首页> 外文会议>International Symposium on Polymer Composites and Polymer Testing >Improved Physical and Electrochemical Hydrogen Storage Kinetics of the Mg_(20)Ni_(10-x)M_x (M=Cu, Co;;x=0, 4) Alloys by Melt Spinning
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Improved Physical and Electrochemical Hydrogen Storage Kinetics of the Mg_(20)Ni_(10-x)M_x (M=Cu, Co;;x=0, 4) Alloys by Melt Spinning

机译:通过熔融纺丝改善Mg_(20)Ni_(10-X)M_X(M = Cu,Co ;; X = 0,4)合金的改进的Mg_(20)Ni_(10-x)M_X(M = Cu,Co ;; x = 0,4)合金

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It has come to light that the Mg2Ni-type alloy with a nanocrystalline/amorphous structure possesses superior hydrogen storage kinetics. The Mg2Ni-type Mg20Ni10-xMx (M=Cu, Co;;x=0, 4) hydrogen storage alloys were synthesized by a melt-spinning technique. The microstructures of the as-cast and spun alloys were characterized by XRD, SEM and HRTEM. The gaseous and electrochemical hydrogen storage kinetics of the alloys was measured. The results show that whatever spinning rate the as-spun (M=Cu) alloys hold an entire nanocrystalline structure. As spinning rate approaches to 20 m/s, the as-spun (M=Co) alloys display a nanocrystalline and amorphous structure, confirming that the substitution of Co for Ni facilitates the glass formation in the Mg2Ni-type alloy. Furthermore, such substitution results in the formation of secondary phases Mg2Cu and MgCo2 instead of changing the major phase of Mg2Ni. The melt spinning markedly improves the gaseous and electrochemical hydrogen storage kinetics of the alloys. The hydrogen absorption ratio ( a R 5 ), hydrogen desorption ratio ( d R 20 ) and the high rate discharge ability (HRD) notably mount up with the growing of the spinning rate.
机译:它已经光明的是,具有纳米晶/非晶结构的Mg2Ni型合金具有优异的储氢动力学。通过熔融纺丝技术合成Mg2NI型Mg20Ni10-XMx(M = Cu,Co ;; X = 0,4)储氢合金。 XRD,SEM和HRTEM的特征在于铸造和纺粘合金的微观结构。测量了合金的气态和电化学储氢动力学。结果表明,无论SA-SPUN(M = Cu)合金保持整个纳米晶体结构的无论纺纱率。如纺丝速度接近到20米/秒,所纺的(M = Co)的合金显示纳米晶和无定形结构,证实了的Co替代Ni有利于在Mg2Ni型合金的玻璃形成。此外,这种取代导致二次相Mg2Cu和MgCO 2的形成,而不是改变Mg2Ni的主要相。熔融纺丝显着改善了合金的气态和电化学储氢动力学。氢吸收比(R 5),氢解吸比(D R 20)和高速率放电能力(HRD)显着地安装在纺纱率的生长下。

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