Optimum Process Parameters for Springback Reduction of Single Point Incrementally Formed Polycarbonate
Author:
Publisher
Elsevier BV
Subject
Artificial Intelligence,Industrial and Manufacturing Engineering
Reference23 articles.
1. Neveux, T., Roth, J.T., Ragai, I., 2016. Springback Induced in Single Point Incrementally Formed 2024-T3 Aluminum of Various Thicknesses. Proceedings of 2016 ASME International Manufacturing Science and Engineering Conference (MSEC2016), Paper No. MSEC2016-8805, Blacksburg, VA, USA, June 27 - July 1, 2016, Accepted.
2. Strategies to improve the geometric accuracy in asymmetric single point incremental forming;Bambach;Production Engineering,2009
3. Ruszkiewicz, B.J. Scriva, C., Reese, Z.C. Nikhare, C.P., Roth, J.T. and Ragai, I., 2015. Direct Electric Current Spot Treatment's Effect on Springback of 90 Degree Bent 2024-T3 Aluminum. Preceedings of the 10th Int. Conference on Manufacturing Science and Engineering: n. pg. 1-7. Charlotte, NC, USA.
4. Grimm, T., Roth, J.T., & Ragai, I., 2016. Electrically assisted global springback elimination in AMS-T- 9046 titanium after single point incremental forming. Proceedings of 2016 ASME International Science and Engineering Conference.
5. Neveux, T., Ruszkiewicz, B., Roth, J.T., Ragai, I. 2016. Electrically Assisted Global Springback Elimination After Single Point Incremental Forming. Proceedings of 2016 ASME International Manufacturing Science and Engineering Conference (MSEC2016), Paper No. MSEC2016-8813, Blacksburg, VA, USA, June 27 - July 1, 2016, Accepted.
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