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Optimization of Multi-Pass Laser Bending by means of Soft Computing Techniques

机译:通过软计算技术优化多通激光弯曲

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The relatively small angle produced after each laser-bending pass and the long time lapse between consecutive passes highly limits the laser bending process productivity. In the present study, different strategies have been carried out in order to overcome such limitations, including forced cooling of sheets as well as optimization of process parameters. A series of experimental tests were conducted on thin sheets made of AIS1304 stainless steel. The variation of the bending angle achieved by multi-pass laser experiments, the minimum interval time between consecutive scans and the maximum temperature reached during the process were modelled by means of an Artificial Neural Network as well as the bend angle achieved per pass. Finally, an iterative procedure was developed to determine the optimal processing conditions that allow the production of a given bending angle. From an industrial point of view, the proposed procedure represents a preliminary version of a modulus for laser bending process automation and control.
机译:每个激光弯曲通过后产生的相对小的角度和连续通过之间的长时间间隔高度限制激光弯曲过程生产率。在本研究中,已经进行了不同的策略,以克服这些限制,包括薄片的强制冷却以及工艺参数的优化。在由AIS1304不锈钢制成的薄板上进行一系列实验测试。通过多通激光实验实现的弯曲角度的变化,连续扫描期间的最小间隔时间和在该过程期间达到的最大温度通过人工神经网络建模,以及每次通过所实现的弯曲角度。最后,开发了一种迭代程序以确定允许给定弯曲角度产生的最佳处理条件。从工业角度来看,所提出的程序代表了激光弯曲过程自动化和控制模量的初步版本。

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