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Volume 34 Issue 1
May  2010
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Citation:

Effect of laser power density on laser shock formability of sheet metal

  • Received Date: 2008-11-03
    Accepted Date: 2009-02-23
  • In order to study the effect of laser power density on laser shock formability of aluminum alloy sheet, the forming limit, depth, thickness and stress distribution of the sheet were simulated under different laser power density and different number of laser shock. The results show that fracture is prone to happen in the centre of sheet and the forming limit is inversely proportional to the laser power density,but directly proportional to the number of laser shock. The formability of aluminum alloy sheet can be optimized through proper choice of laser energy and the number of laser shock.
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    CHEN Y B,ZHOU J Zh,HUANG Sh,et al.Study on the numerical simulation of laser forming of sheet metal based on ABAQUS code[J].Applied Laser,2007,27(3):175-180(in Chinese).
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    JOSEF R U,TAYLOR W L,PHILLIP R S,et al.Short-pulse high-peak laser shock peening:U S,252620[P].1999-02-16.
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    NARASIMHAN K.A novel criterion for predicting forming limit strains[C]//Materials Processing and Design:Modeling,Simulation and Applications.2004 Proceedings of the 8th International Conference on Numerical Methods in Industrial Forming Processes.Columbus,Ohio:American Institute Physics,2004:850-855.
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    CHEN W,GUO W G,HOU B,et al.Prediction of forming limit diagram in sheet metal forming based on thickness gradient criterion[J].China Mechanical Engineering,2007,18(18):2246-2248(in Chinese).
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Effect of laser power density on laser shock formability of sheet metal

  • 1. School of Mechanical Engineering, Jiangsu University, Zhenjiang 212013, China

Abstract: In order to study the effect of laser power density on laser shock formability of aluminum alloy sheet, the forming limit, depth, thickness and stress distribution of the sheet were simulated under different laser power density and different number of laser shock. The results show that fracture is prone to happen in the centre of sheet and the forming limit is inversely proportional to the laser power density,but directly proportional to the number of laser shock. The formability of aluminum alloy sheet can be optimized through proper choice of laser energy and the number of laser shock.

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