This paper describes the analysis of continuous magnetic field-assisted double-sided incremental forming (M-DSIF), a derivation of magnetic field-assisted single-point incremental forming (M-SPIF). In M-DSIF, the driving magnet remains in contact with the workpiece and does not allow for relaxation between individual steps (called contours). M-DSIF enables forming of truncated cones much faster and more accurately than M-SPIF. The number of revolutions per contour of the tool greatly impacts the resulting shape. The proposed two-step M-DSIF is a viable option for distributing material from the center toward the corners of the cone base, which minimizes localized strain in the corners.
Enos H.R., Navarrete E., Buffa G., Fratini L., Yamaguchi H. (2024). Analysis of continuous magnetic field-assisted double-sided incremental forming. CIRP - JOURNAL OF MANUFACTURING SCIENCE AND TECHNOLOGY, 55, 81-87 [10.1016/j.cirpj.2024.09.004].
Analysis of continuous magnetic field-assisted double-sided incremental forming
Buffa G.;Fratini L.;
2024-01-01
Abstract
This paper describes the analysis of continuous magnetic field-assisted double-sided incremental forming (M-DSIF), a derivation of magnetic field-assisted single-point incremental forming (M-SPIF). In M-DSIF, the driving magnet remains in contact with the workpiece and does not allow for relaxation between individual steps (called contours). M-DSIF enables forming of truncated cones much faster and more accurately than M-SPIF. The number of revolutions per contour of the tool greatly impacts the resulting shape. The proposed two-step M-DSIF is a viable option for distributing material from the center toward the corners of the cone base, which minimizes localized strain in the corners.File | Dimensione | Formato | |
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