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Parametric optimization for autogenous butt laser welding of sub-millimeter thick SS 316 sheets using central composite design

机译:中央复合设计的亚毫米厚SS 316薄片自动对接激光焊接的参数优化

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摘要

Laser Beam Welding (LBW) is now well known for its high precision and greater power intensities capable of welding any type of material. LBW finds wide applications in numerous areas ranging from simple cooking utensils to complex automotive and aeronautical components. In the present study, an attempt was made to characterize the LBW process used to join sub-millimeter thick sheets of SS 316. For this purpose Ytterbium Fiber laser having 2 kW power was used and SS 316 sheets of 0.85 mm, 0.56 mm, and 0.2 mm thickness were welded in butt joint configuration. For optimizing the selected input parameters laser power, laser scan speed and focal point position, central composite design technique was used. The responses considered are ultimate tensile strength, weld width, and micro hardness. The analysis of variance of the selected quadratic models shows that, the model can adequately predict correct results within the selected limits. The microstructural, fractographic and tensile behavior analysis clearly shows the effect of base material composition and heat input on the weld quality. The input parameters are optimized to give highest tensile strength and minimum weld width and were confirmed using confirmatory experiments.
机译:现在,激光束焊接(LBW)现在均以高精度和更大的功率强度均为众所周知,能够焊接任何类型的材料。 LBW在众多范围内找到广泛的应用,从简单的炊具到复杂的汽车和航空部件。在本研究中,尝试表征用于加入SS 316的亚毫米厚片材的LBW过程。对于该目的,使用具有2kW功率的Ytterbium光纤激光器,SS 316薄片为0.85mm,0.56mm,和0.56mm厚度0.2毫米厚度在对接联合配置中焊接。为了优化所选择的输入参数激光功率,激光扫描速度和焦点位置,使用中央复合设计技术。考虑的反应是最终拉伸强度,焊接宽度和微硬度。所选二次模型的方差分析表明,该模型可以充分预测所选限制内的正确结果。微观结构,换热和拉伸行为分析清楚地显示了基材组合物和热输入对焊接质量的影响。输入参数经过优化,以提供最高的拉伸强度和最小焊接宽度,并使用确认实验确认。

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