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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Structure, magnetic and Mossbauer studies of mechanically alloyed Fe-20 wt.percent Ni powders
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Structure, magnetic and Mossbauer studies of mechanically alloyed Fe-20 wt.percent Ni powders

机译:机械合金化的Fe-20 wt%Ni粉末的结构,磁性和Mossbauer研究

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摘要

Fe-20 wt.percent Ni alloys were prepared using a planetary ball mill PM 400 from Retsch (with different milling times for OMEGA = 400 rpm, omega = 800 rpm) and P4 vario ball mill from Fritsch (with different milling conditions (OMEGA/omega), OMEGA and omega being the disc and the vial rotation speeds, respectively). The bcc-Fe(Ni) phase formation is identified by X-ray diffraction. The higher the shock power and the higher milling time are, the larger the bcc lattice parameter and the lower the grain size. The highest value of the coercive field is 1420 A/m for Fe-20 wt.percent Ni (with shock mode (424 rpm/100 rpm) after 36 h of milling), while the lowest value is 110 A/m for (400 rpm/800 rpm) after 96 h of milling. The milling performed in the friction mode favors the formation of alloys exhibiting a soft magnetic behavior for Fe-20 wt.percent Ni alloys. The Mossbauer spectra of the alloys recorded at 77 and at 300 K differ according to the milling conditions and give relevant information on the local structure environment in relation with the nature of the mode used (friction or shock mode).
机译:使用Retsch的行星式球磨机PM 400(OMEGA = 400 rpm,omega = 800 rpm,具有不同的研磨时间)和Fritsch的P4 vario球磨机(具有不同的研磨条件(OMEGA /欧米茄(Omega)和欧米茄(Omega)分别是圆盘和样品瓶的旋转速度)。 bcc-Fe(Ni)相的形成通过X射线衍射确定。冲击功率越高,铣削时间越长,bcc晶格参数越大,晶粒尺寸越小。 Fe-20 wt。%Ni的矫顽场的最大值是1420 A / m(铣削36 h后具有冲击模式(424 rpm / 100 rpm)),而最小值(400时为110 A / m研磨96小时后)。以摩擦模式进行的铣削有利于形成对Fe-20%(重量)的Ni合金表现出软磁性的合金。根据铣削条件,在77和300 K下记录的合金的Mossbauer光谱会有所不同,并且会根据所使用的模式(摩擦或冲击模式)的性质提供有关局部结构环境的相关信息。

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