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FINITE ELEMENT MODEL FOR LASER WELDING OF TITANIUM

机译:钛激光焊接有限元模型

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摘要

This paper presents a finite element numerical analysis of the heat transfer in the laser welding process of Ti6Al4V titanium alloy. For sake of validation, 1.5 mm thick butt joints were made using a fiber laser. The finite element calculation of the process was carried out by a parametric design language (APDL) available in the ANSYS finite element code. The numerical modelling was conducted focusing the attention on the model of the laser-material interaction, which allowed to predict the temperature distribution during the thermal cycle and the related phase transformations. The parametric solution was implemented in order to make it suitable for different welding conditions. The numerical model was calibrated both by comparison between the weld transverse cross section of and me thermal cycles detected by thermocouples during welding. Then the simulation was conducted and the evolution of the temperature distribution during the process was calculated. The comparison between experimental and numerical results stressed the evidence of the suitability of the here-presented model for the simulation of the laser welding process of titanium alloys.
机译:本文介绍了Ti6Al4V钛合金激光焊接过程中传热的有限元数值分析。为了验证,使用光纤激光进行1.5毫米厚的对接接头。该过程的有限元计算由ANSYS有限元代码中可用的参数设计语言(APDL)进行。进行数值建模,将注意力集中在激光材料相互作用的模型上,这允许在热循环和相关相变期间预测温度分布。实施参数溶液以使其适用于不同的焊接条件。通过在焊接期间热电偶检测到的热电偶检测到的焊接横截面和ME热循环之间的比较,校准数值模型。然后进行模拟,并计算过程中温度分布的演化。实验和数值结果之间的比较强调了本文呈现模型用于模拟钛合金激光焊接过程的适用性的证据。

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