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9篇 您的检索式:作者名="Lu Fuming"
    题名 作者 年代 出处 被引量
1Matrine Inhibits the Activity of Translation Factor eIF4E through Dephosphorylation of 4E-BP1 in Gastric MKN45 Cells显示文摘Tiejun Jiang Yongliang Zhu Cong Luo Xiaoyong Lu Wo Zhang Fuming Qiu Jian Huang 2007Planta Med2007,,11:1
2GSM-based Remote Wireless Automatic Monitoring System for Field Information:A Case Study for Ecological Monitoring of the Oriental Fruit Fly,Bactrocera Dorsalis(Hendel)显示文摘Jiang J A Tseng C L Lu Fuming 2008Computers and ElectTonics in Agriculture2008,62,2:1
3A GSM-based remote wireless automatic monitoring system for field information: a case study for ecological monitoring of the oriental fruit fly, Bactrocera dorsalis (Hendel) 显示文摘Joeair Jiang Chwanlu Tseng Fuming Lu 2008Computers and Electronics in Agriculture2008,62,2:1
4Characterization of diamond MWCNTs composite fiber synthesized under high pressure and high temperature显示文摘A regrown composite fiber was synthesized during the sintering of diamond under high pressure 5.8 GPa and high temperature 1500℃for 1 min,using 3wt%MWCNTs as additive.SEM observation of the fiber after alkali and acid treatment revealed that the outer layer of the fiber is composed of nano-polycrystalline diamond.EDS,XPS,XRD and Raman spectrum analysis further identified that the fiber is composed of MWCNTs in the inner part and nano-polycrystalline diamond in the out layer.It is proposed that the untransformed MWCNTs may act as a template for the regrown outer layer of nano diamond fiber under high pressure and high temperature.Deng Fuming~(1,2) Lu Xuejun~(1,3) Liu Ruiping~1 Xu Guojun~3 Chen Quwu~1 Li Wenzhu~2 (1.Department of Materials Science and Engineering,China University of Mining and Technology,Beijing Campus,Beijing 100083,China) (2.Department of Physics,Zhejiang University,Hangzhou 310027,China) (3.Beijing Institute of Electro-machining,Beijing 100083,China) 2008金刚石与磨料磨具工程2008,28,S1:1
5An approach of dynamic response analysis of nonlinear structures based on least square Volterra kernel function identification显示文摘Analysis of the dynamic response of a complex nonlinear system is always a difficult problem.By using Volterra functional series to describe a nonlinear system,its response analysis can be similar to using Fourier/Laplace transform and linear transfer function method to analyse a linear system’s response.In this paper,a dynamic response analysis method for nonlinear systems based on Volterra series is developed.Firstly,the recursive formula of the least square method is established to solve the Volterra kernel function vector,and the corresponding MATLAB programme is compiled.Then,the Volterra kernel vector corresponding to the nonlinear response of a structure under seismic excitation is identified,and the accuracy and applicability of using the kernel vector to predict the response of a nonlinear structure are analysed.The results show that the Volterra kernel function identified by the derived recursive formula can accurately describe the nonlinear response characteristics of a structure under an excitation.For a general nonlinear system,the first three order Volterra kernel function can relatively accurately express its nonlinear response characteristics.In addition,the obtained Volterra kernel function can be used to accurately predict the nonlinear response of a structure under the similar type of dynamic load.Zhenhao Zhang Jun Xiong Zhenpeng Zhao Fuming Wang Yi Zeng Bing Zhao Lu Ke 2023Transportation Safety and Environment2023,5,2:0
6Defect Engineering in g‑C_(3)N_(4)Quantum‑Dot‑Modified TiO_(2)Nanofiber:Uncovering Novel Mechanisms for the Degradation of Tetracycline in Coexistence with Cu^(2+)显示文摘Herein,g-C_(3)N_(4)quantum-dot-modified TiO_(2)nanofibers were fabricated and used as an efficient photocatalyst for the investigation of the influence of Cu^(2+)and the interaction mechanism between Cu^(2+)and surface defects in tetracycline degradation.Results showed that the effect of Cu^(2+)switched from promoting to inhibiting the tetracycline degradation as the amount of Cu^(2+)accumulated on the catalyst surface increased.The introduction of surface defects can prevent the inhibiting effect of Cu^(2+),resulting in the more complete degradation of tetracycline in contrast to the non-defective sample.Theoretical calculations further revealed that the defects can be used to tune the conduction band of the composite,inducing the reduction reaction of Cu^(2+)and inhibiting the accumulation of Cu on the surface of catalysts.Moreover,the Cu introduced to the catalyst surface provided new active sites,thereby promoting photocatalytic degradation.These findings provide new insights into the design of advanced fiber materials for water purification in complex environments.Jingzhe Zhang Xin Wang Kaixiang Shen Wenjing Lu Jun Wang Fuming Chen 2023Advanced Fiber Materials2023,5,1:0
7Current Efficiency of Low Temperature Aluminum Electrolysis Studied by Neural Network显示文摘LowTemperatUreAluminumElectrolysis(LATE)isgenerallyacceptedtobeadevelopmenttendencyofaluminUmProductionduetOitspotentialofhighCurredEfficiency(CE),lowenergyconsUInption,longcelllifeandeasieradoptionofinertmaterialsforelectrodesandcelllining.BecauseCE...Huimin Lu Zuxian Qiu Keming Fang Fuming Wang Yanruo Hong( Metallurgy School, University of Science and Technology Beijing, Beijing 100083, China)( Department of Nonferrous Metallurgy, Northeastern University, Shenyang 110006, China) 1999International Journal of Minerals,Metallurgy and Materials1999,13,2:0
8Remodeling of the osteoimmune microenvironment after biomaterials implantation in murine tibia: Single-cell transcriptome analysis显示文摘Osseointegration seems to be a foreign body reaction equilibrium due to the complicated interactions between the immune and skeletal systems.The heterogeneity of the osteoimmune microenvironment in the osseointegration of implant materials remains elusive.Here,a single-cell study involving 40043 cells is conducted,and a total of 10 distinct cell clusters are identified from five different groups.A preliminary description of the osteoimmune microenvironment revealed the diverse cellular heterogeneity and dynamic changes modulated by implant properties.The increased immature neutrophils,Ly6C+CCR2hi monocytes,and S100a8hi macrophages induce an aggressive inflammatory response and eventually lead to the formation of fibrous capsule around the stainless steel implant.The enrichment of mature neutrophils,FcgR1hi and differentiated immunomodulatory macrophages around the titanium implant indicates favorable osseointegration under moderate immune response.Neutrophil-depletion mice are conducted to explore the role of neutrophils in osseointegration.Neutrophils may improve bone formation by enhancing the recruitment of BMSCs via the CXCL12/CXCR3 signal axis.These findings contribute to a better knowledge of osteoimmunology and are valuable for the design and modification of‘osteoimmune-smart’biomaterials in the bone regeneration field.Jia Li Congrui Zhao Yangbo Xu Lu Song Yanqi Chen Yuzi Xu Yang Ma Siyuan Wang Antian Xu Fuming He 2023Bioactive Materials2023,,4:0
9Microstructure and properties of the sintered diamond reinforced by diamond-MWCNTs composite fibers显示文摘A new type of sintered diamond reinforced by diamond MWCNTs composite fibers which were randomly orientated and even distributed in the diamond matrix was synthesized by using 3wt%mullti-walled carbon nanotubes(MWCNTs) as starting additive under high pressure of 5.8 GPa at temperature of 1500℃for 1 min.A special polycrystalline diamond structure of direct bonding of both diamond to diamond and diamond to diamond-MWCNTs composite fiber was observed.The testing results show that it possesses not only high hardness(49~52 GPa) and Young’s modulus(878 GPa) but also high bending strength(1320~1540 GPa) and fracture toughness(9.0~9.2 MPa·m1/2) as it was theoretically predicted.The high performances of the composite were contributed by the fiber strengthening effect and the special structure which can offer more extensive diamond to diamond bonding.Deng Fuming~(1,2) Lu Xuejun~(1,3) Liu Ruiping~1 Xu Guojun~3 Chen Quwu~1 Li Wenzhu~2 (1.Department of Materials Science and Engineering,China University of Mining and Technology,Beijing Campus,Beijing,100083,China) (2.Department of Physics,Zhejiang University,Hangzhou,310027,China) (3.Beijing Institute of Electro-machining,Beijing,100083,China) 2008金刚石与磨料磨具工程2008,28,S1:0
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