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首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >Improving laser cutting quality for two-dimensional contoured paths
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Improving laser cutting quality for two-dimensional contoured paths

机译:提高二维轮廓路径的激光切割质量

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摘要

Quality improvements in laser cutting of mild steel have been achieved by a newly developed model-based optimization strategy and its application to one-dimensional cut has been reported early. The specific aims of this paper are to assure quality of cut when cornering and generating small diameter holes. Such routines encompass a large proportion of all features processed on laser cutting systems, and therefore their successful production is significant. Currently, extensive trial-and-error basedexperimentation is needed in order to improve quality for these routines. Thus model-based optimization has the benefit of reducing this time-exhaustive step whilst leading to an optimal solution. Nonlinear power adaptation profiles are generated via theoptimization strategy in order to stabilize cutting front temperatures. Uniform temperatures produce better quality by reducing (i) kerf widening effects, (ii) heat-affected zone extents, and (iii) workpiece self-burning effects. Experimental results arepresented, and it is demonstrated that such process manipulation can produce significant quality improvements. In addition, predicted heat-affected zones correlate closely to those actually obtained. The process manipulation is successfully implemented in an industrial laser cutting system under laboratory condition.
机译:通过新开发的基于模型的优化策略,已经实现了低碳钢激光切割质量的提高,并且其在一维切割中的应用已有报道。本文的特定目的是确保转弯和产生小直径孔时的切割质量。这样的例行程序包含了在激光切割系统上处理的所有特征的很大一部分,因此它们的成功生产意义重大。当前,为了提高这些例程的质量,需要广泛的基于试验和错误的实验。因此,基于模型的优化的好处是减少了这一耗时的步骤,同时带来了最佳解决方案。非线性功率适应曲线通过优化策略生成,以稳定切割前的温度。均匀的温度通过降低(i)切缝扩展效应,(ii)热影响区范围和(iii)工件自燃效应而产生更好的质量。给出了实验结果,并且证明了这种过程操纵可以产生显着的质量改进。此外,预计的热影响区与实际获得的区密切相关。在实验室条件下,在工业激光切割系统中成功执行了该过程操作。

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