Uneingeschränkter Zugang

Experimental Analysis of Single Point Incremental Forming of Truncated Cones in DC04 Steel Sheet


Zitieren

1. Najm S.M., Paniti I., Experimental investigation on the single point incremental forming of AlMn1Mg1 foils using flat end tools, IOP Conference Series: Materials Science and Engineering, 448 (2018) 012032.Search in Google Scholar

2. McAnulty T., Jeswiet J., Doolan M., Formability in single point incremental forming: A comparative analysis of the state of the art, CIRP Journal of Manufacturing Science and Technology, 16 (2017) 43–54.Search in Google Scholar

3. Kumar A., Gulati V., Kumar P., Investigation of surface roughness in incremental sheet forming. Procedia Computer Science, 133 (2018) 1014–1020.Search in Google Scholar

4. Winiarski, G., Bulzak, T.A., Wójcik, Ł., Szala, M. A new method of flanges extrusion in hollow products–analysis of the limiting phenomena. Advances in Science and Technology. Research Journal, 14 (2020) 78-85.Search in Google Scholar

5. Kukuryk, M., Winczek, J., Gucwa, M. Analysis of deformation and microstructure evolution during the cogging process of Waspaloy alloy. MATEC Web of Conferences, 254 (2019) 02008.Search in Google Scholar

6. Peter I., Fracchia E., Canale I., Maiorano R., Incremental sheet forming for prototyping automotive modules. Procedia Manufacturing, 32 (2019) 50–58.Search in Google Scholar

7. Kurra S., Nasih H.R., Parametric study and multi-objective optimization in single-point incremental forming of extra deep drawing steel sheets. Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture, 5 (2015) 825–837.Search in Google Scholar

8. Powers B.M., Ham M., Wilkinson M.G., Small data set analysis in surface metrology: an investigation using a single point incremental forming case study. Scanning, 32 (2010) 199–211.Search in Google Scholar

9. Jagtab R., Kumar S., An experimental investigation on thinning and formability in hybrid incremental sheet forming process. Procedia Manufacturing, 30 (2019) 71–76.Search in Google Scholar

10. Li Y., Liu F., Xu C., Zhai W., Zhou L., Li F., Li J., Investigation of the Effect of Process Parameters on Energy Consumption in Incremental Sheet forming. Procedia CIRP, 80 (2019) 50–55.Search in Google Scholar

11. Slota, J., Krasowski, B., Kubit, A., Trzepiecinski, T., Bochnowski, W., Dudek, K., Neslušan, M., Residual stresses and surface roughness analysis of truncated cones of steel sheet made by single point incremental forming. Metals, 10 (2020) 237.Search in Google Scholar

12. Schmitz, R.U.C., Bremen, T., Bailly, D.B., Hirt, G.K.P., On the influence of the tool path and intrusion depth on the geometrical accuracy in incremental sheet forming. Metals, 10 (2020) 661.Search in Google Scholar

13. Gatea, S., Ou, H., McCartney, G., Review on the influence of process parameters in icremental sheet forming. International Journal of Advanced Manufacturing Technology 87 (2016) 479–499.Search in Google Scholar

14. Behera, A.K., de Sousa, R.A., Ingarao, G., Oleksik, V., Single point incremental forming: An assessment of the progress and technology trends from 2005 to 2015. Journal of Manufacturing Processes, 27 (2017) 37–62.Search in Google Scholar

15. Maqbool, F., Bambach, M., Dominant deformation mechanisms in single point incremental forming (SPIF) and their effect on geometrical accuracy. International Journal of Mechanical Scieces 136 (2018) 279–292.Search in Google Scholar

16. Li, Y., Chen, X., Liu, Z., Sun, J., Li, F., Li, J., Zhao, G., A review on the recent development of incremental sheet-forming process. International Journal of Advanced Manufacturing Technology, 92 (2017) 2439–2462.10.1007/s00170-017-0251-zSearch in Google Scholar

17. Göttmann A., Diettrich J., Bergweiler G., Bambach M., Hirt G., Loosen P., Poprawe R., Laser-assisted asymmtric incremental sheet forming of titanium sheet metal parts. Production Engineering, 5 (2011) 263–271.10.1007/s11740-011-0299-9Search in Google Scholar

18. Fu Z., Mo J., Han F., Gong P., Tool path correction algorithm for single-point incremental forming of sheet metal. International Journal of Advanced Manufacturing Technology, 64 (2013) 1239–1248.10.1007/s00170-012-4082-7Search in Google Scholar

19. Bambach M., Araghi B.T., Hirt G., Strategies to improve the geometric accuracy in asymmetric single point incremental forming. Production Engineering, 3, 2009, 145–156.10.1007/s11740-009-0150-8Search in Google Scholar

20. Kraner, J., Fajfar, P., Palkowski, H., Kugler, G., Godec, M., Paulin, I., Microstructure and texture evolution with relation to mechanical properties of compared symmetrically and asymmetrically cold rolled aluminum alloy. Metals, 10 (2020) 156.10.3390/met10020156Search in Google Scholar

21. Durante M., Formisano A., Langella A., Capece Minutolo F.M., The influence of tool rotation on an incremental forming process. Journal of Materials Processing Technology, 209 (2009) 4621–4626.10.1016/j.jmatprotec.2008.11.028Search in Google Scholar

22. Salem E., Shin J., Nath M., Banu M., Taub A.I., Investigation of thickness variation in single point incremental forming. Procedia Manufacturing, 5 (2016) 828–837.10.1016/j.promfg.2016.08.068Search in Google Scholar

eISSN:
2083-4799
Sprache:
Englisch
Zeitrahmen der Veröffentlichung:
4 Hefte pro Jahr
Fachgebiete der Zeitschrift:
Materialwissenschaft, Funktionelle und Intelligente Materialien