The huge range of application for high-strength fine- grain structural steels is increasing because of the advantages concerning the mechanical properties and welding suitability for this material. Thick sheets up to 10 mm are used e.g. for offshore applications, mobile crane-, concrete pump-, pipeline- and shipbuilding. Conventionally, fine-grain structural steels are joined using arc welding methods in multi-layer processes, and at a comparatively low welding speed. Edge pretreatment time and high consumption of additional materials are typical for arc welding methods. Induction assisted GMA-laser hybrid welding is more efficient because of the advantages in terms of the high welding speed, a reduction of the edge pretreatment with lower flank angles and a smaller heat affected zone (HAZ). In the course of this research, a process has been developed for a single-layer seam for fine- grain structural steels with the grades S700MC, X70 and S690QL in a thickness range from 10 to 15 mm. For this configuration, a reproducible process has been achieved. The high quality welding seams were characterized by metallographic analyses, tensile tests, notched-bar impact tests and hardness tests. In addition, the use of inductive preheating provides advantages regarding the process and the metallurgy. It is possible to increase the welding speed, and to obtain homogeneous mechanical properties around and in the welding seam. A simulation model was developed for both the preheating process and the GMA-laser hybrid welding process, to accompany the experimental research.
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ICALEO 2013: 32nd International Congress on Laser Materials Processing, Laser Microprocessing and Nanomanufacturing
October 6–10, 2013
Miami, Florida, USA
ISBN:
978-0-912035-98-7
PROCEEDINGS PAPER
Induction assisted GMA-laser hybrid welding of high-strength fine-grain structural steels Available to Purchase
Rabi Lahdo;
Rabi Lahdo
1
Laser Zentrum Hannover e.V
., Hollerithallee 8, 30419 Hannover, Germany
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Oliver Seffer;
Oliver Seffer
1
Laser Zentrum Hannover e.V
., Hollerithallee 8, 30419 Hannover, Germany
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André Springer;
André Springer
1
Laser Zentrum Hannover e.V
., Hollerithallee 8, 30419 Hannover, Germany
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Stefan Kaierle;
Stefan Kaierle
1
Laser Zentrum Hannover e.V
., Hollerithallee 8, 30419 Hannover, Germany
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Ludger Overmeyer;
Ludger Overmeyer
1
Laser Zentrum Hannover e.V
., Hollerithallee 8, 30419 Hannover, Germany
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Mareike Collmann;
Mareike Collmann
2
Institut für Stahlbau, Leibniz Universität Hannover
, Appelstraße 9A, 30167 Hannover, Germany
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Peter Schaumann;
Peter Schaumann
2
Institut für Stahlbau, Leibniz Universität Hannover
, Appelstraße 9A, 30167 Hannover, Germany
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Jörg Neumeyer;
Jörg Neumeyer
3
Institut für Elektroprozesstechnik, Leibniz Universität Hannover
, Wilhelm-Busch-Straße 4, 30167 Hannover, Germany
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Holger Schülbe;
Holger Schülbe
3
Institut für Elektroprozesstechnik, Leibniz Universität Hannover
, Wilhelm-Busch-Straße 4, 30167 Hannover, Germany
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Bernard Nacke
Bernard Nacke
3
Institut für Elektroprozesstechnik, Leibniz Universität Hannover
, Wilhelm-Busch-Straße 4, 30167 Hannover, Germany
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Published Online:
October 01 2013
Citation
Rabi Lahdo, Oliver Seffer, André Springer, Stefan Kaierle, Ludger Overmeyer, Mareike Collmann, Peter Schaumann, Jörg Neumeyer, Holger Schülbe, Bernard Nacke; October 6–10, 2013. "Induction assisted GMA-laser hybrid welding of high-strength fine-grain structural steels." Proceedings of the ICALEO 2013: 32nd International Congress on Laser Materials Processing, Laser Microprocessing and Nanomanufacturing. ICALEO 2013: 32nd International Congress on Laser Materials Processing, Laser Microprocessing and Nanomanufacturing. Miami, Florida, USA. (pp. pp. 228-236). ASME. https://doi.org/10.2351/1.5062879
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