Numerical Simulation of Combined Forward-Backward Extrusion

Author:

Grizelj Branko1,Plancak M.2,Barisic Branimir3

Affiliation:

1. University of Josip Juraj Strossmayer in Osijek

2. University of Novi Sad

3. University of Rijeka

Abstract

The paper analyses the process of simulation forward-backward extrusion. In metal forming industries, many products have to be formed in large numbers and with highly accurate dimensions. To save energy and material it is necessary to understand the behavior of material and to know the intermediate shapes of the formed parts and the mutual effects between tool and formed party during the forming process. These are normally based on numerical methods which take into account all physical conditions of the deformed material during the process. For this purpose, the finite element method has been developed in the past in different ways. The paper highlights the finite element simulation as a very useful technique in studying, where there is a generally close correlation in the load results obtained with finite elements method and those obtained experimentally.

Publisher

Trans Tech Publications, Ltd.

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

Reference16 articles.

1. Hill. R., New horizons in the mechanics of solids / J. Mech. Phys. Solids 5, 66, (1956).

2. Yamada Y. and Takatsuka K., Finite element analysis of nonlinear problems / J. Jap. Soc. Tech. Plasticity, 14, 758, (1973).

3. Larsen P. K., Large displacement analysis of shells of revolutions, including creep, plasticity and viscoplasticity / Ph. D. Thesis, University of California, Berkeley, (1971).

4. Needleman, A., Void growth in an elastic-plastic medium, Ph. D. Thesis, Harvard University, (1970).

5. McMeeking M. and Rice J. R., Finite element formulation for problems of large elastic-plastic deformation / Int. J. Solids Struc. 11, 601, (1975).

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