Effect of vibration frequency and amplitude on formability in rotational vibration-assisted incremental sheet forming (RV-ISF)
Zhu, Hui and Peng, Wenxuan and Long, Hui; Araujo, Anna Carla and Cantarel, Arthur and Chabert, France and Korycki, Adrian and Olivier, Philippe and Schmidt, Fabrice, eds. (2024) Effect of vibration frequency and amplitude on formability in rotational vibration-assisted incremental sheet forming (RV-ISF). In: Material Forming. Materials Research Proceedings . Materials Research Forum, FRA, pp. 1559-1568. ISBN 9781644903131 (https://doi.org/10.21741/9781644903131-173)
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Abstract
Incremental sheet forming (ISF) is a flexible manufacturing process, potentially for producing small-batched and customized sheet products. To improve formability of hard-to-form materials, part surface finish and forming accuracy, the rotational vibration-assisted ISF (RV-ISF) has been developed by the University of Sheffield with the use of novel tool designs with either offsets or grooves on the tool surface to introduce both mechanical vibration and localized heating into the conventional ISF process (C-ISF). With the use of double-offset (T2) and four-groove (T4) tools in the experiments, this work studies the effects of tool design and tool rotational speed on sheet vibration amplitude and frequency, as well as their effects on forming temperature and force reduction and formability improvement. Results show that the sheet vibration amplitude is mainly influenced by the tool design, while the vibration frequency is affected by both tool design and rotational speed. RV-ISF with T4 shows greater material formability improvement of AA3003-O due to greater temperature rise and low-frequency-low-amplitude vibration. RV-ISF with T2 results in greater reduction of forming force because of the higher sheet vibration amplitude.
ORCID iDs
Zhu, Hui
ORCID: https://orcid.org/0000-0003-2310-9116, Peng, Wenxuan and Long, Hui;
Araujo, Anna Carla, Cantarel, Arthur, Chabert, France, Korycki, Adrian, Olivier, Philippe and Schmidt, Fabrice
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Item type: Book Section ID code: 94332 Dates: DateEvent24 April 2024Published23 February 2024AcceptedSubjects: Technology > Manufactures Department: Faculty of Engineering > Design, Manufacture and Engineering Management > National Manufacturing Institute Scotland Depositing user: Pure Administrator Date deposited: 03 Oct 2025 10:27 Last modified: 23 Jan 2026 19:53 URI: https://strathprints.strath.ac.uk/id/eprint/94332
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