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6篇 您的检索式:作者名="Luo Hanbing"
    题名 作者 年代 出处 被引量
1Progressive tool failure in high-speed dry milling of Ti-6Al-4V alloy with coated carbide tools显示文摘Anhai Li Jun Zhao Hanbing Luo Zhiqiang Pei Zeming Wang 2012The International Journal of Advanced Manufacturing Technology (-)2012,,5:1
2Numerical and experimental study of hydrodynamic impact and elastic response of one free-drop wedge with stiffened panels 显示文摘Luo Hanbing Wang Hui Soares C Guedes 2012Ocean Engineering2012,40,2:1
3Progressive tool failure in high-speed dry milling of Ti-6A1-4V alloy with coated carbide tools显示文摘Anhai Li Jun Zhao Hanbing Luo 2012Int J Adv Manuf Technol2012,58,5:1
4Sensitivity Comparison of Immunocapture PCR and Classical PCR for Detection of Burkholderia glumae显示文摘The present study combined the fluoride ion-selective electrode( ISE) method with classical PCR to increase the detection efficiency of Burkholderia glumae. The four antisera of rabbit anti whole cell of B. glumae had been successfully obtained by polyclonal antibody technique,which were ASBg14,ASBg32,ASBg26 and ASBg04,respectively. The titers of four antisera reached 1∶ 32 in ODD test and 1∶ 5 120 in agglutination reaction. All antisera were identified to be qualified antibodies through combined method. The specificity of ASBg14 and ASBg32 was very high,but that of ASBg26 and ASBg04 was not very satisfying. The results showed that all tested strains of B. glumae produced 500 bp specific fragments by direct PCR and immunocapture PCR detection,while others showed negative PCR result. Comparing the sensitivity of these two detection methods,direct PCR could detect about 1 × 10~5 cfu / m L of bacterial suspension while immunocapture PCR could detect as few as 1 × 10~3 cfu / m L,10~2 times higher than direct PCR in sensitivity. In the detecting experiments of artificially inoculated seeds,at least two seeds were required in direct PCR,while only one seed was enough for immunocapture PCR detection.Luo Jinyan Liu Hui Chen Lei Wu Hanbing 2015Plant Diseases and Pests2015,6,3:0
5Suppressing the dissolution of vanadium by organic-inorganic hybrid for aqueous zinc-ion batteries显示文摘Vanadium-based materials have been considered as the high promising cathodes for aqueous zinc ion batteries(ZIBs).Nevertheless,the dissolution of vanadium,the structural instability and the poor cy-cling stability largely hindered their applications.Metal organic frameworks(MOFs)and their deriva-tives attracted wide attention for their large specific surface area and structural tunability.Herein,MOFs derived·VO_(2)·Zn_(2)V_(2)O_(7)(MVHA)as organic-inorganic hybrids were constructed by the in-situ substitution method.The mixed valences of V 4+and V 5+between VO_(2)(B)and Zn_(2)V_(2)O_(7)were helpful to improve the electronic conductivity of MVHA cathode,and MOF-5-V acted as a physical barrier to inhibit the ca-thodic dissolution attributing to the particular organic frame structure.The obtained hybrid electrodes could deliver a high specific capacity(312.7 mA h g^(−1)at 1 A g^(−1)),and excellent long-term cycle stability(141.2 mA h g^(−1)after 1000 cycles at 10 A g^(−1)).Assistant density functional theory(DFT)calculations in-dicated that it has an ultra-low diffusion barrier of 0.32 eV for optimal Zn 2+diffusion path in MOF-5-V.The intriguing idea of in-situ compositing vanadium oxide and MOFs derived material opens up a new research direction for high-energy secondary batteries.Zexiang Luo Zhen Liu Hanbing He Zhihao Zhang Yong Chen Chaoqun Peng Jing Zeng 2023Journal of Materials Science & Technology2023,,14:0
6Time-Periodic Fitzhugh-Nagumo Equation and the Optimal Control Problems显示文摘In this work, the authors considered the periodic optimal control problem of Fitzhugh-Nagumo equation. They firstly prove the existence of time-periodic solution to Fitzhugh-Nagumo equation. Then they show the existence of optimal solution to the optimal control problem, and finally the first order necessary condition is obtained by constructing an appropriate penalty function.Hanbing LIU Wenqiang LUO Shaohua LI 2021Chinese Annals of Mathematics,Series B2021,42,3:0
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