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Investigation of the Robotized Incremental Metal-Sheet Forming Process with Ultrasonic Excitation

Vytautas Ostaševičius, Agnė Paulauskaitė-Tarasevičienė, Ieva Paleviciute, Vytautas Jūrėnas, Paulius Griškevičius, Darius Eidukynas, Laura Kižauskienė

Year
2022
Citations
5
Access
Open access

Abstract

During the single-point incremental forming (SPIF) process, a sheet is formed by a locally acting stress field on the surface consisting of a normal and shear component that is strongly affected by friction of the dragging forming tool. SPIF is usually performed under well-lubricated conditions in order to reduce friction. Instead of lubricating the contact surface of the sheet metal, we propose an innovative, environmentally friendly method to reduce the coefficient of friction by ultrasonic excitation of the metal sheet. By evaluating the tool-workpiece interaction process as non-linear due to large deformations in the metal sheet, the finite element method (FEM) allows for a virtual evaluation of the deformation and piercing parameters of the SPIF process in order to determine destructive loads.

Keywords

Materials scienceSheet metalFinite element methodForming processesComposite materialIncremental sheet formingProcess (computing)Shear (geology)Deformation (meteorology)Friction coefficient

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