3-Demensional Finite Element Simulation on Continuous Rolling Φ100 mm Steel 42CrMo by 200 mm x200 mm Cast Bloom
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3-Demensional Finite Element Simulation on Continuous Rolling Φ100 mm Steel 42CrMo by 200 mm x200 mm Cast Bloom
Special SteelVol. 31, Issue 1, Pages: 1-3(2010)
作者机构:
1. 北京科技大学材料科学与工程学院,北京,100083
2. 承德建龙特殊钢有限公司,承德,067201
作者简介:
基金信息:
DOI:
CLC:
Received:09 July 2009,
Online First:24 October 2022,
Published:24 October 2010
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魏军, 洪慧平, 赵爱民, et al. 3-Demensional Finite Element Simulation on Continuous Rolling Φ100 mm Steel 42CrMo by 200 mm x200 mm Cast Bloom[J]. Special Steel, 2010, 31(1): 1-3.
DOI:
魏军, 洪慧平, 赵爱民, et al. 3-Demensional Finite Element Simulation on Continuous Rolling Φ100 mm Steel 42CrMo by 200 mm x200 mm Cast Bloom[J]. Special Steel, 2010, 31(1): 1-3.DOI:
3-Demensional Finite Element Simulation on Continuous Rolling Φ100 mm Steel 42CrMo by 200 mm x200 mm Cast Bloom
3-demensional thermodynamic coupling simulation for continuous rolling process of Φ100 mm round steel 42CrMo by 200 mm x 200 mm cast bloom has been carried out by using MSC. Marc finite element simulation software. As the plastic stain at round comer of stock in pass is larger and the deformation is gradually from surface to inner
the method of grid deviation division for cross section is adopted to fine the element of surface and round comer area. Based on the characteristics of stress field
strain field and temperature distribution as well as change of rolling force and torque during continuous rolling process
it is obtained that during alloy steel rolling
the larger total equivalent strain
equivalent stress and temperature drop are key reason of occurred crack at round comer of stock. The simulated values of cross section size of stock between stands and after rolling correspond to the measured values.
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