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飞机增稳结构振动研究及其裂纹成因分析 被引量:2
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作者 田永卫 魏川 +1 位作者 张书明 闫楚良 《振动.测试与诊断》 EI CSCD 北大核心 2012年第4期547-552,685,共6页
为了分析某型运输机机身尾段增稳结构根部频繁出现裂纹的原因,基于有限元模态分析理论的随机振动响应计算方法,通过逆向工程提出了利用飞行实测振动谱对增稳结构进行虚拟激励,得到结构理论计算的随机振动响应值。根据实测振动数据计算... 为了分析某型运输机机身尾段增稳结构根部频繁出现裂纹的原因,基于有限元模态分析理论的随机振动响应计算方法,通过逆向工程提出了利用飞行实测振动谱对增稳结构进行虚拟激励,得到结构理论计算的随机振动响应值。根据实测振动数据计算结果与理论分析,发现该型飞机增稳结构根部裂纹形成的原因为飞行中部分时段增稳结构已经出现共振或接近共振状态,在共振放大作用下增稳结构根部生成危害飞机飞行安全的裂纹。该分析结果为运输机类飞机增稳结构后续改进和优化设计提供理论参考和数据支持。 展开更多
关键词 增稳结构 模态分析 固有频率 虚拟激励 随机振动响应
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Hetero-metallic lithiophilic sites to assist sustained diffusion-deposition of Li^(+) toward stable lithium metal anodes
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作者 HUANG Shao-zhen HE Pan +2 位作者 YU Hua-ming LI Hui-miao CHEN Li-bao 《Journal of Central South University》 CSCD 2024年第12期4437-4448,共12页
Lithium metal stands out as an exceptionally promising anode material,boasting an extraordinarily high theoretical capacity and impressive energy density.Despite these advantageous characters,the issues of dendrite fo... Lithium metal stands out as an exceptionally promising anode material,boasting an extraordinarily high theoretical capacity and impressive energy density.Despite these advantageous characters,the issues of dendrite formation and volume expansion of lithium metal anodes lead to performance decay and safety concerns,significantly impeding their advancement towards widespread commercial viability.Herein,a lithium-rich Li-B-In composite anode with abundant lithophilic sites and outstanding structural stability is reported to address the mentioned challenges.The evenly distributed Li-In alloy in the bulk phase of anodes act as mixed ion/electron conductors and nucleation sites,facilitating accelerated Li ions transport dynamics and suppressing lithium dendrite formation.Additionally,these micron-sized Li-In particles in LiB fibers framework can enhance overall structural integrity and provide sufficient interior space to accommodate the volume changes during cycling.The electrochemical performance of Li-B-In composite anode exhibits long-term cyclability,superior rate performance and high-capacity retention.This work confirms that the synergy between a 3 D skeleton and hetero-metallic lithiophilic sites can achieve stable and durable lithium metal anodes,offering innovative insights for the practical deployment of lithium metal batteries. 展开更多
关键词 lithium metal anodes lithiophilic sites intermetallic phase enhanced structural stability fast ion diffusion
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