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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Characterizing microstructural changes in ferritic steels by positron annihilation spectroscopy: Studies on modified 9Cr-1Mo steel
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Characterizing microstructural changes in ferritic steels by positron annihilation spectroscopy: Studies on modified 9Cr-1Mo steel

机译:用正电子an没光谱表征铁素体钢的显微组织变化:改性9Cr-1Mo钢的研究

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摘要

Applicability of positron annihilation spectroscopy in probing the microstructural changes in ferritic steels has been investigated with thermal treatment studies on modified 9Cr-1Mo steel, during 300-1273 K. Positron lifetime results are compared with those of ultrasonic velocity and hardness techniques with two initial microstructural conditions i.e., normalized and tempered condition as well as only normalized condition. In first case, positron lifetime is found to be sensitive to small changes in metal carbide precipitation which could not be probed by other two techniques. In later case, positron lifetime is found to be sensitive to defect annealing until 673 K and in distinguishing the growth and coarsening of metal carbide precipitation stages during 773-1073 K. The present study suggests that by combining positron lifetime, ultrasonic velocity and hardness measurements, it is possible to distinguish distinct microstructures occurring at different stages.
机译:通过对改性9Cr-1Mo钢在300-1273 K范围内进行热处理研究,研究了正电子pro没光谱在探测铁素体钢显微组织变化中的适用性。将正电子寿命结果与采用两种初始显微组织的超声速度和硬度技术的结果进行了比较条件,即归一化和回火条件以及仅归一化条件。在第一种情况下,发现正电子寿命对金属碳化物沉淀的微小变化敏感,而其他两种技术无法探测到这些变化。在后来的情况下,发现正电子的寿命对缺陷退火直到673 K敏感,并区分了773-1073 K期间金属碳化物沉淀阶段的生长和粗化。本研究表明,通过结合正电子的寿命,超声速度和硬度测量,可以区分在不同阶段发生的不同微结构。

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