Uneingeschränkter Zugang

Numerical Study of a Variable Wall Angle Made of DC01 Steel by Incremental Forming Process

, ,  und   
07. Jan. 2023

Zitieren
COVER HERUNTERLADEN

1. Kurra, S., Regalla, S. P., Experimental and numerical studies on formability of extra-deep drawing steel in incremental sheet metal forming, Journal of Materials Research and Technology, 3, pp. 158 – 171 (2014)10.1016/j.jmrt.2014.03.009 Search in Google Scholar

2. Oleksik, Valentin., Influence of geometrical parameters, wall angle and part shape on thickness reduction of single point incremental forming, Procedia Engineering Elsevier, No.81, pp. 2280-2285, (2014).10.1016/j.proeng.2014.10.321 Search in Google Scholar

3. Racz, Sever., Breaz, Radu., Tera, Melania., Gîrjob, Claudia., Biriș, Cristina., Chicea, Anca., Incremental Forming of Titanium Ti6Al4V Alloy for Cranioplasty Plates – Decision-Making Process and Technological Approches, Metals, 8, pp. 626, (2018).10.3390/met8080626 Search in Google Scholar

4. Blaga, Adrian., Oleksik, Valentin., A study on the influence of the forming strategy on the main strains, thickness reduction, and forces in a single point incremental forming process, Advances in Materials Science and Engineering, (2013)10.1155/2013/382635 Search in Google Scholar

5. Oleksik, Valentin., Pascu, Adrian., Mara, Daniel., Bologa, Octavian., Racz, Gabriel., Breaz, Radu., Influence of geometric parameters on strain and thickness reduction in incremental forming process, Met Form, pp. 8-15, (2010) Search in Google Scholar

6. Bârsan, A., A Brief Review of Robotic Machining, Acta Universitatis Cibiniensis,71 (2019)10.2478/aucts-2019-0003 Search in Google Scholar

Sprache:
Englisch
Zeitrahmen der Veröffentlichung:
1 Hefte pro Jahr
Fachgebiete der Zeitschrift:
Technik, Elektrotechnik, Automatisierungstechnik, Maschinenbau, Fertigung, Verfahrenstechnik