首页> 外文会议>International Conference on Chemical Engineering and Advanced Materials >Influences of Rapid Quenching on the Structures and Electrochemical Performances of La_(0.7)Mg(0.3)Co_(0.45)Ni_(2.55-x)Fe_x (x = 0-0.4) Electrode Alloys
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Influences of Rapid Quenching on the Structures and Electrochemical Performances of La_(0.7)Mg(0.3)Co_(0.45)Ni_(2.55-x)Fe_x (x = 0-0.4) Electrode Alloys

机译:快速淬火对La_(0.7)Mg(0.3)CO_(0.45)Ni_(2.55-x)Fe_x(x = 0-0.4)电极合金的结构和电化学性能的影响

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The influences of rapid quenching on the structures and electrochemical behaviors of La-Mg-Ni system (PuNi_3-type) La_(0.7)Mg_(0.3)Co_(0.45)Ni_(2.55-x)Fe_x (x = 0, 0.1, 0.2, 0.3, 0.4) electrode alloys were systemically investigated. The results show that the rapid quenching, instead of changing the phase structures of the alloys, leads to c axis enlarged and the a axis and cell volumes of the LaNi_5 and (La, Mg)Ni_3 major phases decreased slightly. The morphologies of the as-quenched alloys exhibit a massive structure, which differ from that of the as-quenched ABs-type alloy. The rapid quenching clearly impairs some electrochemical performances of the alloys, involving discharge capacity, high rate discharge ability (HRD) and discharge potential, but it significantly prolongs the cycle life of the alloy. With an increase in the quenching rate from 0 (As-cast was defined as quenching rate of 0 m/s) to 30 m/s, the discharge capacity of the alloy (x = 0.4) decreases from 351.06 to 313.36 mAh/s, the HRD from 69.36 to 50.54%, whereas its cycle life increases from 106 to 166 cycles at a charging discharging current density of 600 mA/g.
机译:快速淬火对La-Mg-Ni系统的结构和电化学行为的影响(PUPi_3型)LA_(0.7)Mg_(0.3)CO_(0.45)Ni_(2.55-x)Fe_x(x = 0,0.1,0.2 ,系统地研究了0.3,0.4)电极合金。结果表明,快速淬火,而不是改变合金的相位结构,导致C轴扩大,LANI_5和(LA,Mg)Ni_3主要相的轴和电池体积略有下降。淬火合金的形态表现出巨大的结构,其不同于淬火的ABS型合金的结构。快速淬火清楚地清楚地损害了合金的一些电化学性能,涉及放电容量,高速率放电能力(HRD)和放电电位,但它显着延长了合金的循环寿命。随着0的淬火速率的增加(以0 m / s的淬火速率定义为0 m / s)至30 m / s,合金(x = 0.4)的放电容量从351.06降低至313.36mah / s, HRD从69.36到50.54%,而其循环寿命从106到166周期增加,充电放电电流密度为600 mA / g。

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