TY - JOUR
T1 - Study on asymmetrical sheet rolling by the finite element method
AU - Hwang, Yeong Maw
AU - Chen, Dyi G.
AU - Tzou, Gow Yi
PY - 1999/1/1
Y1 - 1999/1/1
N2 - Adopting the DEFORM software for the finite element analysis, this study simulated steady-state plastic deformation of the sheet at the roll-gap during asymmetrical sheet rolling. Using FEM code DEFORM, the effects of roll speed ratio, roll radius ratio, friction factor ratio upon the curvature of the rolled product and rolling force were systematically discussed. With a view to verifying the validity of the study simulated, a series of experiments on asymmetrical cold sheet rolling using Aluminum sheet as specimen are carried out. The comparisons between numerical and experimental results show good agreement. Therefore, this numerical model using DEFORM software can offer useful knowledge for designing the pass-schedule of asymmetrical sheet rolling.
AB - Adopting the DEFORM software for the finite element analysis, this study simulated steady-state plastic deformation of the sheet at the roll-gap during asymmetrical sheet rolling. Using FEM code DEFORM, the effects of roll speed ratio, roll radius ratio, friction factor ratio upon the curvature of the rolled product and rolling force were systematically discussed. With a view to verifying the validity of the study simulated, a series of experiments on asymmetrical cold sheet rolling using Aluminum sheet as specimen are carried out. The comparisons between numerical and experimental results show good agreement. Therefore, this numerical model using DEFORM software can offer useful knowledge for designing the pass-schedule of asymmetrical sheet rolling.
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U2 - 10.1017/S1727719100000435
DO - 10.1017/S1727719100000435
M3 - Article
AN - SCOPUS:0033337874
VL - 15
SP - 149
EP - 155
JO - Journal of Mechanics
JF - Journal of Mechanics
SN - 1727-7191
IS - 4
ER -