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Research on precision control of sheet metal forming by laser shock waves with semi-die

机译:半冲模激光冲击波在钣金加工中的精度控制研究

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摘要

Laser shock forming is a new technique which enables sheet metal to produce plastic deformation through shock waves induced by high energy pulsed laser. However, it is difficult to control the forming precision with such technique. This paper provided the kinetic analysis of sheet metal during the progress of laser shock forming with semi-die. It also developed the method of forming precision control with optimal laser pulse energy, method of die modification and compensation based on reverse analysis and method of characterizing the precision of laser shock forming with semi-die. The Nd:Glass pulse laser was used in the laser shock semi-die forming experiment of constant elastic alloy 3J53 sheet metal. The experiment results show that the optimal laser pulse energy of precision control in laser shock semi-die forming is 15 J; and forming error can be reduced by more than 50% with the method of contours modification and compensation. The research work also lays a foundation for the theory formation of precision control of laser shock semi-die forming and the engineering applications of the laser shock forming technique.
机译:激光冲击成形是一种新技术,可使钣金件通过高能脉冲激光引起的冲击波产生塑性变形。但是,用这种技术难以控制成形精度。本文提供了半模激光冲击成形过程中钣金的动力学分析。还开发了利用最佳激光脉冲能量形成精密控制的方法,基于反向分析的模具修改和补偿方法以及表征半模具激光冲击成形精度的方法。 Nd:玻璃脉冲激光器用于恒弹性3J53合金薄板的激光冲击半模成型实验。实验结果表明,激光冲击半模成形中精确控制的最佳激光脉冲能量为15J。通过轮廓修改和补偿的方法,可以将成型误差降低50%以上。该研究工作也为激光冲击半模成形的精确控制的理论形成和激光冲击成形技术的工程应用奠定了基础。

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