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Articles

Laser welding of copper–nickel alloys: a numerical and experimental analysis

Pages 299-310 | Published online: 04 Dec 2013

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M Yu, F Y Meng, C Liang & J An. (2013) Method for evaluating yield strength of laser weldments of maraging steels using hardness test. Materials Science and Technology 29:11, pages 1317-1323.
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Haifeng Tan, Chunlin He, Jie Yang, Haixuan Sunyu, Yunhe Ling, Jinlin Zhang & Guihong Song. (2023) Preparation and Properties of (Cu, Ni) Co-Doped ZnO Nanoparticle-Reinforced Cu-Ni Nanocomposite Coatings. Materials 16:7, pages 2746.
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A. Murmantsev, A. Veklich, V. Boretskij, S. Fesenko & M. Kleshych. (2023) DIAGNOSTICS OF PLASMA OF ELECTRIC ARC DISCHARGE BETWEEN ASYMMETRIC SINGLE-COMPONENT Cu AND Ni ELECTRODES. Problems of Atomic Science and Technology, pages 117-121.
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D. A. Baranov, S. S. Zhatkin, K. V. Nikitin, A. A. Parkin, E. Yu. Shchedrin & V. B. Deev. (2022) Study on the Influence of Different Energy Sources on the Structure and Mechanical Properties of a Welded Joint from an EP693 Nickel Alloy. Russian Journal of Non-Ferrous Metals 63:1, pages 57-62.
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P. Ferro, G. Edison, H. Vemanaboina, F. Bonollo, F. Berto, K. Tang & Z. Du. (2022) 3D Computational Welding Mechanics applied to IN625 Nickel-Base Alloy. Procedia Structural Integrity 42, pages 259-269.
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Paolo Ferro, Alberto Fabrizi, Franco Bonollo & Filippo Berto. (2022) Influence of short-term post welding heat treatments on corrosion resistance of UNS N06625 nickel-chromium-molybdenum alloy. Procedia Structural Integrity 41, pages 430-438.
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D. А. BaranovS. S. ZhatkinK. V. NikitinA. A. ParkinE. Yu. Shchedrin & V. B. Deev. (2021) Study into the effect of different energy sources on the structure and mechanical properties of EP693 nickel alloy weld joint. Izvestiya Vuzov. Tsvetnaya Metallurgiya (Universities' Proceedings Non-Ferrous Metallurgy) 27:6, pages 22-30.
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H. Lintel, P. Böhlke, H.‐G. Wobker, W. Michels, U. Krupp & K. Jahns. (2021) Laser beam welding of deoxidized copper: microstructure investigation and thermodynamic consideration. Materialwissenschaft und Werkstofftechnik 52:11, pages 1161-1172.
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Jeyaganesh Devaraj, Aiman Ziout & Jaber E. Abu Qudeiri. (2021) Dissimilar Non-Ferrous Metal Welding: An Insight on Experimental and Numerical Analysis. Metals 11:9, pages 1486.
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P. Ferro. (2021) Is 2D numerical modelling of welding process able to capture the residual notch stress intensity factor values?. Theoretical and Applied Fracture Mechanics 114, pages 103006.
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P. Ferro, F. Berto, F. Bonollo & K. Tang. (2021) Does metallurgy affect the residual notch stress intensity factor value induced by welding operations? A comprehensive study via a 3D numerical model. International Journal of Fatigue 149, pages 106261.
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Harinadh Vemanaboina, Edison Gundabattini, Suresh Akella, A. C. Uma Maheshwer Rao, Ramesh Kumar Buddu, Paolo Ferro & Filippo Berto. (2021) Mechanical and Metallurgical Properties of CO2 Laser Beam INCONEL 625 Welded Joints. Applied Sciences 11:15, pages 7002.
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Paolo Ferro, Filippo Berto & Roberto Meneghello. (2021) Setup of a numerical model for Post Welding Heat Treatment simulation of steel joints. Procedia Structural Integrity 33, pages 198-206.
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Ajay D. Pingale, Ayush Owhal, Anil S. Katarkar, Sachin U. Belgamwar & Jitendra S. Rathore. (2021) Recent researches on Cu-Ni alloy matrix composites through electrodeposition and powder metallurgy methods: A review. Materials Today: Proceedings 47, pages 3301-3308.
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Hubert Danielewski, Andrzej Skrzypczyk, Marek Hebda, Szymon Tofil, Grzegorz Witkowski, Piotr Długosz & Rastislav Nigrovič. (2020) Numerical and Metallurgical Analysis of Laser Welded, Sealed Lap Joints of S355J2 and 316L Steels under Different Configurations. Materials 13:24, pages 5819.
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Feipeng An, Qilong Gong, Guoxiang Xu, Tan Zhang, Qingxian Hu & Jie Zhu. (2020) Simulation Study on Weld Formation in Full Penetration Laser + MIG Hybrid Welding of Copper Alloy. Materials 13:23, pages 5307.
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X. Cao & A. Nolting. (2019) Autogenous fiber laser welding of 70/30 Cu-Ni alloy plates. Materials & Design 181, pages 108075.
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S. T. Auwal, S. Ramesh, F. Yusof & S. M. Manladan. (2018) A review on laser beam welding of copper alloys. The International Journal of Advanced Manufacturing Technology 96:1-4, pages 475-490.
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P. Ferro, F. Berto, F. Bonollo & R. Montanari. (2018) Experimental and numerical analysis of TIG-dressing applied to a steel weldment. Procedia Structural Integrity 9, pages 64-70.
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P. Ferro, F. Berto & N.M. James. (2017) Asymptotic residual stress distribution induced by multipass welding processes. International Journal of Fatigue 101, pages 421-429.
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P Ferro, F Berto & M N James. (2017) A simplified model for TIG-dressing numerical simulation. Modelling and Simulation in Materials Science and Engineering 25:3, pages 035012.
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Xiuyang Fang, Hong Liu & Jianxun Zhang. (2015) Reducing the underfill rate of pulsed laser welding of titanium alloy through the application of a transversal pre-extrusion load. Journal of Materials Processing Technology 220, pages 124-134.
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Konstantinos Salonitis, Dimitris Drougas & George Chryssolouris. (2010) Finite element modeling of penetration laser welding of sandwich materials. Physics Procedia 5, pages 327-335.
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Liu Chuan, Zhang Jianxun & Niu Jing. (2009) Numerical and Experimental Analysis of Residual Stresses in Full-Penetration Laser Beam Welding of Ti6Al4V Alloy. Rare Metal Materials and Engineering 38:8, pages 1317-1320.
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G. Tsoukantas & G. Chryssolouris. (2006) Theoretical and experimental analysis of the remote welding process on thin, lap-joined AISI 304 sheets. The International Journal of Advanced Manufacturing Technology 35:9-10, pages 880-894.
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H.X. Wang, Y.H. Wei & C.L. Yang. (2007) Numerical calculation of variable polarity keyhole plasma arc welding process for aluminum alloys based on finite difference method. Computational Materials Science 40:2, pages 213-225.
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H. X. Wang, Y. H. Wei & C. L. Yang. (2013) Numerical analysis of plasma arc welding process for aluminium alloy. Science and Technology of Welding and Joining 12:1, pages 32-44.
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P Ferro, H Porzner, A Tiziani & F Bonollo. (2006) The influence of phase transformations on residual stresses induced by the welding process—3D and 2D numerical models. Modelling and Simulation in Materials Science and Engineering 14:2, pages 117-136.
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