On Kinematics in Sequential Three-Dimensional Stretch Bending: Analytical Springback Model

Author:

Ha Taekwang12,Welo Torgeir3,Ringen Geir3,Wang Jyhwen4

Affiliation:

1. Norwegian University of Science and Technology Department of Mechanical and Industrial Engineering, , Richard Birkelands vei 2B, Trondheim 7491 , Norway ;

2. Texas A&M University Department of Multidisciplinary Engineering, , 101 Bizzell Street, College Station, TX 77843

3. Norwegian University of Science and Technology Department of Mechanical and Industrial Engineering, , Richard Birkelands vei 2B, Trondheim 7491 , Norway

4. Texas A&M University Department of Engineering Technology and Industrial Distribution, , 106 Ross Street, College Station, TX 77843

Abstract

AbstractIn profile bending, the geometrical defect that reduces dimensional quality is mainly due to springback. While predicting dimensions after bending is important for quality control, many factors during bending cause difficulty in springback prediction. Furthermore, complex three-dimensional (3D) shapes in bending can make springback prediction significantly more difficult. This work presents a springback prediction method for varying curvature 3D profile/tube bending. An advanced five-axis bending machine, with rotary semi-dies opposing each other, has been developed. As the geometry of the bend die constrains the workpiece in the bending region, a model for 3D stretch bending is established from the rotational motion of the bend die. The discretized curvature of a bent profile geometry is described by using the Frenet–Serret frames, and a model for springback prediction is further developed based on the kinematics analysis of the bending process. This generalized analytic approach and numerical simulation are applied to evaluate springback in both 2D and 3D stretch bending of a thin-walled aluminum profile with a rectangular cross section. The analytical and numerical results for springback prediction are validated with experiments, showing good agreement. The developed model is able to evaluate 3D springback of a profile with arbitrary cross section efficiently for product design and development.

Publisher

ASME International

Subject

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

Reference31 articles.

Cited by 2 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Smart Control of Springback in Stretch Bending of a Rectangular Tube by an Artificial Neural Network;Journal of Manufacturing Science and Engineering;2023-10-11

2. Deformation Analysis based on the Pivot Location of Bend Dies in 3D Stretch Bending;Journal of the Korean Society of Manufacturing Process Engineers;2023-09-30

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