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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Theoretical and experimental study of microstructures and weld pool geometry during GTAW of 304 stainless steel
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Theoretical and experimental study of microstructures and weld pool geometry during GTAW of 304 stainless steel

机译:304不锈钢GTAW时组织和熔池几何形状的理论和实验研究。

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摘要

In this work, temperature field and weld pool geometry during gas tungsten arc welding of 304 stainless steel are predicted by solving the governing equations of heat transfer and fluid flow under quasi-steady state conditions. The model is based on numerical solution of the equations of conservation of mass, momentum, and energy in the weld pool. Weld pool geometry, weld thermal cycles, and various solidification parameters are then calculated by means of the model predictions. The model considers the effects of various process parameters including welding speed and heat input. It is found that the weld pool geometry, predicted by the proposed model, is in reasonable agreement with the corresponding experimentally measured ones. In addition, the solidification behavior of the weld pool can be predicted properly by the model predictions.
机译:在这项工作中,通过求解准稳态条件下的传热和流体流动的控制方程,预测了304不锈钢的钨极气体保护电弧焊接过程中的温度场和焊池几何形状。该模型基于焊缝池中质量,动量和能量守恒方程的数值解。然后,通过模型预测来计算焊缝的几何形状,焊缝热循环和各种凝固参数。该模型考虑了各种工艺参数的影响,包括焊接速度和热量输入。结果表明,该模型预测的焊池几何形状与相应的实验测量值合理吻合。另外,可以通过模型预测适当地预测焊缝的凝固行为。

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