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A stochastic model for austenite phase formation during arc welding of a low alloy steel

机译:低合金钢电弧焊过程中奥氏体相形成的随机模型

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摘要

Modeling the microstructure of heat-affected zone (HAZ) in weld area can be useful in predicting mechanical behavior of the weldment. A multi-scale model is proposed to calculate the temperature distribution and to predict the microstructure evolution within the HAZ. Finite difference method was used to develop a computer model for studying the cooling curves during welding, and a stochastic method to analyze the austenite formation and its grain growth in HAZ. The droplet of liquid metal detached from electrode in manual arc metal welding is an important concern in studying the temperature distribution and the austenite grains growth. Both heat content of liquid metal detached from electrode and heat generated by electrical arc were used in calculation of temperature distribution. The stochastic model simulates the austenite phase formation and its growth during welding based on the kinetics of these processes. With this model, it is possible to visualize the topology of austenite phase. This multi-scale model was applied to the welding of low alloy steel. The observed morphology was in good agreement with that predicted by the model.
机译:对焊缝区域中的热影响区(HAZ)的微观结构进行建模可有助于预测焊件的机械性能。提出了一种多尺度模型来计算温度分布并预测热影响区内的微观结构演变。用有限差分法建立了研究焊接过程中冷却曲线的计算机模型,并采用随机方法分析了热影响区的奥氏体形成及其晶粒长大。手工电弧焊中液态金属滴从电极上脱落是研究温度分布和奥氏体晶粒长大的重要问题。从电极分离的液态金属的热量和电弧产生的热量都用于计算温度分布。随机模型基于这些过程的动力学来模拟奥氏体相的形成及其在焊接过程中的生长。使用此模型,可以可视化奥氏体相的拓扑。该多尺度模型被应用于低合金钢的焊接。观察到的形态与模型预测的形态非常吻合。

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