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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Magnetic Evaluation of Microstructure Changes in 9Cr-1Mo and 2.25Cr-1Mo Steels Using Electromagnetic Sensors
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Magnetic Evaluation of Microstructure Changes in 9Cr-1Mo and 2.25Cr-1Mo Steels Using Electromagnetic Sensors

机译:使用电磁传感器对9Cr-1Mo和2.25Cr-1Mo钢的组织变化进行磁性评估

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摘要

This paper presents results from a multi-frequency electromagnetic sensor used to evaluate the microstructural changes in 9Cr-1Mo and 2.25Cr-1Mo power generation steels after tempering and elevated temperature service exposure. Electromagnetic sensors detect microstructural changes in steels due to changes in the relative permeability and resistivity. It was found that the low frequency inductance value is particularly sensitive to the different relative permeability values of both steels in the different microstructural conditions. The changes in relative per meability have been quantitatively correlated with the microstructural changes due to tempering and long-term thermal exposure, in particular to changes in martensitic/bainitic lath size and number density of carbide precipitates that determine the mean free path to reversible domain wall motion. The role of these microstructural features on pinning of magnetic domain wall motion is discussed.
机译:本文介绍了一种用于评估9Cr-1Mo和2.25Cr-1Mo发电钢在回火和高温使用后的显微组织变化的多频电磁传感器的结果。电磁传感器检测由于相对磁导率和电阻率变化而引起的钢的微观结构变化。发现在不同的微结构条件下,低频电感值对两种钢的不同的相对磁导率值特别敏感。相对磁导率的变化已与回火和长期热暴露引起的微观结构变化定量相关,特别是与马氏体/贝氏体板条尺寸的变化以及碳化物沉淀的数量密度的变化有关,这些变化决定了可逆畴壁的平均自由程运动。讨论了这些微结构特征对磁畴壁运动的钉扎作用。

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