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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 >Effects of particle size and heat treatment on the electrode performance of a low-cobalt atomized AB_5-type hydrogen storage alloy
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Effects of particle size and heat treatment on the electrode performance of a low-cobalt atomized AB_5-type hydrogen storage alloy

机译:粒度和热处理对低钴雾化AB_5型储氢合金电极性能的影响

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摘要

A low-cobalt hydrogen storage alloy with a composition of MLNi_(3.8)Co_(0.2)Fe_(0.2)Mn_(0.4)Al_(0.3) was prepared by a vacuum induction casting method followed by gas atomization processing. The results showed that the atomized powders had lower discharge capacity and poorer activation kinetics but better cycling stability than the as-cast sample. The high amount of oxygen and nitrogen present in the atomized powder and the presence of amorphous phase were the main reasons for the observed low discharge capacity and poor activation performance. The atomized powder with a large particle size showed a lower oxygen content and therefore higher discharge capacity than that with a small particle size. However the favorable effect of the atomization processing on the durability of the hydrogen storage alloy as eliminated after heat treatment at 850 deg C for 6 h.
机译:通过真空感应铸造法,然后通过气体雾化处理,制备了组成为MLNi_(3.8)Co_(0.2)Fe_(0.2)Mn_(0.4)Al_(0.3)的低钴储氢合金。结果表明,与铸态样品相比,雾化粉末具有较低的放电容量和较差的活化动力学,但循环稳定性更好。雾化粉末中存在的大量氧气和氮气以及无定形相的存在是观察到的低放电容量和较差的活化性能的主要原因。粒径大的雾化粉末的氧含量较低,因此与粒径小的雾化粉末相比,放电容量更高。然而,在850℃下热处理6小时后,雾化工艺对储氢合金耐久性的有利影响消失了。

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