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Layer stacked SiO_(x) microparticle with disconnected interstices enables stable interphase and particle integrity for lithium-ion batteries
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作者 Yang Ren Xucai Yin +4 位作者 Lizhi Xiang rang xiao Hua Huo Geping Yin Chunyu Du 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2023年第11期300-307,I0007,共9页
Severe mechanical fractu re and unstable interphase,associated with the large volumetric expansion/contraction,significantly hinder the application of high-capacity SiO_(x)materials in lithium-ion batteries.Herein,we ... Severe mechanical fractu re and unstable interphase,associated with the large volumetric expansion/contraction,significantly hinder the application of high-capacity SiO_(x)materials in lithium-ion batteries.Herein,we report the design and facile synthesis of a layer stacked SiO_(x)microparticle(LS-SiO_(x))material,which presents a stacking structure of SiO_(x)layers with abundant disconnected interstices.This LS-SiO_(x)microparticle can effectively accommodate the volume expansion,while ensuring negligible particle expansion.More importantly,the interstices within SiO_(x)microparticle are disconnected from each other,which efficiently prevent the electrolyte from infiltration into the interior,achieving stable electrode/-electrolyte interface.Accordingly,the LS-SiO_(x)material without any coating delivers ultrahigh average Coulombic efficiency,outstanding cycling stability,and full-cell applicability.Only 6 cycles can attain>99.92%Coulombic efficiency and the capacity retention at 0.05 A g^(-1)for 100 cycles exceeds99%.After 800 cycles at 1 A g^(-1),the thickness swelling of LS-SiO_(x)electrode is as low as 0.87%.Moreover,the full cell with pure LS-SiO_(x)anode exhibits capacity retention of 91.2%after 300 cycles at 0.2 C.This work provides a novel concept and effective approach to rationally design silicon-based and other electrode materials with huge volume variation for electrochemical energy storage applications. 展开更多
关键词 Lithium-ion batteries Silicon oxide Layer stacked structure Disconnected interstices Coulombic efficiency
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精密铸造制壳机械手的优化设计
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作者 让潇 齐洪方 +2 位作者 王泽安 裴后昌 宋少云 《武汉轻工大学学报》 2022年第3期102-108,119,共8页
为了解决在生产过程中人工制壳效率低、工作环境恶劣、工人劳动强度大等问题,设计一款机械手来代替人工制壳并对其夹爪机构进行了优化。利用SolidWorks软件建立了制壳机械手的三维模型,使用AnsysWorkbench软件对机械手的夹爪机构进行了... 为了解决在生产过程中人工制壳效率低、工作环境恶劣、工人劳动强度大等问题,设计一款机械手来代替人工制壳并对其夹爪机构进行了优化。利用SolidWorks软件建立了制壳机械手的三维模型,使用AnsysWorkbench软件对机械手的夹爪机构进行了静力学分析,得到了总变形云图和应力云图,对结构的刚度和强度进行了验证和分析;综合拓扑优化和尺寸优化的方法得到了机械手结构优化的最优解,发现在制壳机械手的刚度和强度均满足实际工作要求的同时,改进的机械手夹爪机构较改进前质量减少了40%。对执行机构夹爪进行了模态分析,对比优化前后夹爪的前6阶固有频率和振型特征,结果表明优化后夹爪的低阶固有频率高于电机所产生的激励频率,避免了发生共振的危险。整个过程确定了结构优化的可行性,为机械手的研发提供了参考。 展开更多
关键词 制壳机械手 优化设计 静力学分析 模态分析 拓扑优化
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