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Grain growth simulation with the second phase particle pinning for heat-affected zone of microalloyed steel welds

机译:微合金钢焊缝热影响区第二相钉扎晶粒生长模拟

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摘要

The second phase particle dispersed in microalloyed steel has different effects on grain growth depending on their size and volume fraction of the second phase particles which will change during welding thermal cycles. The particle coarsening and dissolution kinetics model was analyzed for continuous heating and cooling. In addition, based on experimental data, the coupled equation of grain growth was established by introducing limited size of grain growth with the consideration of the second phase particles pinning effects. Using Monte Carlo method based on experimental data model, the grain growth simulation for heat-affected zone of microalloyed steel welds was achieved. The calculating results were well in agreement with that of experiments.
机译:分散在微合金钢中的第二相颗粒对晶粒的生长有不同的影响,这取决于第二相颗粒的大小和体积分数,在焊接热循环过程中它们会发生变化。分析了连续加热和冷却的颗粒粗化和溶解动力学模型。另外,基于实验数据,通过考虑第二相粒子的钉扎效应,通过引入有限的晶粒生长尺寸来建立晶粒生长的耦合方程。利用基于实验数据模型的蒙特卡洛方法,对微合金钢焊缝的热影响区进行了晶粒长大模拟。计算结果与实验结果吻合良好。

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