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Studying Effect of CO_2 Laser Cutting Parameters of Titanium Alloy on Heat Affected Zone and Kerf Width Using the Taguchi Method

机译:钛合金CO_2激光切削参数对热影响区和Kerf宽度的研究效果

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In laser cutting process, the cut quality is of great importance. The Heat Affected Zone (HAZ), the kerf width (K_w) of laser cut and quality of the cut edges are affected by cutting parameters as well as the work-piece material. In this paper CO_2 laser cutting of 3 mm thick of Titanium alloy sheet grade 5Ti-6Al-4V is investigated. The main objectives of the present work are firstly focused on evaluating the effect of laser power (Pu), cutting speed (V) and gas pressure (p) on Heat Affected Zone and Kerf width quality. Secondly, the relationship between cutting parameters and laser process output variables are analyzed and optimized using the Taguchi method. Results indicate that the thickness of the Heat affected Zone increases with the evolution of laser power and decreases with the increase of cutting speed, and the optimum cutting condition was found to be 1 kW for the laser power, 2400 mm/min for the cutting speed and 2 bars for gas pressure. Also, it is underlined that the kerf width is mainly influenced by laser power and cutting speed.
机译:在激光切割过程中,切割质量非常重要。热影响区(HAZ),激光切割和切割边缘质量的Kerf宽度(K_W)受切割参数以及工件材料的影响。在本文中,研究了CO_2厚厚的钛合金板级5TI-6AL-4V的3mm厚的激光切割。本作工作的主要目标首先是评估激光功率(PU),切削速度(V)和气体压力(P)对热影响区和Kerf宽度质量的影响。其次,使用Taguchi方法分析和优化切割参数和激光过程输出变量之间的关系。结果表明,热影响区的厚度随着激光功率的演变而增加,随着切割速度的增加而降低,激光功率的最佳切割条件为1 kW,切割速度为2400 mm / min和2个气体压力。此外,它强调,Kerf宽度主要受激光功率和切割速度的影响。

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