Evolution of Temperature, Microstructure and Inter-Granular Stresses During Directionally Solidification Process of a Ni-Based Superalloy

M. Torfeh, J. Aghazadeh, S. Nakhodchi
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引用次数: 2

Abstract

In order to gain a better understanding of the detrimental effects of grain boundaries on the creep and fatigue life of a nickel based directionally solidified super alloys, the effect of the grain mis-orientation and temperature changes on the internal stresses were investigated. The changes of cooling rate, nuclei count and stress level and components in different parts of the casting were considered during solidification process in a Bridgeman furnace. During solidification, constriction of grain growth in one direction, which is due to the heat transfer direction, eliminates grains with large mis-orientations. The remaining grains are close to [001] direction. Temperature profile of the modeled carrot samples demonstrated a significant variation in the cooling rate along the axis of the sample. The mis-orientation of the grains was also characterized. Stress components and effective stress were calculated and it was shown that the effective stress is lower than the yield stress of the alloy.
ni基高温合金定向凝固过程中温度、组织和晶间应力的演变
为了更好地了解晶界对镍基定向凝固高温合金蠕变和疲劳寿命的不利影响,研究了晶粒取向偏差和温度变化对内应力的影响。考虑了铸件在Bridgeman炉凝固过程中冷却速率、核数、应力水平及各部位成分的变化。在凝固过程中,由于传热方向的影响,晶粒在一个方向上的生长收缩消除了具有较大取向偏差的晶粒。剩余晶粒接近[001]方向。模拟胡萝卜样品的温度分布表明,沿样品轴的冷却速率有显著变化。晶粒的错误取向也被表征。计算了应力分量和有效应力,结果表明,有效应力小于合金的屈服应力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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