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High-pressure torsion for new hydrogen storage materials

机译:新型储氢材料的高压扭力

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摘要

High-pressure torsion (HPT) is widely used as a severe plastic deformation technique to create ultrafine-grained structures with promising mechanical and functional properties. Since 2007, the method has been employed to enhance the hydrogenation kinetics in different Mg-based hydrogen storage materials. Recent studies showed that the method is effective not only for increasing the hydrogenation kinetics but also for improving the hydrogenation activity, for enhancing the air resistivity and more importantly for synthesizing new nanostructured hydrogen storage materials with high densities of lattice defects. This manuscript reviews some major findings on the impact of HPT process on the hydrogen storage performance of different titanium-based and magnesium-based materials.
机译:高压扭转(HPT)被广泛用作一种严格的塑性变形技术,以创建具有良好机械和功能特性的超细晶粒结构。自2007年以来,该方法已被用于增强不同的基于Mg的储氢材料中的氢化动力学。最近的研究表明,该方法不仅对提高氢化动力学有效,而且对提高氢化活性,增强空气电阻率有效,更重要的是对合成具有高晶格缺陷密度的新型纳米结构储氢材料有效。该手稿回顾了有关HPT工艺对不同钛基和镁基材料储氢性能影响的一些主要发现。

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