On the Plastic Deformation of a Tube During Bending

Author:

Pan K.1,Stelson K. A.1

Affiliation:

1. Department of Mechanical Engineering, University of Minnesota, 111 Church Street, Minneapolis, MN 55455

Abstract

The objective of this study is to develop an analytical approach to calculate the relationship between the axial curvature of a bent tube and the resulting deformation of the cross-section. The model accounts for both geometrical and material nonlinearities. An approximate expression in trigonometric form is introduced for the displacement field, which reflects the change of wall thickness and neutral axis shift during bending. The total deformation theory is employed as a constitutive relation. The solution is found using a minimization approach and the energy principle. A better approach for springback prediction might be obtained from the deformation model, which predicts a more accurate moment of inertia change during bending.

Publisher

ASME International

Subject

General Medicine

Reference8 articles.

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2. Brazier L. G. , 1927, “On Flexure of Thin Cylindrical Shells and Other Thin Sections,” Proc. R. Soc. London., Ser. A, Vol. 116, pp. 104–114.

3. Himmelblau, D. M., 1972, Applied Non-linear Programming, McGraw-Hill, N.Y.

4. Karman Th. v. , 1911, “Uber die Formanderung Dunnwandiger Rohre, insbesondere federnder Ausgleichsrohre,” Z. Ver. deit. Ing., Vol. 55, pp. 1889–1895.

5. Lukyanov, V. P., and Zubkov, A. I., 1968, “Investigation of Tube Bending on a Tube Bending Machine with Mandrel,” UDC 621.774.63.06, Translated from Khimicheskoe i Neftyanoe Machinostroenie, Vol. 11, pp. 22–23.

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