Design of the die shape by optimum contact ratio 1/d and its application

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Optimum drawing die shapes with optimum contact ratio 1/do were studied by FEM simulation and experiment. Drawing stress and residual stress of the A-die (conical die) and R-die (circle die) were calculated by REM simulation and compared. A-R die combining the length of A-type die and R-type die were designed and the optimum die shapes of A-R die were investigated by comparing the drawing stress and residual stress. As a result, the length ratio of A-die part versus R-die in A-R die approach was found to be 8 to 1 in the length ratio on optimum die shape. Simultaneously, the results of the drawing stress and residual stress of FEM simulation were compared.

Description

Optimum drawing die shapes with optimum contact ratio 1/do were studied by FEM simulation and experiment. Drawing stress and residual stress of the A-die (conical die) and R-die (circle die) were calculated by REM simulation and compared. A-R die combining the length of A-type die and R-type die were designed and the optimum die shapes of A-R die were investigated by comparing the drawing stress and residual stress. As a result, the length ratio of A-die part versus R-die in A-R die approach was found to be 8 to 1 in the length ratio on optimum die shape. Simultaneously, the results of the drawing stress and residual stress of FEM simulation were compared.

Additional information

Author(s)

Akikazu Nakagiri, Takaaki Yamano, Masazumi Konaka and Yuusuke Nonaka, Kansai University; Kazunari Yosida, Tokai University; and Motoo Asakawa, Waseda University, Japan

Publication/Event/Pages

Paper presented at WAI 71st Annual Convention, Atlanta, GA USA

Year

2001