クリープ損傷をうけた Cr-Mo-V 鋼のラウンドロビン試験による非破壊評価とミクロ損傷解析

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タイトル別名
  • Microstructural Evolution and Round-Robin Non-destructive Evaluations for creep Damage in Cr-Mo-V Steel
  • クリープ ソンショウ オ ウケタ Cr-Mo-Vコウ ノ ラウンドロビン シケン ニ ヨル ヒハカイ ヒョウカ ト ミクロ ソンショウ カイセキ

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We sutdied the evolution of microstructure in a Cr-Mo-V (JIS-SNB16) during creep by three kinds of nondestructive evaluations(NDEs). After a series of creep sample with various strains were obtained under a tensile stress of 25 and 35 MPa at 923K, small samples were removed from the creep samples. Round-robin NDEs were carried out with the small samples. Internal friction with electromagnetic acoustic resonance (EMAR), parameters in magnetic minor hysteresis loops and thermoelectric power(TEP) were measured. Furthermore, the evolution of microstructure was observed with electron backscatter diffraction (EBSD) and transmission electron microscopy (TEM). The results by these NDE techniqes have good correlations with microstructural observations. The combination of these techniques would utilize the advantages of the different methods and compensate for the weaknesses. This study suggests the importance of the combined usage in establishing reliable NDE procedures for the determination of creep damage.

We sutdied the evolution of microstructure in a Cr-Mo-V (JIS-SNB16) during creep by three kinds of nondestructive evaluations(NDEs). After a series of creep sample with various strains were obtained under a tensile stress of 25 and 35 MPa at 923K, small samples were removed from the creep samples. Round-robin NDEs were carried out with the small samples. Internal friction with electromagnetic acoustic resonance (EMAR), parameters in magnetic minor hysteresis loops and thermoelectric power(TEP) were measured. Furthermore, the evolution of microstructure was observed with electron backscatter diffraction (EBSD) and transmission electron microscopy (TEM). The results by these NDE techniqes have good correlations with microstructural observations. The combination of these techniques would utilize the advantages of the different methods and compensate for the weaknesses. This study suggests the importance of the combined usage in establishing reliable NDE procedures for the determination of creep damage.

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