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双电机驱动自同步振动磨结构分析与设计 被引量:1
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作者 苏丹 王树林 徐波 《材料科学与工艺》 EI CAS CSCD 北大核心 2009年第2期225-226,231,共3页
为了减小传统振动磨形成的乏能区范围,获得高效的研磨效果和狭窄的粒度分布,研制双电机驱动自同步振动磨,利用自同步原理代替强制振动,两台电机通过带动激振偏心块同步运转来保证振动机体按预定的轨迹稳定运动.阐述了双电机驱动自同步... 为了减小传统振动磨形成的乏能区范围,获得高效的研磨效果和狭窄的粒度分布,研制双电机驱动自同步振动磨,利用自同步原理代替强制振动,两台电机通过带动激振偏心块同步运转来保证振动机体按预定的轨迹稳定运动.阐述了双电机驱动自同步振动磨的工作原理和设计方法,并对现存问题进行了分析.通过C语言程序进行设计运算,计算出相应的弹簧刚度,激振力幅值和电机功率符合实际要求.振动磨可广泛应用于材料工程超微细颗粒的制备. 展开更多
关键词 振动磨 自同步振动磨 结构设计 振动强度 材料过程技术
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Self-assembled α-MnO2 urchin-like microspheres as a high-performance cathode for aqueous Zn-ion batteries 被引量:7
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作者 Yunzhao Wu Ye Tao +7 位作者 Xianfu Zhang Kai Zhang Shengbin Chen Yu Liu Yong Ding Molang Cai Xuepeng Liu Songyuan Dai 《Science China Materials》 SCIE EI CSCD 2020年第7期1196-1204,共9页
Aqueous Zn-ion batteries(AZIBs)are one of the promising battery technologies for the green energy storage and electric vehicles.As one attractive cathode material for AZIBs,α-MnO2 materials exhibit superior electroch... Aqueous Zn-ion batteries(AZIBs)are one of the promising battery technologies for the green energy storage and electric vehicles.As one attractive cathode material for AZIBs,α-MnO2 materials exhibit superior electrochemical properties.However,their long-term reversibility is still in great suspense.Considering the decisive effect of the structure and morphology on theα-MnO2 materials,hierarchicalα-MnO2 materials would be promising to improve the cycle performance of AZIB.Here,we synthesized theα-MnO2 urchin-like microspheres(AUM)via a self-assembled method.The porous microspheres composed of one-dimensionalα-MnO2 nanofibers with high crystallinity,which improved the surface area and active sites for Zn2+intercalation.The AUM-based AZIB realized a high initial capacity of 308.0 mA hg-1,and the highest energy density was 396.7 W hkg-1.The kinetics investigation confirmed the high capacitive contribution and fast ion diffusion of the AUM.Ex-situ XRD measurement further verified the synergistic insertion/extraction of H+and Zn2+ions during the charge/discharge process.The superiority of the AUM guaranteed good electrochemical performance and reversible phase evolution,and this application would promote the follow-up research on the advanced AZIB. 展开更多
关键词 aqueous Zn-ion batteries α-MnO2 urchin-like microspheres fast ion diffusion coefficients reversible phase evolution synergistic H+-Zn2+insertion/extraction
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