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On the amorphization behavior and hydrogenation performance of high-energy ball-milled Mg_2Ni alloys

机译:高能球磨Mg_2Ni合金的非晶化行为和氢化性能

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摘要

Amorphous Mg_2Ni alloy was prepared by high energy ball-milling starting with polycrystalline Mg_2Ni which was prepared with the help of a metallurgy method by using a SPEX 8000D mill. The microstructural and phase structure characterization of the prepared materials was performed via scanning electron microscopy, transition electron microscope and X-ray diffraction. The thermal stabilities were investigated by differential scanning calorimetry. The apparent activation energies were determined by means of the Kissinger method. The first and second crystallization reactions take place at -255 °C and -410 °C, and the corresponding activation energy of crystallization is E_(a1) = 276.9 and E_(a2) = 382.4 kJ/mol, respectively. At 3 MPa hydrogen pressure and 250 °C, the hydrogen absorption capacities of crystalline, partially and fully amorphous Mg_2Ni alloy are 2.0 wt.%, 3.2 wt.% and 3.5 wt.% within 30 min, respectively.
机译:通过高能球磨从多晶Mg_2Ni开始制备非晶态Mg_2Ni合金,该多晶Mg_2Ni利用冶金方法借助SPEX 8000D轧机制备。制备的材料的微观结构和相结构表征是通过扫描电子显微镜,过渡电子显微镜和X射线衍射进行的。通过差示扫描量热法研究热稳定性。表观活化能通过基辛格方法确定。第一次和第二次结晶反应在-255°C和-410°C下进行,相应的结晶活化能分别为E_(a1)= 276.9和E_(a2)= 382.4 kJ / mol。在3 MPa氢气压力和250°C下,结晶,部分和完全非晶态的Mg_2Ni合金在30分钟内的氢吸收能力分别为2.0 wt。%,3.2 wt。%和3.5 wt。%。

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