Izenburua
Post-forming, electro-plastic effect internal stress reduction in AA5754 aluminium alloyBeste instituzio
Aalto University (Finland)Bertsioa
Bertsio argitaratua
Eskubideak
© 2022 The AuthorsSarbidea
Sarbide irekiaArgitaratzailearen bertsioa
https://doi.org/10.1016/j.msea.2022.143686Non argitaratua
Materials Science & Engineering A Vol. 852. Article 143686. September, 2022Argitaratzailea
ElsevierGako-hitzak
Springback
AA5754
Electro-plastic effect
EPE ... [+]
AA5754
Electro-plastic effect
EPE ... [+]
Springback
AA5754
Electro-plastic effect
EPE
Stamping
Deep drawing [-]
AA5754
Electro-plastic effect
EPE
Stamping
Deep drawing [-]
Laburpena
Aluminium alloys are one of the most efficient materials for weight reduction in the car industry. However, the favourable performance of alloys conflicts with the difficulties of transforming these m ... [+]
Aluminium alloys are one of the most efficient materials for weight reduction in the car industry. However, the favourable performance of alloys conflicts with the difficulties of transforming these materials through plastic deformation processes such as stamping. Among the different issues, they are characterised by a high springback effect. Numerous authors have explored the use of the electro-plastic effect (EPE) to mitigate internal stresses and the resultant springback. However, up-scaling existing laboratory solutions to an industrial framework is a critical challenge. Therefore, in this work, the post-forming electro-plastic effect (PFEPE) is explored in AA5754 material. Stress-relaxation + PFEPE experiments were conducted using different electric pulse charge passing though the sample, and, apart from the impact on residual stresses, the potential occurrence of recrystallisation was evaluated. The results indicate that a range of pulses exists (>2000 A·ms/mm2 and <4500 A ms/mm2) in which a 10–30% reduction in stresses can be achieved without critically impacting the material's mechanical performance. [-]
Sponsorship
Gobierno Vasco-Eusko JaurlaritzaProjectu ID
info:eu-repo/grantAgreement/GV/Investigación Básica y Aplicada/PI2017-47/CAPV/Reducción de springback mediante Post Forming Electro Plastic Effect/POSTELECBildumak
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