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Optimization of Process Parameters in Laser Sheet Metal Bending

机译:激光钣金弯曲工艺参数的优化

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摘要

Laser sheet metal bending is a die less sheet metal forming process and a non-contact method. It is a thermo mechanical process where by a focussed or partially focused laser beam is used to induce localized heating and consequently deflection of the sheet along the incident beam occurs. The bending occurs because of internal thermal stresses developed as a result of irradiation instead of external forces. It can be very helpful in the process of rapid prototyping of various sheet metal parts because of its process flexibility and ability to design intricate shapes which are the major advantage against conventional methods. In the experiment Nd:YAG laser is used and the work-piece is AISI 304 stainless steel. Various process parameters in the experiment are laser power, scanning speed, beam diameter, pulse duration and number of passes. The effect of each process parameters is observed with respect to total deflection at the free end and bending angle by keeping other parameters constant. Design of experiment (DOE) is done with the help of Taguchi method. The results are analysed graphically and also with the help of ‘Analysis of variance’ and S/N ratios, so as to determine the optimum values of the process parameters and their individual effectiveness towards the net bending effect.ud
机译:激光钣金弯曲是无模钣金成形工艺和非接触式方法。这是一种热机械过程,其中通过聚焦或部分聚焦的激光束来引起局部加热,并因此导致片材沿着入射光束偏转。弯曲的发生是由于辐照而不是外力产生的内部热应力。它对各种钣金零件的快速原型制作过程非常有用,因为它具有灵活的处理能力和设计复杂形状的能力,这是与传统方法相比的主要优势。在实验中,使用Nd:YAG激光,工件为AISI 304不锈钢。实验中的各种工艺参数是激光功率,扫描速度,光束直径,脉冲持续时间和通过次数。通过保持其他参数不变,可以观察到每个过程参数对自由端总挠度和弯曲角度的影响。实验设计(DOE)是在田口方法的帮助下完成的。对结果进行图形化分析,并借助“方差分析”和信噪比进行分析,以确定过程参数的最佳值及其对净弯曲效果的单独有效性。

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    Maharana Birendra Kumar;

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  • 年度 2011
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