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2015 | OriginalPaper | Chapter

6. Tensile Electroforming Model

Authors : Wesley A. Salandro, Joshua J. Jones, Cristina Bunget, Laine Mears, John T. Roth

Published in: Electrically Assisted Forming

Publisher: Springer International Publishing

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Abstract

This chapter contains modeling work for sheet metal subject to an applied direct electrical current in uniaxial tension. The modeling is divided into a thermal and mechanical approach which is combined to a thermo-mechanical model to predict the deformation behavior during EAF.

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Literature
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go back to reference Jones JJ, Mears L (2013) Thermal response modeling of sheet metals in uniaxial tension during electrically-assisted forming. J Manuf Sci Eng 132:021011-1–021011-11 Jones JJ, Mears L (2013) Thermal response modeling of sheet metals in uniaxial tension during electrically-assisted forming. J Manuf Sci Eng 132:021011-1–021011-11
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go back to reference Salandro WA, Khalifa A, Roth JT (2009) Tensile formability enhancement of magnesium AZ31B–O alloy using electrical pulsing. Trans North Am Manuf Res Inst SME 37:387–394 Salandro WA, Khalifa A, Roth JT (2009) Tensile formability enhancement of magnesium AZ31B–O alloy using electrical pulsing. Trans North Am Manuf Res Inst SME 37:387–394
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go back to reference International Magnesium Association (1998) McLean, VA, and MIL-HDBK-5H, 1 Dec 1998, pp 4–11 International Magnesium Association (1998) McLean, VA, and MIL-HDBK-5H, 1 Dec 1998, pp 4–11
Metadata
Title
Tensile Electroforming Model
Authors
Wesley A. Salandro
Joshua J. Jones
Cristina Bunget
Laine Mears
John T. Roth
Copyright Year
2015
DOI
https://doi.org/10.1007/978-3-319-08879-2_6

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