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Sheet Metal Forming Processes: Constitutive Modelling and Numerical Simulation

✍ Scribed by Dorel Banabic (auth.)


Publisher
Springer-Verlag Berlin Heidelberg
Year
2010
Tongue
English
Leaves
318
Edition
1
Category
Library

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✦ Synopsis


The book gives a synthetic presentation of the research performed in the field of sheet metal forming simulation during more than twenty years by the members of three teams: the Research Centre on Sheet Metal Forming – CERTETA (Technical University of Cluj-Napoca, Romania); AUTOFORM software-house company from ZΓΌrich, Switzerland and VOLVO automotive company from Sweden.

The first chapter reminds some fundamental topics of the theory of plasticity. A more extended chapter is devoted to the presentation of the phenomenological yield criteria, emphasizing the formulations proposed by the CERTETA team (BBC models). The sheet metal formability is discussed in a separate chapter. After presenting the methods used for the formability assessment, the discussion focuses on the forming limit curves. In this context, the authors emphasize their contributions to the mathematical modeling of forming limit curves. The aspects related to the implementation of the constitutive models in finite-element codes are discussed in the last chapter of the book. The performances of the models are proved by the numerical simulation of various sheet metal forming processes: hydroforming, deep-drawing and forming of the complex parts. The book is useful for the students, doctoral fellows, researchers and engineers who are mainly interested in the mechanical modeling and numerical simulation of sheet metal forming processes.

✦ Table of Contents


Front Matter....Pages i-xv
FE-Models of the Sheet Metal Forming Processes....Pages 1-25
Plastic Behaviour of Sheet Metal....Pages 27-140
Formability of Sheet Metals....Pages 141-211
Numerical Simulation of the Sheet Metal Forming Processes....Pages 213-295
Back Matter....Pages 297-301

✦ Subjects


Operating Procedures, Materials Treatment; Continuum Mechanics and Mechanics of Materials; Metallic Materials; Computational Intelligence


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