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The microstructure ofthe Mg/MmNi5-x (CoAlMn )x composite hydrogen storage material preparedby the method of mechanical alloyingwas characterized by X-ray diffraction, SEM and particle size distribution analysis. By measuring PCTcurves, the hydrogen absorption properties of the composite was evaluated.The results show that nanocrystallinecomposite structure can be obtainedunder adequate ball milling condition. The reactive activation and hydrogen absorption capacity are improved compared with the sole MmNi5-x(CoAlMn)x alloy. The effect ofmagnesium on the microstructure andhydrogen absorption properties of thecomposite were also evaluated.
The microstructure of the Mg / MmNi5-x (CoAlMn) x composite hydrogen storage material prepared by the method of mechanical alloying was characterized by X-ray diffraction, SEM and particle size distribution analysis. By PCT PCT, the hydrogen absorption properties of the composite was evaluated. The results show that nanocrystalline composite structure can be obtained under adequate ball milling condition. The reactive activation and hydrogen absorption capacity are improved compared with the sole MmNi5-x (CoAlMn) x alloy. The effect of magnesium on the microstructure and hydrogen absorption properties of the composite was also evaluated as .