DYNAMICS OF TEMPERING PROCESSES IN STAINLESS STEEL

L. D. Jeer, V. Ocelík, J. Hosson
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Abstract

In this study, we focused on the dynamics of the continuously changing microstructure at an elevated temperature upon tempering of stainless steel. We used a Scanning Electron Microscope (SEM) with an Electron Backscatter Diffraction (EBSD) setup in combination with a High Temperature specimen stage to perform in-situ orientation imaging microscopy experiments. This experimental setup allowed us to observe in-situ the microstructural changes like grain growth, grain-boundary movement and modification in crystal orientations. By subsequent imaging of the outer surface area, the evolution of the microstructure can be examined leading to a better understanding of the dynamics of the tempering process of stainless steel. In particular, we discussed the results obtained of the microstructural changes at a fixed temperature of 500°C. A loss of the EBSD signal started at the triple junctions and at high angle grain boundaries over time and is attributed to oxidation. We concluded that preferred oxidation occurs during treatment and that dynamic in situ observations are possible.
不锈钢回火过程动力学
在本研究中,我们重点研究了不锈钢回火后在高温下持续变化的微观组织的动力学。我们使用扫描电子显微镜(SEM)与电子背散射衍射(EBSD)装置结合高温样品台进行原位定向成像显微镜实验。该实验装置使我们能够现场观察晶粒生长、晶界移动和晶体取向改变等微观结构变化。通过随后的外表面成像,可以检查微观结构的演变,从而更好地理解不锈钢回火过程的动力学。特别地,我们讨论了在固定温度500℃下得到的微观组织变化的结果。随着时间的推移,EBSD信号的丢失始于三联结和高角度晶界,这是由于氧化引起的。我们的结论是,首选氧化发生在处理过程中,动态的原位观察是可能的。
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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CiteScore
1.20
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