Affiliation:
1. S. V. National Institute of Technology, Surat
Abstract
The tubular sections or shells for forming channels, drums, tanks or pressure vessel are manufactured by bending plates generally through three-roller bending machine and then welding the ends of bent plate to form a cylinder or cone. Force exerted on rollers during bending is one of the important criteria which must not exceed the capacity of bending machine. Secondly, Total bender capacity must be utilised during bending of desired curvature, which reduces number of passes and hence time required to attain desired curvature. Thus, it necessary to estimate the forces during bending, based on the roller position, so that it does not exceeds the bender capacity and simultaneously reduces number of passes. In this regards, some analytical models are available to predict the forces during three roller bending process with assumption of constant bend radius during bending. In fact, the radius continuously changes during bending operation which affects the magnitude and the direction of the forces exerted on the roller. An attempt is made to simulate the roller bending using FEA. Variation of curvature of plate and effect of various parameters such as plate thickness, bottom roller inclination and top roller inclination on bending forces during cylindrical and conical bending operation are studied using FEA analysis.
Publisher
Trans Tech Publications, Ltd.
Reference16 articles.
1. M. Hua, D.H. Sansome, K.P. Rao, K. Baines, Continues four roll plate bending process: its bending mechanism and influential parameters, J. Mater. Process. Tech. 45 (1994) 181-186.
2. M. Hua, D.H. Sansome, K. Baines, Mathematical modeling of internal bending moment at top roller contact in multi-pas four roll thin plate bending, J. Mater. Process. Tech. 52(1995b) 425-459.
3. M. Hua, Y.H. Lin, Effect of strain hardening on the continues four roll plate edge bending process, J. Mater. Process. Tech. 89-90(1999) 12-18.
4. H.K. Raval, Experimental and theoretical investigation of bending process (Vee and three roler bending), Ph. D. Thesis, South Gujarat University, India, (2002).
5. A.H. Gandhi, H.K. Raval, Analytical modeling of top roller position for multiple pass (3-roller) cylindrical forming of plates, Proceedings of IMECE 2006, ASME Mechanical Engineering congress and Exposition, Chicago, Illinios, USA, 10 (2006).