Although considerable effort has gone into characterizing the laser forming process in terms of process parameters and conditions, there has been little emphasis on the effects of the mechanical and thermal constraints introduced by the clamping method utilized for a desired application. This research suggests means for investigating and predicting the resulting geometry of a specimen due to laser operation in close proximity to an array of imposed thermo-mechanical constraints for both the single and multiple scan cases; specifically, the resulting average bending angle as well as bending angle variations throughout the part. This is accomplished by initially only considering these effects on the thermal field. Conclusions are then drawn about the nature of the mechanical effects. These conclusions are validated through numerical simulation as well as physical experimentation. An analytical solution of the thermal problem is also presented for further validation of the temperature field as a constrained edge is approached.
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December 2007
Technical Papers
Effects of Clamping on the Laser Forming Process Available to Purchase
A. J. Birnbaum,
A. J. Birnbaum
Department of Mechanical Engineering,
e-mail: ajb2118@columbia.edu
Columbia University
, New York, NY 10027
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P. Cheng,
P. Cheng
Department of Mechanical Engineering,
Columbia University
, New York, NY 10027
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Y. L. Yao
Y. L. Yao
Department of Mechanical Engineering,
Columbia University
, New York, NY 10027
Search for other works by this author on:
A. J. Birnbaum
Department of Mechanical Engineering,
Columbia University
, New York, NY 10027e-mail: ajb2118@columbia.edu
P. Cheng
Department of Mechanical Engineering,
Columbia University
, New York, NY 10027
Y. L. Yao
Department of Mechanical Engineering,
Columbia University
, New York, NY 10027J. Manuf. Sci. Eng. Dec 2007, 129(6): 1035-1044 (10 pages)
Published Online: June 5, 2006
Article history
Received:
August 2, 2005
Revised:
June 5, 2006
Citation
Birnbaum, A. J., Cheng, P., and Yao, Y. L. (June 5, 2006). "Effects of Clamping on the Laser Forming Process." ASME. J. Manuf. Sci. Eng. December 2007; 129(6): 1035–1044. https://doi.org/10.1115/1.2375140
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