Electrically Assisted Forming

Modeling and Control

Nonfiction, Science & Nature, Technology, Manufacturing
Cover of the book Electrically Assisted Forming by Cristina Bunget, Laine Mears, Wesley A. Salandro, Joshua J. Jones, John T. Roth, Springer International Publishing
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Author: Cristina Bunget, Laine Mears, Wesley A. Salandro, Joshua J. Jones, John T. Roth ISBN: 9783319088792
Publisher: Springer International Publishing Publication: August 16, 2014
Imprint: Springer Language: English
Author: Cristina Bunget, Laine Mears, Wesley A. Salandro, Joshua J. Jones, John T. Roth
ISBN: 9783319088792
Publisher: Springer International Publishing
Publication: August 16, 2014
Imprint: Springer
Language: English

Maximizing reader insights into the latest research findings and applications of Electrically-Assisted Forming (EAF) – whereby metals are formed under an electric current field – this book explains how such a process produces immediate improved formability of metals beyond the extent of thermal softening, and allows metals to be formed to greater elongation with lower mechanical energy as well as allowing for lightweight brittle metals such as magnesium and titanium to be formed without external heating or annealing, enabling the more effective use of these lightweight metals in design.

Including case studies that illustrate and support the theoretical content and real-world applications of the techniques discussed, this book also serves to enrich readers understanding of the underlying theories that influence electro-plastic behaviour.

The authors have extensive experience in studying Electrically-Assisted Forming and have written extensively with publications including experimental works, technical briefs, conference proceedings, journal articles, and analytical models.

View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart

Maximizing reader insights into the latest research findings and applications of Electrically-Assisted Forming (EAF) – whereby metals are formed under an electric current field – this book explains how such a process produces immediate improved formability of metals beyond the extent of thermal softening, and allows metals to be formed to greater elongation with lower mechanical energy as well as allowing for lightweight brittle metals such as magnesium and titanium to be formed without external heating or annealing, enabling the more effective use of these lightweight metals in design.

Including case studies that illustrate and support the theoretical content and real-world applications of the techniques discussed, this book also serves to enrich readers understanding of the underlying theories that influence electro-plastic behaviour.

The authors have extensive experience in studying Electrically-Assisted Forming and have written extensively with publications including experimental works, technical briefs, conference proceedings, journal articles, and analytical models.

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