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Coupled thermodynamic/kinetic analysis of diffusional transformations during laser hardening and laser welding

机译:激光硬化和激光焊接过程中扩散相变的热力学/动力学耦合分析

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摘要

Several important industrial material processes, such as welding and surface treatments with high energy beams, incorporate rapid thermal cycles characterized by high heating/cooling rates and short dwell times. Computational simulation of the evolution of microstructure under these extreme conditions has received rather limited attention. With the advent of modern computational tools regarding alloy thermodynamics and kinetics, it is possible to simulate the progress of diffusional phase transformations and thus to predict microstructural development. In the present work, moving boundary diffusion problems have been simulated for two cases. In the first case the rapid austenitization during laser transformation hardening of a hypoeutectoid steel was examined. The effects of heating rate, maximum temperature, dwell time and initial microstructure fineness were analyzed. In the second case the aging, dissolution and coarsening of strengthening precipitates in the heat affected zone of laser welds in Al-Mg-Si alloys was examined. The simulation provided the variation of the volume fraction and average size of the strengthening phase during the weld thermal cycle. In both cases the calculations were performed by applying the coupled thermodynamics and kinetics approach, incorporated in the DICTRA program. This kind of simulation provides useful information for the design of the above processes.
机译:几种重要的工业材料工艺,例如采用高能束的焊接和表面处理,都具有快速的热循环,其特征在于高的加热/冷却速率和短的停留时间。在这些极端条件下,微观结构演变的计算模拟受到了相当有限的关注。随着有关合金热力学和动力学的现代计算工具的出现,可以模拟扩散相变的进展,从而预测微观结构的发展。在目前的工作中,已经针对两种情况模拟了移动边界扩散问题。在第一种情况下,检查了亚共析钢在激光相变硬化过程中的快速奥氏体化。分析了加热速率,最高温度,保压时间和初始组织细度的影响。在第二种情况下,检查了Al-Mg-Si合金中激光焊接热影响区中强化沉淀物的时效,溶解和粗化。模拟提供了焊接热循环过程中强化阶段的体积分数和平均尺寸的变化。在这两种情况下,都通过应用DICTRA程序中结合的热力学和动力学方法进行计算。这种模拟为上述过程的设计提供了有用的信息。

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