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Titlebook: Electrically Assisted Forming; Modeling and Control Wesley A. Salandro,Joshua J. Jones,John T. Roth Book 2015 Springer International Publis

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Deformation of Metals,metal refinement in ancient times to shape tools and other functional parts. With the dawn of the second Industrial Age, the availability of localized power sources allowed for the development of more standardized automated processes for metal deformation, such as forging, stamping, drawing, and ext
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Compressive Electrically Assisted Forming Model,itivities and relationships within the EAF process. A modeling strategy will be defined, based on existing conventional forging equations. These equations will then be modified to account for the electroplastic effect in an EAF process.
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Control of Electrically Assisted Forming,strated and potential applications for these control schemes are discussed. The specific examples where closed-loop control is used to determine the process output are for constant force forming, constant stress forming, and constant current density (CCD) forming. Last, the feasibility toward model-
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Design of an Electrically Assisted Manufacturing Process,ffect on deformation process forces, power, and resultant microstructure. In this chapter, we aim to explore the feasibility of implementing EAM on a commercial scale, primarily specific design requirements, cost, and sustainability impact on the manufacturing system as a whole.
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Applications of Electrically Assisted Manufacturing,ing effects from the direct electrical effects and thus produce temperature and force profiles for their respective processes. However, in the real world, manufacturing processes are rarely exclusively compression or tension. Therefore, within this chapter, manufacturing processes that can be applic
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Wesley A. Salandro,Joshua J. Jones,John T. RothMaximizing 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 ho
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