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Design and implementation of a digital infrastructure for autonomous open-die forging

creativeworkseries.issn2720-4081
dc.contributor.authorRechenberg, Roy
dc.contributor.authorKorpala, Grzegorz
dc.contributor.authorJabłońska, Magdalena
dc.contributor.authorWojtaszek, Marek
dc.contributor.authorZyguła, Krystian
dc.contributor.authorTkocz, Marek
dc.contributor.authorBednarczyk, Iwona
dc.contributor.authorKowalczyk, Karolina
dc.contributor.authorPrahl, Ulrich
dc.date.available2025-07-29T14:02:06Z
dc.date.issued2025
dc.description.abstractOpen-die forging is a key process for manufacturing large components such as generator shafts and crankshafts for ship engines. Despite its industrial relevance, the process remains dependent on manual labour and operator expertise, leading to challenges in process stability, reproducibility, and efficiency. Traditional automation approaches are impractical due to the high variability and low production volumes typical of open-die forging. At the Institute of Metal Forming (IMF) at the TU Bergakademie Freiberg, a novel concept for autonomous open-die forging has been developed and tested. The system combines conventional forging equipment with advanced technologies, including industrial robotics, 3D laser scanning, thermal imaging, and modular control software. Central to the concept is a robot cell operating as a distributed system, where sensor data is used to create a digital twin of the workpiece. This enables adaptive process planning and real-time autonomous operative adjustments. A process planning tool generates pass sequences and commands for manipulator movements, while an electromechanical interface allows indirect control of the forging press. The modular software architecture, coordinated by a central core-module, ensures flexibility and facilitates integration into different production environments. Initial trials demonstrate the system’s potential to improve process stability and quality while reducing dependency on manual operation. Ongoing work focuses on refining the concept to meet industrial requirements and support advanced material applications.en
dc.description.placeOfPublicationKraków
dc.description.versionwersja wydawnicza
dc.identifier.doihttps://doi.org/10.7494/cmms.2025.2.1018
dc.identifier.eissn2720-3948
dc.identifier.issn2720-4081
dc.identifier.urihttps://repo.agh.edu.pl/handle/AGH/114013
dc.language.isoeng
dc.publisherWydawnictwa AGH
dc.relation.ispartofComputer Methods in Materials Science
dc.rightsAttribution 4.0 International
dc.rights.accessotwarty dostęp
dc.rights.urihttps://creativecommons.org/licenses/by/4.0/legalcode
dc.subjectautomationen
dc.subjectforgingen
dc.subjectopen-die forgingen
dc.titleDesign and implementation of a digital infrastructure for autonomous open-die forgingen
dc.title.relatedComputer Methods in Materials Scienceen
dc.typeartykuł
dspace.entity.typePublication
publicationissue.issueNumberNo. 2
publicationissue.paginationpp. 5-15
publicationvolume.volumeNumberVol. 25
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relation.isAuthorOfPublicationa59f2d63-e673-4752-b9d0-91d475541e52
relation.isAuthorOfPublication.latestForDiscoveryb280d1cc-9b77-46b0-a947-b8e17ee92b5b
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