Experimental determination and theoretical analysis of local residual stress at grain scale

I. Basu, V. Ocelík, J. Hosson
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引用次数: 6

Abstract

Grain/phase boundaries contribute significantly to build up of residual stresses, owing to varied plastic/thermal response of different grain orientations or phases during thermomechanical treatment. Hence, accurate quantification of such local scale stress gradients in commercial components is important in understanding their mechanical performance. The current work introduces a correlative method utilizing Electron Back Scattered Diffraction and Focused Ion Beam-Digital Image slit milling methodology to accurately determine spatially resolved stress profiles in the vicinity of grain boundaries using commercially pure titanium as a model material. Measured local stress gradients were in good agreement with local misorientation values. The role of dislocation-grain boundary interactions on buildup of local stress gradients is elucidated. Stress profiles near grain boundaries initially display non Hall-Petch characteristics, followed by a typical Hall-Petch type variation of “one over square root of distance”. The observed trends allude to local stress relaxation mechanisms very close to the grain boundaries. The findings indicate that grain scale stress gradients can be significant in terms of playing a crucial role in macroscopic fatigue behavior.
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晶粒尺度局部残余应力的实验测定与理论分析
在热处理过程中,由于不同晶粒取向或相的塑性/热响应不同,晶界/相界对残余应力的形成起着重要作用。因此,准确量化这种局部尺度应力梯度在商业部件是重要的,以了解其力学性能。目前的工作介绍了一种相关的方法,利用电子背散射衍射和聚焦离子束数字图像狭缝铣削方法,以商业纯钛为模型材料,精确确定晶界附近的空间分辨应力剖面。测得的局部应力梯度与局部定向偏差值吻合较好。阐明了位错-晶界相互作用对局部应力梯度形成的作用。晶界附近应力分布最初表现为非Hall-Petch特征,随后出现典型的“1 /距离平方根”的Hall-Petch型变化。观察到的趋势暗示了非常接近晶界的局部应力松弛机制。研究结果表明,晶粒应力梯度在宏观疲劳行为中起着至关重要的作用。
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