1. Zhan M, Yang H, Guo J et al (2015) Review on hot spinning for difficult-to-deform lightweight metals. Trans Nonferrous Met Soc China 25:1732–1743 2. Li Y, Daniel WJT, Liu Z et al (2015) Deformation mechanics and efficient force prediction in single point incremental forming. J Mater Process Tech 221:100–111 3. Oleksik V, Trzepiecinski T, Szpunar M et al (2021) Single-point incremental forming of titanium and titanium alloy sheets. Materials 14(21):6372. https://doi.org/10.3390/ma14216372 4. Ambrogio G, Filice L, Gagliardi F (2012) Formability of lightweight alloys by hot incremental sheet forming. Mater Des 34:501–508 5. Semiatin SL (1997) The thermomechanical processing of alpha/beta titanium alloys. JOM 49:33–39 6. Kumar P, Tandon P (2021) Process capabilities of commercially pure titanium grade 2 formed through warm incremental sheet forming. Proc I Mec E Part B 235:1779–1789 7. Duflou JR, Callebaut B, Verbert J et al (2007) Laser assisted incremental forming: formability and accuracy improvement. CIRP Ann 56:273–276 8. Duflou JR, Callebaut B, Verbert J et al (2008) Improved SPIF performance through dynamic local heating. Int J Mach Tool Manu 48:543–549 9. Hino R, Kawabata K, Yoshida F (2014) Incremental forming with local heating by laser irradiation for magnesium alloy sheet. Procedia Eng 81:2330–2335 10. Palumbo G, Brandizzi M (2012) Experimental investigations on the single point incremental forming of a titanium alloy component combining static heating with high tool rotation speed. Mater Des 40:43–51 11. Fan G, Gao L (2014) Mechanical property of Ti-6Al-4V sheet in one-sided electric hot incremental forming. Int J Adv Manuf Tech 72:989–994 12. Kim SW, Lee YS, Kang SH et al (2007) Incremental forming of Mg alloy sheet at elevated temperatures. J Mech Sci Technol 21:1518–1522 13. Ambrogio G, Filice L, Manco GL (2008) Warm incremental forming of magnesium alloy AZ31. CIRP Ann 57:257–260 14. Ji YH, Park JJ (2008) Formability of magnesium AZ31 sheet in the incremental forming at warm temperature. J Mater Process Tech 201:354–358 15. Liu Z (2018) Heat-assisted incremental sheet forming: a state-of-the-art review. Int J Adv Manuf Tech 98:2987–3003 16. Xu T, Wang S, Wang W et al (2020) Multimodal grain structure and tensile properties of cold-rolled titanium after short-duration annealing. Mater Charact 160:110095. https://doi.org/10.1016/j.matchar.2019.110095 17. Song X, Wang L, Wang R et al (2022) Effects of annealing on microstructure evolution and mechanical properties of constrained groove pressed pure titanium. Mater Sci Eng A 831:142245. https://doi.org/10.1016/j.msea.2021.142245 18. Mohammadi A, Qin L, Vanhove H et al (2016) Single point incremental forming of an aged Al-Cu-Mg alloy: influence of pre-heat treatment and warm forming. J Mater Eng Perform 25:2478–2488 19. Ghaferi M, Mirnia MJ, Elyasi M et al (2019) Evaluation of different heat treatment cycles on improving single point incremental forming of AA6061 aluminum alloy. Int J Adv Manuf Tech 105:83–100 20. Hussain G, Gao L, Zhang ZY (2007) Formability evaluation of a pure titanium sheet in the cold incremental forming process. Int J Adv Manuf Tech 37:920–926 21. Formisano A, Durante M, Boccarusso L et al (2017) The influence of thermal oxidation and tool-sheet contact conditions on the formability and the surface quality of incrementally formed grade 1 titanium thin sheets. Int J Adv Manuf Tech 93:3723–3732 22. Behera AK, Ou H (2016) Effect of stress relieving heat treatment on surface topography and dimensional accuracy of incrementally formed grade 1 titanium sheet parts. Int J Adv Manuf Tech 87:3233–3248 23. Khan S, Hussain G, Ilyas M et al (2018) Appropriate heat treatment and incremental forming route to produce age-hardened components of Al-2219 alloy with minimized form error and high formability. J Mater Process Tech 256:262–273 24. Shakir G, Chen F, Long Het al et al (2017) Deformation and fracture of AMC under different heat treatment conditions and its suitability for incremental sheet forming. Procedia Eng 207:848–853 25. Taylor GI (1934) The mechanism of plastic deformation of crystals. Part I. Theoretical. Proc Roy Soc A 145:362–387 26. Broek D (1982) Elementary engineering fracture mechanics. Springer, Dordrecht 27. Hussain G, Gao L, Hayat N et al (2008) Tool and lubrication for negative incremental forming of a commercially pure titanium sheet. J Mater Process Tech 203:193–201 |