Optimization for Stretch Bending Process of Aluminum Profile - Stretch-Wrap Bending, Springback Optimization

by Salazar Alvarez, Tulio Rafael
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$64.35
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Salazar Alvarez, Tulio Rafael Optimization for Stretch Bending Process of Aluminum Profile - Stretch-Wrap Bending, Springback Optimization
Salazar Alvarez, Tulio Rafael - Optimization for Stretch Bending Process of Aluminum Profile - Stretch-Wrap Bending, Springback Optimization

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Description

Aluminum profile is used in various fields such as aeronautics and automobile industries to get light products. As one of main forming process to obtain the profile part, stretch-wrap bending becomes the major development direction of advanced plastic forming technology, so prediction and control of forming defects have become a difficult and key problem urgently to be resolved in research and development of this forming process. However, this is an intricate process affected by many interactive multi-factor effects; it is difficult to get ideal solution for process design by using only theoretical analysis and experiment. Therefore numerical simulation based on FEM is used to analyze the forming mechanism, to predict the defects and to optimize the process parameters. The technology of plastic sheet metal forming and its theoretical analysis are globally introduced. On this foundation a study on stretch-wrap bending processes on hollow section profile is conducted to analyze stress and strain distribution under different loadings. The agreement between the experiments and the simulations is fairly good for most cases, which proves the validity of the established numerical model.

Contributors

Author:
Salazar Alvarez, Tulio Rafael

Further information

Biography Artist:
Tulio R. Salazar: Graduated as Dr.Eng in Manufacture Engineering of Aerospace Vehicle, Master s degree in Mechanical Engineering, Specialist in Satellite Design and Space Project Management. Professor at UNEFA University, Space Education Manager at Bolivarian Agency for Space Activities ABAE.
Language:
English
Number of Pages:
192
Media Type:
Softcover
Publisher:
LAP Lambert Academic Publishing

Master Data

Product Type:
Paperback book
Release date:
November 23, 2012
Package Dimensions:
0.22 x 0.15 x 0.011 m; 0.336 kg
GTIN:
09783846528396
DUIN:
R9GDNF53A32
$64.35
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