & Chao Chen. (2022) Synchronization Optimization of Pipe Diameter and Operation Frequency in a Pressurized Irrigation Network Based on the Genetic Algorithm. Agriculture 12:5, pages 673.
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F Bodaghi, M Movahedi, A H Kokabi & R Tavakoli. (2019) Effect of solid fraction, grain misorientation and grain boundary energy on solidification cracking in weld of Al–Cu aluminum alloys. Materials Research Express 6:8, pages 086598.
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Wei XU, Hong-yuan FANG, Jun CAO, Wen-bin DING & Ping SHAN. (2009) Parametric effect of large impulse current excited coil on electromagnetic force in coil-sheet system. Transactions of Nonferrous Metals Society of China 19, pages s806-s810.
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