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Electrically Assisted Forming: Modeling and Control: Springer Series in Advanced Manufacturing

Autor Wesley A. Salandro, Joshua J. Jones, Cristina Bunget, Laine Mears, John T. Roth
en Limba Engleză Hardback – 27 aug 2014
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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Specificații

ISBN-13: 9783319088785
ISBN-10: 3319088785
Pagini: 374
Ilustrații: XIX, 355 p. 337 illus.
Dimensiuni: 155 x 235 x 27 mm
Greutate: 0.7 kg
Ediția:2015
Editura: Springer International Publishing
Colecția Springer
Seria Springer Series in Advanced Manufacturing

Locul publicării:Cham, Switzerland

Public țintă

Research

Cuprins

Introduction to Electrically-Assisted Forming.- Bulk Modeling Methodology for Electrically-Assisted Manufacturing.- The Electroplastic Effect.- Comprehensive EAF Modeling.- Experimental Findings for EAF.- Contact Effects of EAF.- Microstructural Effects on EAF.- Phase distribution Effects on EAF.- Analysis of EAF Modeling Sensitivity and Robustness.- Broader Impacts of EAF.- Tooling design considerations.- Additional Applications of Electrically-Assisted Manufacturing (EAM).- Control design for Electrically-Assisted Forming.- Cost and Energy Analysis.

Notă biografică

The majority of content generated for this book comes from research carried out by the authors at Clemson University-International Center for Automotive Engineering in South Carolina, USA and Pennsylvania State University, USA. The book describes a new manufacturing technique for metal forming with the potential to save time and energy, and to enable the more effective use of lightweight metals in design.

Textul de pe ultima copertă

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 on the topic with publications including experimental works, technical briefs, conference proceedings, journal articles, and analytical models.

Caracteristici

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 Includes case studies that illustrate and support the theoretical content and to explain real-world applications of the techniques discussed Contains supplementary material on the underlying theories describing electroplastic behaviour Includes supplementary material: sn.pub/extras