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首页> 外文期刊>Lasers in engineering >Modelling and Optimization of Nd:YAG Laser and Tungsten Inert Gas (TIG) Hybrid Welding of Stainless Steel
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Modelling and Optimization of Nd:YAG Laser and Tungsten Inert Gas (TIG) Hybrid Welding of Stainless Steel

机译:Nd:YAG激光和钨极惰性气体(TIG)不锈钢混合焊接的建模和优化

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In the present study the Nd:YAG laser-tungsten inert gas (TIG) hybrid butt joint welding parameters of stainless steel 1.4418 have been investigated by coupling a pulsed Nd:YAG laser with a continuous wave (CW) TIG source. The experiments were performed based on the response surface methodology (RSM) as a statistical design of experiments approach to investigate the effect of parameters on the response variations, and achieve the mathematical equations to predict the new results. Welding speed (1 to 5 mm/s), TIG current (90 to 130 A) and distance of heat sources (1 to 5 mm) were assumed as the input process variables while the weld surface width, weld seam area, and weld penetration were considered as the process responses. Analysed by statistical techniques, the results indicated that the welding speed is the most important parameter among all parameters with a reverse effect on process outputs. Besides, TIG current has a direct influence on all investigated responses. The paper invokes the desirability approach optimization technique to achieve the best geometrical dimensions of weld profiles and validating the theoretical results using the experimental tests. Once the optimum settings are considered, a tensile test was also conducted.
机译:在本研究中,通过将脉冲Nd:YAG激光与连续波(CW)TIG源耦合,研究了不锈钢1.4418的Nd:YAG激光-钨极惰性气体(TIG)混合对接焊接参数。实验是基于响应面方法(RSM)作为实验方法的统计设计而进行的,以研究参数对响应变化的影响,并建立数学方程式来预测新结果。焊接速度(1至5 mm / s),TIG电流(90至130 A)和热源距离(1至5 mm)被假定为输入过程变量,而焊接表面宽度,焊缝面积和焊缝熔深被视为过程响应。通过统计技术分析,结果表明焊接速度是所有参数中最重要的参数,对过程输出有相反的影响。此外,TIG电流对所有调查的响应都有直接影响。本文引用了期望方法优化技术,以实现最佳的焊接轮廓几何尺寸,并使用实验测试验证了理论结果。一旦考虑了最佳设置,就进行了拉伸试验。

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