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首页> 外文期刊>Metals and Materials >The Performances of Proto-Type Ni/MH Secondary Batteries Using Zr-Based Hydrogen Storage Alloys and Filamentary Type Ni
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The Performances of Proto-Type Ni/MH Secondary Batteries Using Zr-Based Hydrogen Storage Alloys and Filamentary Type Ni

机译:基于Zr基储氢合金和丝状Ni的原型Ni / MH二次电池的性能

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摘要

For the purpose of developing a Zr-based Laves phase alloy with higher capacity and better performance for electrochemical application, extensive work has been carried out. After careful alloy design of ZrMn_2- based hydrogen storage alloys through varying their stoichiometry by means of substituting or adding alloying elements, the Zr_(0.9)Ti_(0.1)(Mn_(0.7)V_(0.5)Ni_(1.4))_(0.92) with high capacity (392 mAh/g at the 0.25C) and improved performance (comparable to that of commercialized AB_5 type alloy) was developed. Another endeavor was made to improve the poor activation property and the low rate capability of the developed Zr-based Laves phase alloy for commercialization. The combination method of hot-immersion and slow-charging was introduced. It was found that electrode activation was greatly improved after hot immersion at 80 deg C for 12 h followed by charging at 0.05C. The effects of this method are discussed in comparison with other activation methods. The combination method was successfully applied to the formation process of 80 Ah Ni/MH cells. A series of systematic investigations has been rendered to analyze the inner cell pressure characteristics of a sealed type Ni-MH battery of the above-mentioned Zr-Ti-Mn-V-Ni alloy was mainly due to the accumulation of oxygen gas during charge/discharge cycling. The fact identified that the surface catalytic activity was affected more dominantly by the oxygen recombination reaction than the reaction surface are was also identified. In order to improve the surface catalytic activity of a Zr-Ti-Mn-V-Ni alloy, which is closely related to the inner pressure behavior in a sealed cell, the electrode was fabricated by mixing the alloy with Cu powder and a filamentary type of Ni and replacing 75 percent of the carbon black with them; thus, the inner cell pressure rarely increases with cycles due to the active gas recombination reaction. Measurements of the surface area of the electrode and the surface catalytic activity showed that the surface catalytic activity for the oxygen recombination reaction was greatly improved by the addition of cu powder and the filamentary type of Ni. Finally, we have collaborated with Hyundai Motors Company o fabrication of the 80Ah cells for Electric Vehicles and evaluated the cell performance.
机译:为了开发用于电化学应用的具有更高容量和更好性能的Zr基Laves相合金,已经进行了广泛的工作。通过替代或添加合金元素通过改变化学计量比对ZrMn_2-基储氢合金进行仔细的合金设计后,Zr_(0.9)Ti_(0.1)(Mn_(0.7)V_(0.5)Ni_(1.4))_(0.92 )具有高容量(在0.25C下为392 mAh / g)和改进的性能(与商业化的AB_5型合金相比)。做出了另一种努力来改善已开发的基于Zr的Laves相合金的不良活化性能和低倍率能力,以实现商业化。介绍了热浸和慢充的组合方法。发现在80℃下热浸12小时,然后在0.05℃下充电后,电极的活化大大改善了。与其他激活方法相比,讨论了该方法的效果。该结合方法成功应用于80 Ah Ni / MH电池的形成过程。已经进行了一系列系统研究以分析上述Zr-Ti-Mn-V-Ni合金的密封型Ni-MH电池的内部电池压力特性,这主要是由于充电/充电过程中氧气的积累放电循环。还确定了以下事实:与反应表面相比,氧重组反应对表面催化活性的影响更大。为了提高Zr-Ti-Mn-V-Ni合金的表面催化活性(与密闭电池的内部压力行为密切相关),通过将合金与Cu粉和丝状混合制备电极镍,并用它们代替75%的炭黑;因此,由于活性气体复合反应,内部电池压力很少随周期增加。电极表面积和表面催化活性的测量表明,通过加入铜粉和Ni的丝状类型,大大提高了氧重组反应的表面催化活性。最后,我们与现代汽车公司合作,制造了用于电动汽车的80Ah电池,并评估了电池性能。

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