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首页> 外文期刊>Journal of Nondestructive Evaluation >Applications of Thermoelectric Power Measurement to Deterioration Diagnosis of Nuclear Material and Its Principle
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Applications of Thermoelectric Power Measurement to Deterioration Diagnosis of Nuclear Material and Its Principle

机译:热电功率测量在核材料劣化诊断中的应用及其原理

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摘要

In order to non-destructively evaluate changes in toughness of cast duplex stainless steel, which is frequently used in main coolant pipes of PWR type nuclear power plants, due to thermal aging, we tried to apply thermoelectric power (TEP) measurement, because TEP is sensitive to microstructural material changes, and to clarify the mechanism behind TEP changes due to thermal aging. As a result, TEP of cast duplex stainless steel increased with aging time, and good correlations were found between TEP and toughness. Concerning the mechanism, TEP of high and low Cr content alloys was higher than that of intermediate Cr content alloys. Because high and low Cr areas are created in the ferrite phase due to thermal aging. TEP of the entire material increased. Furthermore, when each Cr fluctuating area acted in parallel, the increase in TEP became larger. According to the Mott-Jones theory, TEP is largely related to the electron density of states at the Fermi level. The electron density of states of Fe-Cr-Ni alloys in the valence band was measured with X-ray photoelectron spectroscopy (XPS). As a result, there was a high correlation between the TEP calculated from the XPS spectrum and the measured TEP. Therefore, we showed experimentally that the electron density of states changed due to variations in Cr concentration, which also affect TEP.
机译:为了非破坏性地评估由于热老化而经常在PWR型核电站的主要冷却剂管道中使用的铸造双相不锈钢的韧性变化,我们尝试采用热电功率(TEP)测量,因为TEP为对微结构材料变化敏感,并阐明热老化导致TEP变化的机理。结果,铸造双相不锈钢的TEP随着时效时间的增加而增加,并且发现TEP与韧性之间具有良好的相关性。在机理上,高和低Cr含量合金的TEP高于中Cr含量合金。由于热老化会在铁素体相中产生高和低Cr区域。整个材料的TEP增加。此外,当每个Cr波动区域平行作用时,TEP的增加变大。根据莫特-琼斯理论,TEP在很大程度上与费米能级的电子密度有关。用X射线光电子能谱法(XPS)测量Fe-Cr-Ni合金在价带中的电子态密度。结果,从XPS光谱计算出的TEP与测得的TEP之间具有高度相关性。因此,我们通过实验表明,态电子密度由于Cr浓度的变化而改变,这也影响了TEP。

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