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首页> 外文期刊>Philosophical magazine: structure and properties of condensed matter >Evolution and characterization of dynamically recrystallized microstructure in a titanium-modified austenitic stainless steel using ultrasonic and EBSD techniques
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Evolution and characterization of dynamically recrystallized microstructure in a titanium-modified austenitic stainless steel using ultrasonic and EBSD techniques

机译:钛和奥氏体不锈钢中超声和EBSD技术动态重结晶组织的演变和表征

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A C-scan ultrasonic imaging system was used to investigate the microstructural evolution during dynamic recrystallization (DRX) of a 15Cr-15Ni-2.2Mo-Ti modified austenitic stainless steel (alloy D9). Four specimens were forged at 1273 K to different strains in the range 0.1-0.5. Specimens with true strains of 0.2 or lower did not show any variation in the amplitude of the first back-wall echo. However, a visible variation in the C-scan image was observed at and above the 0.3 strain level. This variation was attributed to the evolution of fine grains. The formation of fine grains was related to DRX, as indicated by electron backscattered diffraction. This study also revealed the characteristics of the DRX or 'necklace grains', as opposed to the so-called parent grains or rest of the microstructure.
机译:使用C扫描超声成像系统研究15Cr-15Ni-2.2Mo-Ti改性奥氏体不锈钢(合金D9)在动态重结晶(DRX)过程中的显微组织演变。将四个标本在1273 K下锻造到0.1-0.5范围内的不同应变。真实应变为0.2或更低的样本在第一后壁回波的振幅上没有任何变化。然而,在0.3应变水平及以上时,在C扫描图像中观察到可见变化。这种变化归因于细晶粒的演化。如电子反向散射衍射所表明的,细晶粒的形成与DRX有关。这项研究还揭示了DRX或“项链颗粒”的特征,与所谓的母体颗粒或其余的微观结构相反。

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