JOINING ZONE EVALUATION OF HYBRID SEMI-FINISHED PRODUCTS AFTER BACKWARD CAN EXTRUSION

1 BEHRENS Bernd-Arno
Co-authors:
1 UHE Johanna 1 PETERSEN Tom 1 DEMTER Phil 1 BÜDENBENDER Christoph 1 ROSS Ingo
Institution:
1 Institute of Forming Technology and Machines, Leibniz University Hannover, Garbsen, Germany, EU, behrens@ifum.uni-hannover.de, uhe@ifum.uni-hannover.de, petersen@ifum.uni-hannover.de, phil.demter@stud.uni-hannover.de, buedenbender@ifum.uni-hannover.de, Correspondence: ross@ifum.uni-hannover.de
Conference:
30th Anniversary International Conference on Metallurgy and Materials, Brno, Czech Republic, EU, May 26 - 28, 2021
Proceedings:
Proceedings 30th Anniversary International Conference on Metallurgy and Materials
Pages:
317-322
ISBN:
978-80-87294-99-4
ISSN:
2694-9296
Published:
15th September 2021
Proceedings of the conference have already been published in Scopus and we are waiting for evaluation and potential indexing in Web of Science.
Metrics:
650 views / 479 downloads
Abstract

As a result of the general need for lightweight product design, multi-material systems are gaining in importance. In addition to reducing component weight, the combination of different materials in a single component allows other properties to be locally tailored to its application. This topic is the aim of research within the Collaborative Research Centre (CRC) 1153 “Tailored Forming”, which investigates the entire process chain for the production of hybrid components from previously joined workpieces. One of the main focal points is the investigation of the joining zone development of steel-aluminium products (20MnCr5 – EN AW-6082) during friction welding and further processing in different forming processes.The overall strength of the multi-material component is determined by joint strength. In order to improve the properties of the joining zone by thermomechanical treatment, a backward can (BC) extrusion process was utilized. This work addresses both, the simulative design as well as the implementation of heating and forming processes for BC extrusion. The joint interface of the hybrid components was analysed and a qualitative evaluation was carried out using metallographic images. The simulation results were validated and an effect on the joining zone trough BC extrusion could be achieved.

Keywords: Tailored forming, backward can extrusion, hybrid components, forging simulation

© This is an open access article distributed under the Creative Commons Attribution License which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.

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