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2009 International Joint Conference on Artificial Intelligence
Simulation of Mechanics Properties in Rolling Process for H-beam
Hainan Island, China
April 25-April 26
ISBN: 978-0-7695-3615-6
| ASCII Text | x | ||
| Xianzhang Feng, Junwei Cheng, Yanmei Cui, Cai Liu, Junhui Li, "Simulation of Mechanics Properties in Rolling Process for H-beam," Artificial Intelligence, International Joint Conference on, pp. 719-722, 2009 International Joint Conference on Artificial Intelligence, 2009. | |||
| BibTex | x | ||
| @article{ 10.1109/JCAI.2009.84, author = {Xianzhang Feng and Junwei Cheng and Yanmei Cui and Cai Liu and Junhui Li}, title = {Simulation of Mechanics Properties in Rolling Process for H-beam}, journal ={Artificial Intelligence, International Joint Conference on}, volume = {0}, year = {2009}, isbn = {978-0-7695-3615-6}, pages = {719-722}, doi = {http://doi.ieeecomputersociety.org/10.1109/JCAI.2009.84}, publisher = {IEEE Computer Society}, address = {Los Alamitos, CA, USA}, } | |||
| RefWorks Procite/RefMan/Endnote | x | ||
| TY - CONF JO - Artificial Intelligence, International Joint Conference on TI - Simulation of Mechanics Properties in Rolling Process for H-beam SN - 978-0-7695-3615-6 SP719 EP722 A1 - Xianzhang Feng, A1 - Junwei Cheng, A1 - Yanmei Cui, A1 - Cai Liu, A1 - Junhui Li, PY - 2009 KW - H-beam KW - heat exchanging KW - rolling KW - the thermo-mechanical coupling KW - temperature field VL - 0 JA - Artificial Intelligence, International Joint Conference on ER - | |||
DOI Bookmark: http://doi.ieeecomputersociety.org/10.1109/JCAI.2009.84
The simulation model of hot rolling coupling was established using finite element method base on studying and analyzing of universal rolling method for H-beam. The distribution of temperature field and stress field in contact area as the main research subjects during hot rolling under the given rolling regulations of H-beam, the whole process of hot rolling was completely simulated. The results show that the temperature of H-beam was a downward trend in the hot rolling process, however, local temperature display rising trend, uneven deformation of flange lead to more complex temperature distribution, there is a certain correlation between equivalent plastic stress and temperature distributions, increasing of equivalent plastic stress as the temperature increases, research results can provide theoretical basis for rolling regulations and reference of the production of hot rolling for H-beam.
Index Terms:
H-beam, heat exchanging, rolling, the thermo-mechanical coupling, temperature field
Citation:
Xianzhang Feng, Junwei Cheng, Yanmei Cui, Cai Liu, Junhui Li, "Simulation of Mechanics Properties in Rolling Process for H-beam," jcai, pp.719-722, 2009 International Joint Conference on Artificial Intelligence, 2009
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