Force, torque and plastic flow analysis in rotary upsetting of ring shaped billets

The orbital upsetting of rings has been analysed for a Mises material by using an upper bound approach. Forging forces, rocking die torques and ring profiles are calculated at each step of the process. Experiments are described in which rings made of 1045 mild steel, 52100 chromium alloyed steel and...

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Veröffentlicht in:International journal of mechanical sciences 1985, Vol.27 (11), p.761-780
Hauptverfasser: Oudin, J., Ravalard, Y., Verwaerde, G., Gelin, J.C.
Format: Artikel
Sprache:eng
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Zusammenfassung:The orbital upsetting of rings has been analysed for a Mises material by using an upper bound approach. Forging forces, rocking die torques and ring profiles are calculated at each step of the process. Experiments are described in which rings made of 1045 mild steel, 52100 chromium alloyed steel and 316 stainless steel are upset at room temperature on a 1.6 MN rotary press. The main parameters are: orbital oscillation angle, 2°, upper die oscillations, 200 min −1 and lower die speed, 4.10 mm s −1. An experimental rocking die placed on a conventional testing machine has been used for the rotary upsetting of rings made of Plasticine as model material. The simulation parameters are: oscillation, 2°, upper die oscillations, 40 min −1, speed, 98.4 mm min −1. The theoretical values of forging forces, rocking torques, and ring profiles are in keeping with the experiments. So the proposed upper bound approach may be considered as a good model for rotary upsetting.
ISSN:0020-7403
1879-2162
DOI:10.1016/0020-7403(85)90008-6