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- W2768756031 abstract "The potential of the SPIF process is known for applications that involve titanium alloys, but the main drawback of this material is its poor formability. Some authors have established that formability improves when performing a process with applied heat, but very few studies on this matter exist. For this reason, a support was developed to allow us to heat sheets and to monitor the forces that come into play during the process. Different forming tests were run with variable angle wall pieces with 0.8-mm thick Ti6Al4V sheet with spherical CW and hardened steel tools. Tests were simulated with ANSYS® Workbench using an implicit solver. The material’s plastic behaviour was modelled by several procedures using the data obtained from experimental hot tensile assays. The increase in formability with temperature was experimentally checked and evaluated in terms of the maximum achieved wall angle. The force required to run the process with temperature also lowered. Although the computing times were long, a good agreement was reached between the experimental results obtained and the simulation ones. Checks were made that severe ploughing, combined with adhesions and removal of material, existed and affected the sheet’s surface finish. The forming temperature did not decisively affect surface finish. The methodology developed herein allows industrial Ti6Al4V parts to be made and optimises the benefits of heated processes." @default.
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- W2768756031 date "2017-01-01" @default.
- W2768756031 modified "2023-10-07" @default.
- W2768756031 title "Influence of temperature on alloy Ti6Al4V formability during the warm SPIF process" @default.
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- W2768756031 doi "https://doi.org/10.1016/j.proeng.2017.10.843" @default.
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