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The Effect of Laser Parameters on Cutting Metallic Materials

机译:激光参数对切割金属材料的影响

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摘要

This experimental study investigated the effect of laser parameters on the machining of SS41 and SUS304. The metallic materials play an important role in engineering applications. They are widely used in high-tech industries such as aerospace, automotive, and architecture. Due to the development of technology and high-tech industrialization, the various processing technologies are being developed with the requirement of high precision. However, the conventional cutting process is difficult to meet high precision processing. Therefore, to achieve high precision processing of the SS41 and SUS304, laser manufacturing has been applied. The current study investigated the process quality of laser cutting for SS41 and SUS304, with the usage of a continuous wave CO2 laser cutting system. The experimental variables are set to the laser cutting speed, laser power, and different engineering materials. The results are significantly affected by the laser parameters. As the result, the process quality of the laser cutting has been observed by measuring the top and bottom kerf widths, as well as the size of the melting zone and Heat Affected Zone (HAZ) according to volume energy. In addition, the evaluation of the laser processing parameters is significantly important to achieve optimal cutting quality. Therefore, we observed the correlation between the laser parameters and cutting quality. These were evaluated by analysis of variance (ANOVA) and multiple regression analysis. The experimental results of kerf top, kerf bottom, melting width, and HAZ on the laser parameters are properly predicted by multiple regression. In addition, the effect of laser parameters on the materials is determinant by the percentage of contribution of ANOVA.
机译:该实验研究研究了激光参数对SS41和SUS304加工的影响。金属材料在工程应用中起着重要作用。它们广泛应用于航空航天,汽车和建筑等高科技产业。由于技术和高科技产业化的发展,各种加工技术正在开发出高精度的要求。然而,常规切割过程难以满足高精度加工。因此,为了实现SS41和SUS304的高精度处理,已经应用了激光制造。目前研究研究了SS41和SUS304的激光切割过程质量,利用连续波CO2激光切割系统。实验变量设定为激光切割速度,激光功率和不同的工程材料。结果受激光参数的显着影响。结果,通过测量顶部和底部Kerf宽度,以及根据体积能量测量熔点和热影响区域(HAZ)的尺寸来观察激光切割的过程质量。此外,激光加工参数的评估对于实现最佳切削质量显着重要。因此,我们观察了激光参数与切割质量之间的相关性。通过分析方差(ANOVA)和多元回归分析来评估这些。通过多元回归适当地预测激光参数上的kerf顶部,kerf底部,熔化宽度和haz的实验结果。此外,激光参数对材料的影响是由ANOVA贡献的百分比的决定因素。

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