NEW FORMULATION OF GENERALIZED VELOCITY FIELD FOR AXISYMMETRIC FORWARD EXTRUSION THROUGH ARBITRARILY CURVED DIES.

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A new analytic method is proposed for estimating the extrusion pressure, the final effective strain of the extruded billet, and the grid distortion patterns in axisymmetric forward extrusion through arbitrarily curved dies. A generalized kinematically admissible velocity field is derived to formulate an upper-bound solution. The corresponding upper-bound extrusion pressure is then obtained by optimizing the process parameters. The effects of area reduction, frictional condition, die length, and the die profile are discussed in relation to the extrusion pressure, the distorted grid pattern, and distribution of the final effective strain on the cross-section of the extruded billet. In the computation a biquadratic polynomial is chosen for the die profile. The work-hardening effect is incorporated in the formulation. Experiments are carried out for AISI 4140 steel billets at room temperature.
Publisher
American Society of Mechanical Engineers(ASME)
Issue Date
1987-05
Language
English
Citation

JOURNAL OF ENGINEERING FOR INDUSTRY, v.109, no.2, pp.161 - 168

ISSN
0022-0817
URI
http://hdl.handle.net/10203/64417
Appears in Collection
ME-Journal Papers(저널논문)
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