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Ameliorated Hydrogen Storage Kinetics of Mg20NiTM3 (M=Co, Cu) Alloys by Melt Spinning

机译:Mg20NiTM3(M = Co,Cu)合金熔解改善的储氢动力学

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In order to obtain a nanocrystalline and amorphous structure in the Mg2Ni-type alloy,the melt spinning was applied to fabricate the Mg20NiTM3(M=Co,Cu) hydrogen storage alloys.The microstructures of the alloys were characterized by XRD,SEM and HRTEM.The effects of the melt spinning on the gaseous and electrochemical hydrogen storage kinetics of the alloys were investigated.The results indicate that the as-spun (M=Co) alloys display a nanocrystalline and amorphous structure as spinning rate grows to 20 m/s,while the as-spun (M=Cu) alloys hold an entire nanocrystalline structure even if a limited spinning rate is applied,suggesting that the substitution of Co for Ni facilitates the glass formation in the Mg2Ni-type alloy.The melt spinning remarkably ameliorates the gaseous hydriding and dehydriding kinetics of the alloys.The hydrogen absorption ratio (Ra5) and hydrogen desorption ratio (Rd20) are enhanced from 81.9% to 94.7% and from 34.9%to 57.3% for the (M=Co) alloy,and from 57.2% to 92.8% and from 21.6% to 49.6% for the (M=Cu)alloy by raising spinning rate from 0 (as-cast was defined as the spinning rate of 0 m/s) to 30 rr/s.Furthermore,the high rate discharge ability (HRD),the limiting current density (IL) and the hydrogen diffusion coefficient (D) of the alloys notably increase with the growing of the spinning rate.
机译:为了在Mg2Ni型合金中获得纳米晶体和无定形结构,施加熔融纺丝以制造Mg20NitM3(M = Co,Cu)储氢合金。通过XRD,SEM和HRTEM表征合金的微观结构。研究了熔融纺丝对合金的气态和电化学储氢动力学的影响。结果表明,AS-Spun(M = CO)合金显示纳米晶体和非晶结构,因为纺纱速率生长至20米/秒,虽然SPUN(M = Cu)合金保持整个纳米晶体结构,即使施加有限的纺纱速率,也表明CO用于Ni的替代促进Mg2Ni型合金中的玻璃形成。熔体旋转显着改善该合金的气态水湿性和脱水动力学。氢吸收比(RA5)和氢解吸比(RD20)从81.9%提高至94.7%,对(M = CO)合金的34.9%至57.3%,57.2 %到92.通过将纺丝速率从0(浇铸定义为0m / s的纺纱速率为0m / s)至30rr / s.furthero,通过将纺丝速率(M = Cu)合金为(m = Cu)合金的21.5%至49.6%。速率放电能力(HRD),限制电流密度(IL)和合金的氢气扩散系数(D)随着纺纱速率的增长而显着增加。

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