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Prediction of Weld Joint Shape and Dimensions in Laser Welding Using a 3D Modeling and Experimental Validation

机译:用3D建模和实验验证预测激光焊接激光焊接中的尺寸

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摘要

This paper presents an experimentally validated weld joint shape and dimensions predictive 3D modeling for low carbon galvanized steel in butt-joint configurations. The proposed modelling approach is based on metallurgical transformations using temperature dependent material properties and the enthalpy method. Conduction and keyhole modes welding are investigated using surface and volumetric heat sources, respectively. Transition between the heat sources is carried out according to the power density and interaction time. Simulations are carried out using 3D finite element model on commercial software. The simulation results of the weld shape and dimensions are validated using a structured experimental investigation based on Taguchi method. Experimental validation conducted on a 3 kW Nd: YAG laser source reveals that the modelling approach can provide not only a consistent and accurate prediction of the weld characteristics under variable welding parameters and conditions but also a comprehensive and quantitative analysis of process parameters effects. The results show great concordance between predicted and measured values for the weld joint shape and dimensions.
机译:本文介绍了对接关节配置的低碳镀锌钢的实验验证的焊接接合形状和尺寸预测3D模型。所提出的建模方法基于使用温度依赖性材料特性和焓法的冶金转化。使用表面和体积热源研究导通和锁孔模式焊接。热源之间的过渡根据功率密度和相互作用时间进行。使用商业软件上的3D有限元模型进行模拟。使用基于Taguchi方法的结构化实验研究验证了焊接形状和尺寸的仿真结果。在3 kW Nd:YAG激光源上进行的实验验证表明,建模方法不仅可以在可变的焊接参数和条件下提供对焊接特性的一致和准确预测,而且还提供了对工艺参数效应的全面和定量分析。结果在焊接关节形状和尺寸的预测和测量值之间显示出很大的一致性。

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