Parameter Design with Finite Element Analysis and Optimization Techniques in Sheet Metal Forming Processes

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Process optimization is carried out to determine process parameters which satisfy the given design requirements and constraint conditions in sheet metal forming processes. The scheme incorporates with a rigid-plastic finite element method for the calculation of the final shape and the strain distribution. Response surface methodology is utilized for the optimum searching of process parameters. The algorithm developed is applied to design of the draw bead force and the die shapes in deep drawing processes. The results show that design of process parameters is well performed to increase the amount of strain for increasing the strength or to decrease the amount of strain for preventing fracture by tearing. The present algorithm also enhances the stable optimum solution with small number of iterations for optimization.
Publisher
AFDM
Issue Date
1999-09-07
Language
ENG
Description

proc. AFDM, pp.513~518, 1999.

Citation

proc. AFDM '99, pp.513 - 518

URI
http://hdl.handle.net/10203/5937
Appears in Collection
ME-Conference Papers(학술회의논문)

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