首页> 外文期刊>Powder Metallurgy and Metal Ceramics >Influence of Titanium and Iron Additives to Magnesium on Hydrogen-Sorption Properties, Thermal Stability, and Kinetics of Hydrogen Desorption from MgH2 Phase of Mechanical Alloy
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Influence of Titanium and Iron Additives to Magnesium on Hydrogen-Sorption Properties, Thermal Stability, and Kinetics of Hydrogen Desorption from MgH2 Phase of Mechanical Alloy

机译:钛和铁添加剂对镁的吸附对机械合金MgH2相吸氢性能,热稳定性和氢解吸动力学的影响

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We report on studies of the process of cyclic hydriding-dehydriding (eight cycles) of a mechanical alloy synthesized in a ball mill by grinding powder mixture Mg + 10 wt.% TiH2 + 10 wt.% Fe in argon medium. Hydrogen-sorption properties and thermal stability of the mechanical alloy are studied employing thermodesorption spectroscopy at hydrogen pressure of 0.1 MPa. Hydrogen capacity of the mechanical alloy is determined to be 4.9 wt.%, and onset temperature of hydrogen desorption from the alloy under this study equals 220A degrees C. Kinetics of the process of hydrogen desorption from the hydride phases of the mechanical alloy is examined. The present studies have revealed that mechanical treatment of the magnesium powder in Ar medium with both Fe and Ti additives causes a greater effect on improving the kinetics of hydrogen desorption from hydride phase MgH2 of the alloy and decreasing its thermal stability in comparison with that caused by mechanical treatment of the same powder with either Fe or Ti additives in hydrogen medium.
机译:我们报告了在球磨机中通过在氩气介质中研磨粉末混合物Mg + 10 wt。%TiH2 + 10 wt。%Fe合成的机械合金的循环氢化-脱水(八个循环)过程的研究报告。在0.1 MPa的氢气压力下,采用热脱附光谱法研究了机械合金的氢吸附性能和热稳定性。确定该机械合金的氢容量为4.9 wt。%,并且在此研究中从合金中解吸氢的起始温度等于220A摄氏度。研究了从机械合金的氢化物相中解吸氢的过程动力学。目前的研究表明,与Fe和Ti相比,用Fe和Ti添加剂在Ar介质中对镁粉进行机械处理对改善合金从氢化物相MgH2脱氢的动力学和降低其热稳定性具有更大的影响。在氢气介质中用铁或钛添加剂对同一粉末进行机械处理。

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