首页> 外文会议>China-Japan Bilateral Symposium on High Temperature Strength of Materials >MAGNETIC PROPERTY CHANGE IN AN AUSTENITIC STAINLESS STEEL SUBJECTED TO DAMAGE AT ELEVATED TEMPERATURE - MICROSTRUCTUR RESPONSIBLE FOR MANGETIC PROPERTY -
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MAGNETIC PROPERTY CHANGE IN AN AUSTENITIC STAINLESS STEEL SUBJECTED TO DAMAGE AT ELEVATED TEMPERATURE - MICROSTRUCTUR RESPONSIBLE FOR MANGETIC PROPERTY -

机译:奥氏体不锈钢在升高温度损伤的奥氏体不锈钢中变化 - 显微组织负责磁性 -

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It has been found that magnetic property changes in austenitic stainless steel subjected to creep at high temperature. The change of magnetic property is mainly due to decrease the chromium concentration in the vicinity of grain boundary and transform into martensite in the area. However this result is for short-term creep. It is necessary to evaluate the long-term creep in order to develop non-destructive technique for plants. Moreover it is important to evaluate the fatigue. The change of magnetic property for those damages at high temperatures is investigated. The transformation into martensite is observed for both the long-term creep and fatigue. The magnetic regions are observed in sever deformed area and near crack. Then the formation of magnetic phases is related to the damage. The damage at high temperature can be universally evaluated.
机译:已经发现,在高温下经受蠕变的奥氏体不锈钢磁性变化。磁性的变化主要是由于将晶界附近的铬浓度降低,并在该区域的马氏体转变成马氏体。然而,这个结果用于短期蠕变。有必要评估长期蠕变,以便为植物产生非破坏性技术。此外,重要的是评估疲劳。研究了在高温下损伤的磁性变化。对于长期蠕变和疲劳来说,观察到马氏体的转化。在切割变形区域和近裂缝中观察到磁性区域。然后形成磁阶段的损伤有关。可以普遍评估高温下的损坏。

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