Authors | Sa'id Golabi, Hossein Khazaali |
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Journal | Journal of Mechanical Science and Technology |
Presented by | University of Kashan |
Page number | 3273-3278 |
Serial number | 8 |
Volume number | 28 |
Paper Type | Full Paper |
Published At | 2014-8-01 |
Journal Grade | Scientific - research |
Journal Type | Typographic |
Journal Country | Korea |
Journal Index | ISI |
Abstract
Nowadays incremental forming is more popular because of its flexibility and cost saving. However, no engineering data is available for manufacturers for forming simple shapes like a frustum by incremental forming, and either expensive experimental tests or finite element analysis (FEA) should be employed to determine the depth of a frustum considering: thickness, material, cone diameter, wall angle, feed rate, tool diameter, etc. In this study, finite element technique, confirmed by experimental study, was employed for developing applicable curves for determining the depth of frustums made from 304 stainless steel (SS304) sheet with various cone angles, thicknesses from 0.3 to 1 mm and major diameters from 50 to 200 mm using incremental forming. Using these curves, the frustum angle and its depth knowing its thickness and major diameter can be predicted. The effects of feed rate, vertical pitch and tool diameter on frustum depth and surface quality were also addressed in this study