Please use this identifier to cite or link to this item: https://doi.org/10.48548/pubdata-1449
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FieldValue
Resource typeJournal Article
Title(s)Feasibility of orbital friction stir welding on clad pipes of API X65 steel and Inconel 625
DOI10.48548/pubdata-1449
Handle20.500.14123/1518
CreatorAmavisca, Carla  0000-0003-1859-6466
Bergmann, Luciano  0000-0003-4085-1400
de Lima Lessa, Cleber Rodrigo  0000-0001-9426-2738
Schroeder, J. G.
Dornelles Ramos, Fabiano  0000-0002-8876-9986
Lemos, Guilherme Vieira Braga  0000-0002-2964-362X
Reguly, Afonso  0000-0002-4880-3780
Klusemann, Benjamin  0000-0002-8516-5087
AbstractOrbital friction stir welding (FSW) has been applied to clad pipes, which is certainly of interest to the oil and gas industry. In this context, an FSW system capable of performing sound joints in one pass with full tool penetration was developed. Orbital FSW was executed in 6 mm thick API X65 PSL2 steel clad pipes with 3 mm thick Inconel 625 using a polycrystalline cubic boron nitride (pcBN) tool. The metallurgical and mechanical properties of the joints were investigated. Sound joints with axial forces of 45–50 kN, tool rotational speeds of 400–500 rpm, and a welding speed of 2 mm/s were obtained, illustrating that the developed system can perform FSW joints without volumetric defects.
LanguageEnglish
KeywordsFeasibility; Friction; Metallurgy; Welding
Year of publication in PubData2024
Publishing typeParallel publication
Publication versionPublished version
Date issued2023-07-01
Creation contextResearch
Faculty / departmentFakultät Management und Technologie
NotesThis publication was funded by the German Research Foundation (DFG).
Date of Availability2024-11-12T09:27:40Z
Archiving Facility Medien- und Informationszentrum (Leuphana Universität Lüneburg  02w2y2t16)
Published byMedien- und Informationszentrum, Leuphana Universität Lüneburg
  Information regarding first publication
FieldValue
Resource typeJournal
Title of the resource typeScientific Reports
IdentifierDOI: 10.1038/s41598-023-37913-4
Publication year2023
Volume13
Issue1
Number10669
Number typeArticle
PublisherSpringer Nature
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