Single Point Incremental Forming (SPIF) is an advanced and flexible sheet metal forming process that enables the production of complex geometries without the need for dedicated dies. This study investigates the application of SPIF to aluminum alloy AA1050-O using a novel sandwich configuration incorporating a sacrificial sheet placed above a skin sheet. The proposed configuration aims to improve surface quality, reduce thinning and minimize springback during forming. To evaluate the process, 2 4 full factorial design with 4 center points (L20) as implemented from the outset. A Design of Experiments (DOE) and Artificial Neural Network (ANN) approach were employed to evaluate the influence of four key process parameters; feed rate (V f ), tool diameter (D p ), vertical increment (Z), and sacrificial sheet thickness (E tm ), on three critical quality responses: surface roughness (Ra), final thickness (EP), and springback (RE). Analysis of Variance (ANOVA) was conducted to identify statistically significant
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