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平板热管式锂离子电池热管理系统仿真分析研究 被引量:4
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作者 王悦齐 钱煜平 +2 位作者 谢翌 李炜烽 张扬军 《推进技术》 EI CAS CSCD 北大核心 2024年第3期172-183,共12页
锂离子电池是航空混合电推进系统的关键子系统,本文针对基于平板热管的航空锂离子电池热管理方案进行设计与性能评估。针对一款锂离子电池模组进行建模与验证,初步设计平板热管方案并进行仿真分析;在原方案基础上,对平板热管散热翅片进... 锂离子电池是航空混合电推进系统的关键子系统,本文针对基于平板热管的航空锂离子电池热管理方案进行设计与性能评估。针对一款锂离子电池模组进行建模与验证,初步设计平板热管方案并进行仿真分析;在原方案基础上,对平板热管散热翅片进行结构优化设计并开展了实验验证,结果表明:优化后的方案可提高系统对流换热量。以优化后的平板热管为基础,结合航空器高空巡航工况的环境温度,平板热管换热性能将得到进一步提升:电池平均温度可降低10.6℃,降幅达18.83%。与水冷方案相比,平板热管优化方案散热能力与之相当,系统减重30%、能耗降低约63%。 展开更多
关键词 混合电推进 锂离子电池 高放电倍率 热管理 平板热管
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Structure and electrochemical hydrogen storage characteristics of La_(0.8-x)Pr_xMg_(0.2)Ni_(3.15)Co_(0.2)Al_(0.1)Si_(0.05) (x=0-0.4) electrode alloys 被引量:3
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作者 张羊换 侯忠辉 +3 位作者 杨泰 张国芳 李霞 赵栋梁 《Journal of Central South University》 SCIE EI CAS 2013年第5期1142-1150,共9页
For the purpose of improving the electrochemical cycle stability of the La-Mg-Ni based A2BT-type electrode alloys, both reducing Mg content and substituting La with Pr were adopted. The Lao.8-xPrxMg0.2Ni3.15Co0.2A10.1... For the purpose of improving the electrochemical cycle stability of the La-Mg-Ni based A2BT-type electrode alloys, both reducing Mg content and substituting La with Pr were adopted. The Lao.8-xPrxMg0.2Ni3.15Co0.2A10.1Si0.05 (x=0, 0.1, 0.2, 0.3, 0.4) electrode alloys were fabricated by casting and annealing. The investigation on the structures and electrochemical performances of the alloys was performed. The obtained results reveal that the as-cast and annealed alloys comprise two major phases, (La, Mg)2Ni7 phase with the hexagonal Ce2NiT-type structure and LaNi5 phase with the hexagonal CaCus-type structure, as well as a little residual LaNi3 phase. It is also found that the addition of Pr element observably affects the electrochemical hydrogen storage characteristics of the alloys, just as the discharge capacity and high rate discharge ability (HRD) first rise then fall with the growing of Pr content, and among all the alloys, the as-cast and annealed (x=0.3) alloys generate the largest discharge capacities of 360.8 and 386.5 mA.h/g, respectively. Additionally, the electrochemical cycle stability of all the alloys markedly grows with the increase of Pr content. The capacity retaining rate (S100) at the 100th charging and discharging cycle is enhanced from 64.98% to 77.55% for the as-cast alloy, and from 76.60% to 95.72% for the as-annealed alloy by rising Pr content from 0 to 0.4. Furthermore, the substitution of Pr for La results in first increase and then decrease in the hydrogen diffusion coefficient (D), the limiting current density (IL) as well as the electrochemical impedance. 展开更多
关键词 A2B7-type electrode alloy LA PR STRUCTURE electrochemical performances
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