Design of stationary plane strain drawing based on the ideal flow theory and a fracture criterion
Author:
Publisher
Springer Science and Business Media LLC
Subject
Mechanical Engineering,Computational Mechanics
Link
http://link.springer.com/content/pdf/10.1007/s00707-007-0487-z.pdf
Reference21 articles.
1. Chung K. and Richmond O. (1992). Ideal forming, part II: Sheet forming with optimum deformation. Int. J. Mech. Sci. 34: 617–633
2. Chung K., Yoon J. W. and Richmond O. (2000). Ideal sheet forming with frictional constraints. Int. J. Plast. 16: 595–610
3. Richmond O. and Alexandrov S. (2000). Nonsteady planar ideal plastic flow: general and special analytical solutions. J. Mech. Phys. Solids 48: 1735–1759
4. Richmond O. and Alexandrov S. (2002). The theory of general and ideal plastic deformations of Tresca solids. Acta Mech. 158: 33–42
5. Richmond, O., Devenpeck, M. L.: A die profile for maximum efficiency in strip drawing. 4th U.S. National Congress Applied Mechanics, pp. 1053–1057. Berkeley 1962
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1. Ideal flow theory for the double – shearing model as a basis for metal forming design;IOP Conference Series: Materials Science and Engineering;2018-02
2. Fracture criterion on the basis of uniformity of plastic work of polycrystalline ductile materials under various stress states;Acta Mechanica;2016-04-06
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