Springback Analysis and Control in Small Radius Air Bending

Author:

Elkins K. L.1,Sturges R. H.2

Affiliation:

1. Roadway Information Technology, Inc., Akron, OH 44309-3518

2. Dept. of Mechanical Engineering, Dept. of Industrial & Systems Engineering, Virginia Tech, Blacksburg, VA 24061-0238

Abstract

A critical factor for quality small lot sheet metal production is the control of flange angles. For small radius pressbrake bending operations, i.e., punch radius less than sheet thickness, control of angle requires extensive setup time, making small batch runs inefficient. This paper demonstrates the use of relatively simple measurements of material properties to provide the information necessary to estimate and control springback with accuracy approaching 1/4 degree. The control method combines the generality of a modelbased approach with accurate on-line loaded angle measurement. An analytic bending model is developed which provides insights into the material and geometric variables that affect springback. Estimates are made of the relative sensitivity of springback to changes in these variables. In addition, a set of variable ratios are determined which are linearly related to springback and thus serve as the input data for a linear regression model of springback based on experimental results.

Publisher

ASME International

Subject

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

Reference13 articles.

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2. Stelson, K. A., The Adaptive Control of Brakeforming Using In-Process Measurement for the Identification of Workpiece Material Characteristics, Ph.D. Thesis, Department of Mechanical Engineering, Massachusetts Institute of Technology, 1981.

3. Stelson K. A. , “An Adaptive Pressbrake Control for Strain-Hardening Materials,” ASME JOURNAL OF ENGINEERING FOR INDUSTRY, Vol. 108, May 1986, pp. 127–132.

4. Helmut Fischer GMBH., “Fischerscope H100,” Fischer Product Literature, Oct. 1991.

5. Tabor, D., The Hardness of Metals, Oxford University Press, 1951, pp. 97–108.

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