電磁超音波共鳴法を用いたSUS316ステンレス鋼のクリープ損傷評価(OS9-5 電磁超音波法及び電磁気的方法,OS9 材料損傷・劣化過程の非破壊診断技術)

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  • Electromagnetic Acoustic Resonance to Assess Creep Damage in an Austenitic Stainless Steel

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Electromagnetic acoustic resonance (EMAR) is a contactless resonant method with an electromagnetic acoustic transducer (EMAT). This method is free from extra energy losses, resulting in the measurement of intrinsic ultrasonic attenuation in solids. In this study, the EMAR was applied to detect the creep damage of a Austenite stainless steel (JIS-SUS316). The material was exposed to the temperature of 1073K at various stresses. We measured ultrasonic attenuation for 1-7-MHz frequency range as the creep advanced. The attenuation coefficient exhibits much larger sensitivity to the damage accumulation than the velocity. It shows a maximum around 60 % of the whole life, which is interpreted as resulting from microstructure changes, especially, dislocation mobility. This is supported by TEM observations for dislocation structure. This technique has a potential to assess the damage advance and to predict the creep life of metals.

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