首页> 外文会议>Annual Conference on Magnetism and Magnetic Materials >(07A316) In-situ investigation of phase formation in nanocrystalline (Co_(97.5)Fe_(2.5))_(89)Zr_7B_4 alloy by high temperature x-ray diffraction
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(07A316) In-situ investigation of phase formation in nanocrystalline (Co_(97.5)Fe_(2.5))_(89)Zr_7B_4 alloy by high temperature x-ray diffraction

机译:(07A316)通过高温X射线衍射原位研究纳米晶(CO_(97.5)Fe_(2.5)Fe_(2.5))_(89)Zr_7b_4合金的研究

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Crystallization and phase evolution in an (Co_(97.5)Fe_(2.5))_(89)Zr_7B_4 amorphous alloy was studied by high temperature x-ray diffraction (FfTXRD) and transmission electron microscopy (TEM). Co-based nano-composite alloys have zero magnetostriction and a strong response to magnetic field annealing making them interesting for sensor and high frequency power applications. Amorphous alloys, synthesized by single roll melt-spinning, develop a nanocomposite structure after primary crystallization. After annealing at 540 °C for 1 h, TEM images and diffraction patterns confirm a grain size of 19 nm and the presence of at least two phases. HTXRD results show preferential body centered cubic (bcc) nucleation and formation of multiple phases at various stages of crystallization. Only the face centered cubic (fcc) phase remained at temperatures above 600 °C. On heating, the lattice parameter of the fcc phase increases at a rate higher than expected from thermal expansion. This is partially explained by an increase in the Fe-concentration in fcc crystallites.
机译:通过高温X射线衍射(FFTXRD)和透射电子显微镜(TEM)研究了(CO_(97.5)Fe_(2.5)Fe_(2.5))_(89)Zr_7B_4非晶合金(89)Zr_7b_4非晶合金。基于Co-纳米复合合金具有零磁致伸缩和对磁场退火的强烈反应,使得传感器和高频电力应用的有趣。通过单辊熔融纺丝合成的无定形合金,在初级结晶后发生纳米复合材料结构。在540℃下退火1小时后,TEM图像和衍射图案确认晶粒尺寸为19nm,并且存在至少两个阶段。 HTXRD结果表明,优先机体中心立方(BCC)成核和在不同阶段的结晶阶段形成多相。仅在600℃高于600°C的温度下才只占面的立方(FCC)相。在加热时,FCC相的晶格参数以高于预期的热膨胀增加。这是通过FCC微晶中的Fe浓度的增加部分解释。

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