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Effect of a milling surface treatment on the properties of metal hydride alloy particles

机译:铣削表面处理对金属氢化物合金颗粒性能的影响

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This work reports results of studies on the electrochemical and structural properties of a Ti/Zr-based metal hydride alloy covered by Ni and LaNi4,7Sn0,3 powder additives by ball milling. The effect of this treatment is investigated for the activation time, hydrogen storage capacity and equilibrium pressure, cycling stability and the hydration/dehydration kinetics. Charge and discharge cycles show a significant decrease of the activation time due to an increase of the active area caused by the milling treatment, independent of the additive. However, other results have evidenced little effect of the milling surface treatment on the charge storage capacity, hydrogen equilibrium pressure, and hydration/dehydration kinetics, for both the Ni and LaNi4,7Sn0,3 covered materials.
机译:这项工作报告了通过球磨对Ni和LaNi4,7Sn0,3粉末添加剂覆盖的Ti / Zr基金属氢化物合金的电化学和结构性能的研究结果。对于活化时间,储氢量和平衡压力,循环稳定性以及水合/脱水动力学,研究了该处理的效果。充电和放电循环显示活化时间显着减少,这是由于铣削处理引起的有效面积增加,与添加剂无关。但是,其他结果表明,对于Ni和LaNi4,7Sn0,3覆盖材料,铣削表面处理对电荷存储容量,氢平衡压力和水合/脱水动力学影响很小。

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