A General Velocity Field for Shape Rolling of a V-Sectioned Sheet

Author:

Hwang Yeong-Maw1,Lin Hung-Jiun1,Chen J. R.1

Affiliation:

1. Department of Mechanical Engineering, National Sun Yat-Sen University, Kaohsiung, Taiwan 804, Republic of China

Abstract

A general kinematically admissible velocity field has been proposed in this work to examine the plastic deformation behavior of the sheet at the roll gap during shape rolling of a V-sectioned sheet. This velocity field is employed to examine the geometry of the rolled product, which are effected by various rolling conditions such as the sizes of the raw sheet and the vacancy, thickness reduction, etc. Furthermore, experiments on cold shape rolling of aluminum sheet have also been conducted. The rolling forces and the shape of the rolled product were measured to compare with the analytical values. Through the comparisons between them, the validity of this newly proposed velocity field was verified. [S1087-1357(00)71301-3]

Publisher

ASME International

Subject

Industrial and Manufacturing Engineering,Computer Science Applications,Mechanical Engineering,Control and Systems Engineering

Reference15 articles.

1. Fukuda, H. , 1991, “Manufacturing and Application for Profiled Strips with High Precision,” J. Jpn. Soc. Technol. Plasticity, 32, pp. 452–457.

2. Saito, Y., 1990, “Shape Rolling by Satellite Mill,” The 128th Symposium for Technology of Plasticity, pp. 59–67. (in Japanese)

3. Horihata, M., 1990, “Shape Rolling by 3-Roll Mill,” The 128th Symposium for Technology of Plasticity, pp. 69–74. (in Japanese)

4. Fukuda, H. , 1980, “New Method for Cold-rolling the Step-Sectioned Strip,” J. Inst. Iron Steel Jpn., 66, pp. 558–564. (in Japanese)

5. Nagpal, V., Billhardt, C. F., and Altan, T., 1979, “Lubricated Extrusion of ‘T’ Sections from Aluminum, Titanium and Steel Using Computer-Aided Techniques,” ASME J. Eng. Ind., 101, pp. 319–324.

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