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Numerical and experimental evaluation of Nd:YAG laser welding efficiency in AZ31 magnesium alloy butt joints

机译:AZ31镁合金对接接头中Nd:YAG激光焊接效率的数值和实验评估

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In this paper, energy aspects related to the efficiency of laser welding process using a 2 kW Nd:YAG laser were investigated and reported. AZ31B magnesium alloy sheets 3.3 mm thick were butt-welded without filler using Helium and Argon as shielding gases. A three-dimensional and semi-stationary finite element model was developed to evaluate the effect of laser power and welding speed on the absorption coefficient, the melting and welding efficiencies. The modeled volumetric heat source took into account a scale factor, and the shape factors given by the attenuation of the beam within the workpiece and the beam intensity distribution. The numerical model was calibrated using experimental data on the basis of morphological parameters of the weld bead. Results revealed a good correspondence between experiment and simulation analysis of the energy aspects of welding. Considering results of mechanical characterization of butt joints previously obtained, the optimization of welding condition in terms of mechanical properties and energy parameters was performed. The best condition is represented by the lower laser power and higher welding speed that corresponds to the lower heat input given to the joint.
机译:本文研究并报道了与使用2 kW Nd:YAG激光器进行激光焊接工艺效率相关的能源方面。使用氦气和氩气作为保护气对接无填料的AZ31B镁合金薄板,厚度为3.3 mm。建立了三维半静态有限元模型,以评估激光功率和焊接速度对吸收系数,熔化和焊接效率的影响。建模的体积热源考虑了比例因子,以及由工件内光束的衰减和光束强度分布给出的形状因子。使用实验数据根据焊缝的形貌参数对数值模型进行校准。结果表明,实验与焊接能量方面的模拟分析之间具有良好的对应关系。考虑到先前获得的对接接头的机械表征结果,对焊接条件进行了机械性能和能量参数的优化。最佳状态由较低的激光功率和较高的焊接速度代表,这对应于赋予接头的较低热量输入。

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