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Laser forming of doubly curved plates using minimum energy principle and comprehensive strain control

机译:使用最小能量原理和全面应变控制激光形成双弯曲板

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摘要

Forming complex shapes is an important process for many heavy industries such as shipbuilding. The traditional forming method is line heating method, which relies on the worker experience. This paper presents a method of mechanical and thermal forming based on the minimum energy principle and comprehensive strain control. The doubly curved plate is developed into the singly curved shape using finite element method and minimum energy principle based on nonlinear deformation theory. The strain distribution can be obtained through the optimized development process and the laser heating paths are planned according to the comprehensive strain obtained from in-plane and out-of-plane strains. The heating condition is determined using geometrical difference between the doubly curved and the developed singly curved shapes based on the deformation database. The overall methodology is experimentally validated through two kinds of doubly curved surfaces.
机译:形成复杂形状是许多重工业等造船等重型工业的重要过程。 传统的成型方法是线加热方法,依赖于工人体验。 本文介绍了一种基于最小能量原理和综合应变控制的机械和热成形方法。 双弯曲板采用有限元法和基于非线性变形理论的最小能量原理开发成单弯曲的形状。 可以通过优化的显影过程获得应变分布,并且根据从面内和面外菌株获得的综合应变来计划激光加热路径。 使用双弯曲和基于变形数据库的双弯曲和开发的单弯曲形状之间的几何差异来确定加热条件。 通过两种双弯曲表面进行实验验证整体方法。

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