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测控站点电磁兼容分析与预测技术研究
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作者 孙翱 王斌 +1 位作者 李涛 江崇礼 《飞行器测控学报》 2003年第2期15-18,29,共5页
本文介绍了对测控站点内各测控设备的电磁干扰进行分析和预测的方法.系统采用干扰源与接收机逐对考虑的方式,极大简化了计算.并采用分阶段预测的方法,即分成:快速筛选、幅度筛选、频率筛选和详细预测四个阶段进行逐阶段分析和预测.
关键词 测控站 电磁兼容 分阶段筛选 预测技术 数学模型 频率筛选 电磁干扰
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In situ Nanomechanical Research on Large-Scale Plastic Deformation of Individual Ultrathin Multi-walled Carbon Nanotube
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作者 Guo-xin Chen Jun-feng Cui +4 位作者 Huan-ming Lu Jin-hong Yu Yan Liu He Li Nan Jiang 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2019年第4期485-490,I0003,共7页
Carbon nanotubes are a promising candidate for the application of flexible electronics due to the ultrahigh intrinsic conductivity and excellent mechanical flexibility. In the present work, the morphology of the ultra... Carbon nanotubes are a promising candidate for the application of flexible electronics due to the ultrahigh intrinsic conductivity and excellent mechanical flexibility. In the present work, the morphology of the ultrathin (diameter<20 nm) multi-walled carbon nanotubes (MWCNTs) under an axial compression was investigated by using in-situ transmission electron microscopy. Moreover, the overall dynamic deformation processes and the force-displacement (F-D) curves of the MWCNTs were also examined. Interestingly, the MWCNTs almost restored their original morphology after 15 loading-unloading cycles. The deformation and recovery process indicate that the MWCNTs are flexible and exhibit excellent durability against compression. The Young’s modulus of the MWCNTs is estimated with the value of ∽0.655 TPa derived from the F-D curves fitting. Our results suggest that the ultrathin carbon nanotube structures may have great application potentials in flexible devices. 展开更多
关键词 Carbon nanotubes In-situ transmission electron microscopy Large-scale deformation Young's modulus F-D curve
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