48
G. Li et al.
4. Zhang, Z., Wu, J., Liang, B., Wang, M., Yang, J., Muzamil, M.: A new strategy for acquiring
the forming parameters of a complex spatial tube product in free bending technology. J. Mater.
Process. Technol. 282, 116662 (2020)
5. Estler, W.T., Edmundson, K.L., Peggs, G.N., Parker, D.H.: Large-scale metrology—an update.
CIRP Ann. Manuf. Technol. 51(2), 587–609 (2002)
6. Peggs, G.N., Maropoulos, P.G., Hughes, E.B., Forbes, A.B., Robson, S., Ziebart, M., Muralikrishnan, B.: Recent developments in large-scale dimensional metrology. Proc. Inst. Mech.
Eng. Part B J. Eng. Manuf. 223(6), 571–595 (2009)
7. Taekwang, H., Jun, M., Jørgen, B., Torgeir, W., Geir, R., Jyhwen, W.: In-line springback
measurement for tube bending using a laser system. Procedia Manuf. 47, 766–773 (2020)
8. Zhang, D., Li, Y., Liu, J., Xie, G., Su, E.: A novel 3D optical method for measuring and
evaluating springback in sheet metal forming process. Measurement 92, 303–317 (2016)
9. Katona, S., Luši´ c, M., Koch, M., Wartzack, S.: Integrating optical 3D measurement techniques
in pipe bending: a model-based approach minimizing waste by deriving real functional design
behavior. Procedia CIRP 50, 808–812 (2016)
10. Singh, P., Pungotra, H., Kalsi, N.S.: On the characteristics of titanium alloys for the aircraft
applications. Mater Today: Proc 4(8), 8971–8982 (2017)
11. Devezas, T.: Trends in aviation: rebound effect and the struggle composites x aluminum.
Technol. Forecast. Soc. Chang. 160, 120241 (2020)
12. Li, H., Yang, H., Lu, R.D., Fu, M.W.: Coupled modeling of anisotropy variation and damage
evolution for high strength steel tubular materials. Int. J. Mech. Sci. 105, 41–57 (2016)
13. Jiang, Y.M., Zhang, J., Zhao, H.Y., Ou, J.X., Liu, S.L.: The digital metrology for aircraft welded
tube based on the articulated arm coordinate measuring machine. Mach. Des. Manuf. Eng. (1),
71–74 (2020)
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