Investigation on joint characteristics of laser beam welded press hardenable ultra-high strength steels with ferritic-martensitic and martensitic microstructure
The introduction of stainless ultra-high strength steels with ferritic-martensitic and martensitic microstructure into sheet metal manufacturing depends on proper welding processes for these steel grades. The chromium and carbon content as well as the lack of appropriate process information for ther...
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Published in | Welding in the world Vol. 59; no. 4; pp. 545 - 554 |
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Main Authors | , , , , , , |
Format | Journal Article |
Language | English |
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Berlin/Heidelberg
Springer Berlin Heidelberg
01.07.2015
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Abstract | The introduction of stainless ultra-high strength steels with ferritic-martensitic and martensitic microstructure into sheet metal manufacturing depends on proper welding processes for these steel grades. The chromium and carbon content as well as the lack of appropriate process information for thermal joining of these steel grades in press hardened condition with UTS of up to 2.000 MPa at 15 % fracture strain classifies the weldability of these materials as limited. Efficient heat control and minimum heat input enable the welding of ferritic-martensitic and martensitic stainless steels by laser beam. This paper presents the results of strength evaluations of laser welded joints for the steel grades 1.4003, 1.4021, and 1.4034 in similar and dissimilar combinations with already established steels. By maintaining optimal welding conditions with pre- and postheating, and with respect to the testing angle and speed, press hardenable steels with ferritic-martensitic and martensitic microstructure overtop joining strength of already established 1.5528 by approx. 20 %. The paper gives an overview of the press hardening conditions, the welding parameterization, the welding seam hardness profiles for different steel-combination-arrangements, and the selected force-displacement-behavior. The paper finalize with a comparison of joint properties for considered material combinations for simple one-joint-specimen and complex structure specimen. |
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AbstractList | The introduction of stainless ultra-high strength steels with ferritic-martensitic and martensitic microstructure into sheet metal manufacturing depends on proper welding processes for these steel grades. The chromium and carbon content as well as the lack of appropriate process information for thermal joining of these steel grades in press hardened condition with UTS of up to 2.000 MPa at 15 % fracture strain classifies the weldability of these materials as limited. Efficient heat control and minimum heat input enable the welding of ferritic-martensitic and martensitic stainless steels by laser beam. This paper presents the results of strength evaluations of laser welded joints for the steel grades 1.4003, 1.4021, and 1.4034 in similar and dissimilar combinations with already established steels. By maintaining optimal welding conditions with pre- and postheating, and with respect to the testing angle and speed, press hardenable steels with ferritic-martensitic and martensitic microstructure overtop joining strength of already established 1.5528 by approx. 20 %. The paper gives an overview of the press hardening conditions, the welding parameterization, the welding seam hardness profiles for different steel-combination-arrangements, and the selected force-displacement-behavior. The paper finalize with a comparison of joint properties for considered material combinations for simple one-joint-specimen and complex structure specimen. |
Author | Meschut, G. Melz, T. Lindner, S. Janzen, V. Poprawe, R. Dahmen, M. Wagener, R. |
Author_xml | – sequence: 1 givenname: V. surname: Janzen fullname: Janzen, V. email: janzen@lwf.upb.de organization: Laboratory for Materials and Joining Technology LWF, University of Paderborn – sequence: 2 givenname: G. surname: Meschut fullname: Meschut, G. organization: Laboratory for Materials and Joining Technology LWF, University of Paderborn – sequence: 3 givenname: M. surname: Dahmen fullname: Dahmen, M. organization: Fraunhofer Institute for Laser Technology ILT – sequence: 4 givenname: R. surname: Poprawe fullname: Poprawe, R. organization: Fraunhofer Institute for Laser Technology ILT – sequence: 5 givenname: S. surname: Lindner fullname: Lindner, S. organization: Outokumpu Nirosta GmbH – sequence: 6 givenname: R. surname: Wagener fullname: Wagener, R. organization: Fraunhofer Institute for Structural Durability and System Reliability LBF – sequence: 7 givenname: T. surname: Melz fullname: Melz, T. organization: Fraunhofer Institute for Structural Durability and System Reliability LBF |
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CitedBy_id | crossref_primary_10_1016_j_surfcoat_2018_04_002 crossref_primary_10_1016_j_promfg_2019_08_019 crossref_primary_10_1016_j_phpro_2016_08_036 |
Cites_doi | 10.1016/j.actamat.2012.01.045 10.1007/978-3-642-03183-0 10.1007/BF03266627 |
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References | Outokumpu Nirosta GmbH: Datasheet 1.4034, http://www.thyssenkrupp.at/files/rsh/Werkstoffdatenblaetter/Bleche%20und%20Baender%20aus%20Nirosta%20und%20Thermax/1.4034.pdf Moreno, A.; Fernanda, L.: Transformaciones de inequilibrio producidas por ciclos anisotérmicos en aceros inoxidables martensitícicos tipo 13Cr y 14CrMoV. PhD Thesis, Universidad Complutense de Madrid, 1992 (in Spanish) van RooyenCMicrostructural development during laser cladding of low-C martensitic stainless steelWelding World Springer-Verlag2008523–4222910.1007/BF03266627 Dahmen, M.; Han, X.; Sun, Z.: Laser beam welding of Martensitic stainless steels as-rolled and under press-hardening conditions; Proceedings of the IIW Regional Congress, 07th/08th November 2012, Johannesburg, South Africa Costa, L.; Colaçao, R.; Réti, T.; Deus, A.M.; Vilar, R.: Tempering effects in steel parts produced by additive fabrication using laser powderdeposition; Proceedings of the 1st International Conference on Advanced Research in Virtual and Rapid Prototyping, 1st-4th October 2003, Leiria, Portugal TabanEDeleuEDhoogeAKalucELaser welding of modified 12% Cr stainless steel: Strength, fatigue, toughness, microstructure and corrosion propertiesMat Des Elsevier Ltd200930411931200 Yuan, L.; Ponge, D.; Wittig, J.; Choi, P.; Jiménez, J. A.; Raabe, D.: Nanoscale austenite reversion through partitioning, segregation, and kinetic freezing: Example of a ductile 2 GPa Fe-Cr-C steel. Journal: Acta Materialia, Elsevier Ltd., Vol. 60, Issues 6-7, 2012, p. 2790-2804 DVS/EFB 3480-1: Prüfung von Verbindungseigenschaften—Prüfung der mechanisch kombiniert mittels Kleben gefertigter Verbindungen (Testing of Properties of Joints). Instruction sheet of DVS/EFB-Committee „Mechanisches Fügen“, DVS Media, Düsseldorf, 2007 (in German) van Rooyen, C.; Burger, H.P.; Kazadi, P.: Microstructure of laser cladded martensitic stainless steel. IIW Doc. IX-H-636-06, presented at 59th Annual Assembly of the International Institute of Welding (IIW), 28. August - 1. September 2006, Quebec, Canada SchulzeGDie Metallurgie des Schweißens (Metallurgical aspects of welding)2010Berlin HeidelbergSpringer Verlag42242410.1007/978-3-642-03183-0in German Gumbsch, P.; Hahn, O.: Charakterisierung und Modellierung des Versagens von Laserstrahlschweißverbindungen von Stahlblechen für die Crashsimulation (Characterization and modeling of the failure of laser beam welded joints of steel sheets for crash simulation). Research project no. AVIF A237, funded by Stiftung Stahlanwendungsforschung im Stifterverband für die Deutsche Wissenschaft e.V., Düsseldorf, 2007–2009 (in German) Barlow, L. D.: The effect of austenitising and tempering parameters on the microstructure and hardness of martensitic stainless steel AISI 420. Master thesis, University of Pretoria, 2009 229_CR2 229_CR1 229_CR11 229_CR12 229_CR3 229_CR6 229_CR5 E Taban (229_CR8) 2009; 30 229_CR7 G Schulze (229_CR4) 2010 229_CR9 C Rooyen van (229_CR10) 2008; 52 |
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Title | Investigation on joint characteristics of laser beam welded press hardenable ultra-high strength steels with ferritic-martensitic and martensitic microstructure |
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