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Parametric analysis of laser machining with response surface method on SS-304

机译:SS-304响应面法激光加工的参数分析

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Stainless steel is an important engineering material that is difficult to be cut by oxy-fuel methods because of the high melting point and low viscosity of the formed oxides. However, it is suitable to be cut by laser. The objective of this work is to do parametric analysis of process parameters of CO2 laser cutting system on surface characteristics of the cut section in the cutting of 5mm Stainless Steel (SS) sheet (ASTM 304). In this study, the laser cutting parameters such as laser power, cutting speed and gas pressure are analyzed and optimized with consideration of workpiece surface roughness. Design of experiments (DOE), ANOVA and Response Surface Methodology (RSM) approaches are used to analyze the laser cutting variables and find out the optimum value for surface roughness. By analyzing, it is observed that the laser power has more effect on responses rather than cutting speed and gas pressure. It is clearly shown that the above performance characteristics in laser cutting process can be optimized effectively through this approach.
机译:不锈钢是一种重要的工程材料,由于所形成的氧化物的高熔点和低粘度,氧燃料方法难以通过氧燃料方法切割。然而,适合通过激光切割。这项工作的目的是进行CO2激光切割系统的过程参数的参数分析,在切割5mm不锈钢(SS)片材(ASTM 304)中的切割部分的表面特性上。在该研究中,通过考虑工件表面粗糙度来分析和优化诸如激光功率,切割速度和气体压力的激光切割参数。实验设计(DOE),ANOVA和响应面方法(RSM)方法用于分析激光切割变量,并找出表面粗糙度的最佳值。通过分析,观察到激光功率对响应具有更多影响而不是切割速度和气体压力。清楚地表明,通过这种方法可以有效地优化激光切割过程中的上述性能特性。

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