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6篇 您的检索式:作者名="Hongneng"
    题名 作者 年代 出处 被引量
1Prediction of Long-term Fatigue Strength of Quasi-isotropic CFRP Laminates with a Hole Under Compressive Loading显示文摘Kazuhiro Iwai Hongneng Cai Masayuki Nakada Yasushi Miyano 2010Science and Engineering of Composite Materials2010,,4:1
2Prediction of long- term viscoelastic behavior of amorphous resin based on the time- temperature superposition principle显示文摘Nakada M Miyano Y Cai Hongneng 2011Mechanics of Time- Dependent Materials2011,15,3:1
3Long-term fatigue strength prediction of CFRP structure based on micromechanics of failure显示文摘Cai Hongneng Miyano Yasushi Nakada Massyuki 0,,08:1
4Long-term open-hole compression strength of CFRP laminates based on strain invariant failure theory 显示文摘Cai Hongneng Miyano Yasushi Nakada Masayuki 2009Journal of Thermoplastic Composite Materials2009,22,:1
5Study of fatigue properties for weld HAZ of EH36MOD steel显示文摘StudyoffatiguepropertiesforweldHAZofEH36MODsteelCAIHongneng;CHAOTanhua;ZHOUlixia;YANGYongxingandFEIDecai(ProfCAIHongneng,Scho...CAI Hongneng CHAO Tanhua ZHOU lixia YANG Yongxing and FEI Decai(Prof CAI Hongneng, School of Mechanical Engineering, Xi’an Jiaotong University, Xi’an. 710049. FEI Decai.Binglun Group Yantai, 264000.) 1996China Welding1996,5,1:0
6Two-dimensional layered In_(2)P_(3)S_(9): A novel superior anode material for sodium-ion batteries显示文摘Developing reliable and efficient anode materials is essential for the successfully practical application of sodium-ion batteries.Herein,employing a straightforward and rapid chemical vapor deposition technique,two-dimensional layered ternary indium phosphorus sulfide(In_(2)P_(3)S_(9)) nanosheets are prepared.The layered structure and ternary composition of the In_(2)P_(3)S_(9) electrode result in impressive electrochemical performance,including a high reversible capacity of 704 mA h g^(-1) at 0.1 A g^(-1),an outstanding rate capability with 425 mA h g^(-1) at 5 A g^(-1),and an exceptional cycling stability with a capacity retention of88% after 350 cycles at 1 A g^(-1).Furthermore,sodium-ion full cell also affords a high capacity of 308 and114 mA h g^(-1) at 0.1 and 5 A g^(-1).Ex-situ X-ray diffraction and ex-situ high-resolution transmission electron microscopy tests are conducted to investigate the underlying Na-storage mechanism of In_(2)P_(3)S_(9).The results reveal that during the first cycle,the P-S bond is broken to form the elemental P and In_(2)S_(3),collectively contributing to a remarkably high reversible specific capacity.The excellent electrochemical energy storage results corroborate the practical application potential of In_(2)P_(3)S_(9) for sodium-ion batteries.Longsheng Zhong Hongneng Chen Yanzhe Sheng Yiting Sun Yanhe Xiao Baochang Cheng Shuijin Lei 2024Journal of Energy Chemistry2024,90,3:0
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