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Fe-Co-B Soft Magnetic Ribbons: Crystallization Process Microstructure and Coercivity

机译:Fe-Co-B软磁带:结晶过程微结构和矫顽力

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摘要

In this work, a detailed microstructural investigation of as-melt-spun and heat-treated Fe Co B ribbons was performed. The as-melt-spun ribbon was predominantly amorphous at room temperature. Subsequent heating demonstrated an amorphous to crystalline α-(Fe,Co) phase transition at 403 °C. In situ transmission electron microscopy observations, carried out at the temperature range of 25–500 °C and with the heating rate of 200 °C/min, showed that the first crystallized nuclei appeared at a temperature close to 370 °C. With a further increase of temperature, the volume of α-(Fe,Co) crystallites considerably increased. Moreover, the results showed that a heating rate of 200 °C/min provides for a fine and homogenous microstructure with the α-(Fe,Co) crystallites size three times smaller than when the ribbon is heated at 20 °C/min. The next step of this research concerned the influence of both the annealing time and temperature on the microstructure and coercivity of the ribbons. It was shown that annealing at 485 °C for a shorter time (2 s) led to materials with homogenous distribution of α-(Fe,Co) crystallites with a mean size of 30 nm dispersed in the residual amorphous matrix. This was reflected in the coercivity (20.5 A/m), which significantly depended on the volume fraction of crystallites, their size, and distribution.
机译:在这项工作中,对初熔和热处理过的Fe Co B带进行了详细的微观结构研究。初熔带在室温下主要是非晶态的。随后的加热表明在403°C下非晶态到结晶态的α-(Fe,Co)相变。在25–500°C的温度范围内,以200°C / min的加热速率进行的原位透射电子显微镜观察表明,第一个晶化的晶核出现在接近370°C的温度下。随着温度的进一步升高,α-(Fe,Co)晶体的体积大大增加。此外,结果表明,以200°C / min的速度加热可提供精细且均匀的微观结构,其中α-(Fe,Co)晶粒的尺寸比以20°C / min的速度加热带时小三倍。这项研究的下一步涉及退火时间和温度对薄带组织和矫顽力的影响。结果表明,在485°C下进行较短时间(2 s)的退火会导致平均尺寸为30 nm的α-(Fe,Co)微晶均匀分布在残留的非晶基体中。这反映在矫顽力(20.5 A / m)上,矫顽力显着取决于微晶的体积分数,其大小和分布。

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