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Optimization of CO2 laser cutting parameters on Austenitic type Stainless steel sheet

机译:奥氏体型不锈钢板上CO2激光切削参数的优化

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Thin AISI 316L stainless steel sheet widely used in sheet metal processing industries for specific applications. CO2 laser cutting is one of the most popular sheet metal cutting processes for cutting of sheets in different profile. In present work various cutting parameters such as laser power (2000 watts-4000 watts), cutting speed (3500mm/min - 5500 mm/min) and assist gas pressure (0.7 Mpa- 0.9Mpa) for cutting of AISI 316L 2mm thickness stainless sheet. This experimentation was conducted based on Box- Behenken design. The aim of this work is to develop a mathematical model kerf width for straight and curved profile through response surface methodology. The developed mathematical models for straight and curved profile have been compared. The Quadratic models have the best agreement with experimental data, and also the shape of the profile a substantial role in achieving to minimize the kerf width. Finally the numerical optimization technique has been used to find out best optimum laser cutting parameter for both straight and curved profile cut.
机译:薄AISI 316L不锈钢板广泛用于金属板材加工行业,用于特定应用。 CO2激光切割是用于切割不同轮廓的最流行的钣金切割工艺之一。在目前的工作各种切割参数,如激光功率(2000瓦-4000瓦),切割速度(3500mm / min-5500mm / min),辅助气体压力(0.7MPa-0.9MPa),用于切割AISI 316L 2MM厚度不锈钢片。该实验是基于Box Behenken设计进行的。这项工作的目的是通过响应表面方法进行直线和弯曲轮廓的数学模型Kerf宽度。已经比较了用于直线和弯曲轮廓的发达的数学模型。二次模型具有与实验数据最佳的协议,以及轮廓的形状在实现以最小化Kerf宽度方面具有实质性作用。最后,使用数值优化技术已经用于找出直接和弯曲轮廓切割的最佳最佳激光切割参数。

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