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Effect of Process Parameters in Electromagnetic Forming Apparatus on Forming Load by FEM

Hak Gon Noh, Hyeong Gyu Park, Woo Jin Song, Beom Soo Kang, Jeong Kim
JKSPE 2013;30(7):733-740.
Published online: July 1, 2013
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The high-velocity electromagnetic forming (EMF) process is based on the Lorentz force and the energy of the magnetic field. The advantages of EMF include improved formability, wrinkle reduction, and non-contact forming. In this study, numerical simulations were conducted to determine the practical parameters for the EMF process. A 2-D axis-symmetric electromagnetic model was used, based on a spiral-type forming coil. In the numerical simulation, an RLC circuit was coupled to the spiral coil to measure various design parameters, such as the system input current and the electromagnetic force. The simulation results show that even though the input peak current levels were at the same level in each case, the forming condition varied due to differences in the frequency of the input current. Thus, the electromagnetic forming force was affected by the input current frequency, which in turn, determined the magnitude of the current density and the magnetic flux density.

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Effect of Process Parameters in Electromagnetic Forming Apparatus on Forming Load by FEM
J. Korean Soc. Precis. Eng.. 2013;30(7):733-740.   Published online July 1, 2013
Download Citation

Download a citation file in RIS format that can be imported by all major citation management software, including EndNote, ProCite, RefWorks, and Reference Manager.

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Effect of Process Parameters in Electromagnetic Forming Apparatus on Forming Load by FEM
J. Korean Soc. Precis. Eng.. 2013;30(7):733-740.   Published online July 1, 2013
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