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| 1 | Expression of IL-10 and TNF-α in Rats with Cerebral Infarction after Transplantation with Mesenchymal Stem Cells显示文摘我们调查了骨头的效果在老鼠的 MCAO (中间的服的动脉吸藏) 的神经病学的功能的恢复上的导出髓的间充质的干细胞(MSC ) 移植模型和它的 mechanism.MSCs 从男 Sprague Dawley (SD ) 老鼠的骨头髓被孤立。女成年 SD 老鼠随机被分配进 4 个组:假冒操作组, MCAO 组,车辆组和 MCAO +对待 MSCs 的组。MSC 在对待 MSCs 的组被注入老鼠的侧面的室, PBS 的一样的体积被给车辆组。IL-10 和 TNF- 的表情在 MCAO 以后是由在白天 1 和 4 点的 RT-PCR 和 ELISA 察觉的 assayed。梗塞体积被染色 TTC 测量。老鼠经历了的所有行为的测试在前,以及在 MCAO 以后的 1, 4,和 14 天。MSC 显著地在在移植以后的白天 14 点与控制相比改进了功能的恢复。与 MCAO 组和车辆相比,组, IL-10 mRNA 的表示和它的蛋白质显著地在 MSC 组铺平 upregulated。然而, TNF 的表示 -- 4 显著地在在 MSC 的 MCAO 以后组织的一 at 天与 MCAO 组和车辆组的相比减少了。作为结果,有 MSC 的移植显著地减少了在白天 1 和 4 点的梗塞体积。这研究强烈建议有 MSC 的移植能减少 neuronal 损害由在大脑调整 IL-10 和 TNF- 的表达式部分在老鼠张贴焦点的服的局部缺血。细胞与分子的免疫学。2009; 6 (3 ): 207-213。 | Nan Liu Ronghua Chen Houwei Du Jiehua Wang Yixian Zhang Jinsen Wen | 2009 | Cellular & Molecular Immunology2009,6,3: | 40 |
| 2 | Drag models for simulating gas–solid flow in the turbulent fluidization of FCC particles显示文摘This paper examines the suitability of various drag models for predicting the hydrodynamics of the turbulent fluidization of FCC particles on the Fluent V6.2 platform.The drag models included those of Syamlal–O’Brien,Gidaspow,modified Syamlal–O’Brien,and McKeen.Comparison between experimental data and simulated results showed that the Syamlal–O’Brien,Gidaspow,and modified Syamlal–O’Brien drag models highly overestimated gas–solid momentum exchange and could not predict the formation of dense phase in the fluidized bed,while the McKeen drag model could not capture the dilute charac- teristics due to underestimation of drag force.The standard Gidaspow drag model was then modified by adopting the effective particle cluster diameter to account for particle clusters,which was,however, proved inapplicable for FCC particle turbulent fluidization.A four-zone drag model(dense phase,subdense phase,sub-dilute phase and dilute phase)was finally proposed to calculate the gas–solid exchange coefficient in the turbulent fluidization of FCC particles,and was validated by satisfactory agreement between prediction and experiment. | Peng Li Xingying Lan Chunming Xu Gang Wang Chunxi Lu Jinsen Gao | 2009 | Particuology2009,7,4: | 13 |
| 3 | Molecular mechanisms underlying the effects of acupuncture on neuropathic pain显示文摘Acupuncture has been used to treat neuropathic pain for a long time,but its mechanisms of action remain unknown.In this study,we observed the effects of electroacupuncture and manua acupuncture on neuropathic pain and on ephrin-B/EphB signaling in rats models of chronic constriction injury-induced neuropathic pain.The results showed that manual acupuncture and electroacupuncture significantly reduced mechanical hypersensitivity following chronic constriction injury,especially electroacupuncture treatment.Real-time PCR results revealed that ephrin-B1/B3and EphB1/B2 mRNA expression levels were significantly increased in the spinal dorsal horns of chronic constriction injury rats.Electroacupuncture and manual acupuncture suppressed the high expression of ephrin-B1 mRNA,and elevated EphB3/B4 mRNA expression.Electroacupuncture significantly enhanced the mRNA expression of ephrin-B3 and EphB3/B6 in the dorsal horns of neuropathic pain rats.Western blot results revealed that electroacupuncture in particular,and manual acupuncture,significantly up-regulated ephrin-B3 protein levels in rat spinal dorsal horns The results of this study suggest that acupuncture could activate ephrin-B/EphB signaling in neuropathic pain rats and improve neurological function. | Ziyong Ju Huashun Cui Xiaohui Guo Huayuan Yang Jinsen He Ke Wang | 2013 | Neural Regeneration Research2013,8,25: | 8 |
| 4 | Prediction of Coke Yield of FCC Unit Using Different Artificial Neural Network Models显示文摘In fluid catalytic cracking(FCC) unit, it is greatly important to control the coke yield, since the increase of coke yield not only leads to the reduction of total liquid yield, but also affects the heat balance and operation of FCC unit. Consequently, it is significant to predict the coke yield accurately. The coke formation and burning reactions are affected by many parameters which influence each other, so it is difficult to establish a prediction model using traditional models. This paper combines the industrial production data and establishes a generalized regression neural network(GRNN) model and a back propagation(BP) neural network model to predict the coke yield respectively. The comparison and analysis results show that the accuracy and stability of the BP neural network prediction results are better than that of the GRNN. Then, the particle swarm optimization to optimize BP neural network(PSO-BP) and genetic algorithm to optimize the BP neural network(GA-BP) were further used to improve the prediction precision. The comparison of these models shows that they can improve the prediction precision. However, considering the accuracy and stability of the prediction results, the GA-BP model is better than PSO-BP model. | Su Xin Wu Yingya Pei Huajian Gao Jinsen Lan Xingying | 2016 | China Petroleum Processing & Petrochemical Technology2016,18,3: | 7 |
| 5 | One-step synthesis of basic magnesium sulfate whiskers by atmospheric pressure reflux显示文摘 | Xinlong Ma Guoqing Ning Chuanlei Qi Jinsen Gao | 2016 | Particuology2016,14,1: | 7 |
| 6 | The existence of propagated sensation along the meridian proved by neuroelectrophysiology显示文摘Propagated sensation along the meridian can occur when acupoints are stimulated by acupuncture or electrical impulses.In this study,participants with notable propagated sensation along the meridian were given electro-acupuncture at the Jianyu(LI15)acupoint of the large intestine meridian.When participants stated that the sensation reached the back of their hand,regular nervous system action discharge was examined using a physiological recording electrode placed on the superficial branch of the radial nerve.The topographical maps of brain-evoked potential in the primary cortical somatosensory area were also detected.When Guangming(GB37)acupoint in the lower limb and Hegu(LI4)acupoint in the upper limb were stimulated,subjects without propagated sensation along the meridian exhibited a high potential reaction in the corresponding area of the brain cortical somatosensory area.For subjects with a notable propagated sensation along the meridian,the reaction area was larger and extended into the face representative area.These electrophysiological measures directly prove the existence of propagated sensation along the meridian,and the peripheral stimulated site is consistent with the corresponding primary cortical somatosensory area,which presents a high potential reaction. | Jinsen Xu Shuxia Zheng Xiaohua Pan Xiaoxiang Zhu Xianglong Hu | 2013 | Neural Regeneration Research2013,8,28: | 7 |
| 7 | Experimental and computational studies on flow behavior of gas-solid fluidized bed with disparately sized binary particles显示文摘This paper presents experimental and computational studies on the flow behavior of a gas-solid fluidized bed with disparately sized binary particle mixtures.The mixing/segregation behavior and segregation efficiency of the small and large particles are investigated experimentally.Particle composition and operating conditions that influence the fluidization behavior of mixing/segregation are examined.Based on the granular kinetics theory,a multi-fluid CFD model has been developed and verified against the experimental results.The simulation results are in reasonable agreement with experimental data.The results showed that the smaller particles are found near the bed surface while the larger particles tend to settle down to the bed bottom in turbulent fluidized bed.However,complete segregation of the binary particles does not occur in the gas velocity range of 0.695-0.904 m/s.Segregation efficiency increases with increasing gas velocity and mean residence time of the binary particles,but decreases with increasing the small particle concentration.The calculated results also show that the small particles move downward in the wall region and upward in the core.Due to the effect of large particles on the movement of small particles,the small particles present a more turbulent velocity profile in the dense phase than that in the dilute phase. | Jinsen Gao Jian Chang Chunxi Lu Chunming Xu | 2008 | Particuology2008,6,2: | 7 |
| 8 | Numerical simulation of gas-solid flow with two fluid model in a spouted-fluid bed显示文摘The flow characteristics in a spouted-fluid bed differ from those in spouted or fluidized beds because of the injection of the spouting gas and the introduction of a fluidizing gas.The flow behavior of gas-solid phases was predicted using the Eulerian-Eulerian two-fluid model(TFM) approach with kinetic theory for granular flow to obtain the flow patterns in spouted-fluid beds.The gas flux and gas incident angle have a significant influence on the porosity and particle concentration in gas-solid spouted-fluid beds.The fluidizing gas flux affects the flow behavior of particles in the fountain.In the spouted-fluid bed,the solids volume fraction is low in the spout and high in the annulus.However,the solids volume fraction is reduced near the wall. | Shuyan Wang Liqian Zhao Chunsheng Wang Yinsong Liu Jinsen Gao Yang Liu Qinglin Cheng | 2014 | Particuology2014,12,3: | 7 |
| 9 | Effect of wall boundary condition on CFD simulation of CFB risers显示文摘The effect of solid-phase wall boundary condition on the numerical simulation of gas-solid flow in CFB risers containing FCC particles was investigated using the two-fluid model incorporating the kinetic theory of granular flow.Both the Gidaspow drag model and the EMMS-based drag model were used.The Johnson and Jackson(1987) wall boundary condition was applied to describe the interaction between particles and wall.Based on the experimental system of Li and Kwauk(1994),parametric studies of specularity coefficient(φ=1.0,0.6,0.0005,0.00005,0) and particle-wall restitution coefficient(e_w=0.6,0.9,0.95,0.99,0.999) were performed to evaluate their effects on axial voidage profile,solids flux,meso-scale and heterogeneous structures.Simulation results showed that solid-phase wall boundary condition had little effect on axial voidage profile when the Gidaspow drag model was used.However,the specularity coefficient φ had a pronounced influence on flow behavior when the EMMS-based drag model was used,and a small specularity coefficient(φ=0.00005,0) could result in better agreement with experimental data.The particle-wall restitution coefficient e_w plays but a minor role in the holistic flow characteristics. | Xinyu Zhou Jinsen Gao Chunming Xu Xingying Lan | 2013 | Particuology2013,11,5: | 6 |
| 10 | Influence of environmental factors on land-surface water and heat exchange during dry and wet periods in the growing season of semiarid grassland on the Loess Plateau显示文摘On the basis of information from the project 'Land-surface Processes and their Experimental Study on the Chinese Loess Plateau', we analyzed differences in land-surface water and heat processes during the main dry and wet periods of the semiarid grassland growing season in Yuzhong County, as well as the influences of these environmental factors. Studies have shown that there are significant differences in changes of land-surface temperature and humidity during dry and wet periods. Daily average normalized temperature has an overall vertical distribution of 'forward tilting' and 'backward tilting' during dry and wet periods, respectively. During the dry period, shallow soil above 20-cm depth is the active temperature layer. The heat transfer rate in soil is obviously different during dry and wet periods. During the dry period, the ratio of sensible heat flux to net radiation(H/Rn) and the value of latent heat flux to net radiation(LE/Rn) have a linear relationship with 5-cm soil temperature; during the wet period, these have a nonlinear relationship with 5-cm soil temperature, and soil temperature of 16°C is the critical temperature for changes in the land-surface water and heat exchange trend on a daily scale. During the dry period, H/Rn and LE/Rn have a linear relationship with soil water content. During the wet period, these have a nonlinear relationship with 5-cm soil water content, and 0.21 m3 m?3 is the critical point for changes in the land-surface water and heat exchange trend at daily scale. During the dry period, for vapor pressure deficit less than 0.7 k Pa, H/Rn rises with increased vapor pressure deficit, whereas LE/Rn decreases with that increase. When that deficit is greater than 0.7 k Pa, both H/Rn and LE/Rn tend to be constant. During the wet period, H/Rn increases with the vapor pressure deficit, whereas LE/Rn decreases. The above characteristics directly reflect the effect of differences in land-surface environmental factors during land-surface water and heat exchange processes, and indirectly reflect the influences of cloud precipitation processes on those processes. | YUE Ping ZHANG Qiang ZHAO Wen WANG RunYuan ZHANG Liang WANG WenYu SHI JinSen HAO XiaoCui | 2015 | Science China Earth Sciences2015,58,11: | 6 |
| 11 | Modeling of gas-solid flow in a CFB riser based on computational particle fluid dynamics显示文摘A three-dimensional model for gas-solid flow in a circulating fluidized bed(CFB) riser was developed based on computational particle fluid dynamics(CPFD).The model was used to simulate the gas-solid flow behavior inside a circulating fluidized bed riser operating at various superficial gas velocities and solids mass fluxes in two fluidization regimes,a dilute phase transport(DPT) regime and a fast fluidization(FF) regime.The simulation results were evaluated based on comparison with experimental data of solids velocity and holdup,obtained from non-invasive automated radioactive particle tracking and gamma-ray tomography techniques,respectively.The agreement of the predicted solids velocity and holdup with experimental data validated the CPFD model for the CFB riser.The model predicted the main features of the gas-solid flows in the two regimes;the uniform dilute phase in the DPT regime,and the coexistence of the dilute phase in the upper region and the dense phase in the lower region in the FF regime.The clustering and solids back mixing in the FF regime were stronger than those in the DPT regime. | Zhang Yinghui Lan Xingying Gao Jinsen | 2012 | Petroleum Science2012,9,4: | 6 |
| 12 | Synthesis and methane storage of binder-free porous graphene monoliths显示文摘Nanomesh graphene(NMG) obtained by template chemical vapor deposition was used to synthesize the binder-free graphene monoliths by simple tablet pressing.The stacking manner of the NMG sheets was crucial to the cohesion interaction between the graphene sheets,only the NMG materials with a loosely stacking manner could be pressed into binder-free monoliths.At the tableting pressure of 2-8 MPa,both the bulk densities and the specific surface areas of the monoliths keep nearly constant as the tableting pressure increases,indicating that the NMG monoliths have obvious elasticity and a porous structure due to the large corrugations and the mesh structures of the graphene sheets.As a result,an extraordinary methane storage capacity of 236(v/v) at 9 MPa was obtained in the graphene monolith prepared by tableting at 4 MPa. | Guoqing Ning Hao Wang Xiaoxin Zhang Chenggen Xu Guangjin Chen Jinsen Gao | 2013 | Particuology2013,11,4: | 4 |
| 13 | Formation mechanism of propagated sensation along the meridians,as verified by cortical somatosensory-evoked potential topographic maps显示文摘The peripheral driver stimulating theory states that as a driver passes along a certain meridian during acupuncture;the driver provokes nerve sense devices along the meridian,resulting in the nerve impulse entering the central nervous system.Accordingly,volunteers have reported propagated sensations along the meridians (PSM).The present study was designed to utilize a cortical somatosensory-evoked potential (CSEP) topographic map for determining whether stimulation expansion occurs in somatosensory area I when sensation was provoked in individuals with obvious PSM.The sensation was blocked by mechanical compression,and the sensation was imitated in individuals without PSM.Results revealed a red,high-potential signal in the representative area of the lower limbs in individuals with obvious PSM symptoms when the Gall Bladder Meridian (GBM) sensation passed to the head and face.This representative area was near the middle line of the CSEP topographic map,and a red,high-potential signal,which jumps over the representative area of the upper limbs,also appeared in the representative face area,which was at the external region of the CSEP topographic map.However,in individuals exhibiting no PSM,only a red high-potential signal appeared in the representative lower limb area.When Hegu (LI 4) was stimulated in individuals without PSM,an obvious evoked response appeared only in the representative upper limb area.However,when Hegu was stimulated in individuals exhibiting PSM,the response area was larger in the representative upper limb area and extended to the representative face area.When Guangming (GB 37) was stimulated in PSM individuals,the face representation response disappeared and was confined to a foot representation of the somatosensory area I when PSM was blocked by mechanical pressure.Results suggested that mechanical compression blocked PSM,and corresponding changes were exhibited in the CSEP topographic map.These results provide compelling evidence for the hypothesis that peripheral driver stimulation is the key element in producing PSM. | Jinsen Xu Xiaohua Pan Shuxia Zheng Xianglong Hu Zheyan Sa | 2011 | Neural Regeneration Research2011,6,6: | 3 |
| 14 | Soil Moisture Response to Rainfall in Forestland and Vegetable Plot in Taihu Lake Basin,China显示文摘Soil moisture and its spatial pattern are important for understanding various hydrological,pedological,ecological and agricultural processes.In this study,data of rainfall and soil moisture contents at different depths(10 cm,20 cm,40 cm and 60 cm) in forestland and vegetable plot in the Taihu Lake Basin,China were monitored and analyzed for characteristics of soil moisture variation and its response to several typical rainfall events.The following results were observed.First,great temporal variation of soil moisture was observed in the surface layer than in deeper layer in vegetable plot.In contrast,in forestland,soil moisture had similar variation pattern at different depths.Second,initial soil moisture was an important factor influencing the vertical movement of soil water during rainfall events.In vegetable plot,simultaneous response of soil moisture to rainfall was observed at 10-and 20-cm depths due to fast infiltration when initial soil was relatively dry.However,traditional downward response order occurred when initial soil was relatively wet.Third,critical soil horizon interface was an active zone of soil water accumulation and lateral movement.A less permeable W-B soil horizon interface(40-cm depth) in vegetable plot can create perched water table above it and elevate the soil water content at the corresponding depth.Fourth,the land cover was an effective control factor of soil moisture during small and moderate rainfall events.In the forestland,moderate and small rainfall events had tiny influences on soil moisture due to canopy and surface O horizon interception.Fifth,preferential flow and lateral subsurface interflow were important paths of soil water movement.During large and long duration rainfall events,lateral subsurface flow and preferential flow through surface crack or soil pipe occurred,which recharged the deep soil.However,in more concentrated large storm,surface crack or soil pipe connected by soil macropores was the main contributor to the occurrence of preferential flow.Findings of this study provide a theoretical foundation for sustainable water and fertilizer management and land use planning in the Taihu Lake Basin. | LI Qian ZHU Qing ZHENG Jinsen LIAO Kaihua YANG Guishan | 2015 | Chinese Geographical Science2015,25,4: | 3 |
| 15 | Reaction behavior of oil sand in fluidized-bed pyrolysis显示文摘The reaction behavior of oil sand from Inner Mongolia(China) were studied in a fluidizedbed pyrolysis process,and a comparative study was conducted on the properties of the liquid products obtained through fluidized-bed pyrolysis of oil sand and the native bitumen obtained by solvent extraction.The results indicated that the fluidized-bed pyrolysis,a feasible carbon rejection process,can be used to upgrade oil sand.The reaction temperature and time were found to be the key operating parameters affecting the product distribution and yields in fluidized-bed pyrolysis of oil sand.The optimal temperature was 490℃ and the most suitable reaction time was 5 min.Under these operation conditions,the maximum yield of liquid product was 80wt%.In addition,the pyrolysis kinetics of oil sand at different heating rates of 5,10,20 and 30℃/min was investigated using a thermogravimetric analyzer(TGA). | Gao Jinsen Xu Tao Wang Gang Zhang Angui Xu Chunming | 2013 | Petroleum Science2013,10,4: | 2 |
| 16 | Self-assembly with varying hydrophobic centers:Synthesis of red blood cell-like basic magnesium carbonate microspheres显示文摘Basic magnesium carbonate microspheres with a red blood cell(RBC)-like appearance and diameters of ~3μm were synthesized by amphiphilic molecule-participated self-assembly under hydrothermal conditions.In the self-assembly,sodium dodecyl benzene sulfonate served as a template for the formation of Mg(OH)_2 spherical micelles and also as a reactant precursor that releases CO_2 to react with Mg(OH)_2.The growth of the microspheres is driven by the continuous generation of new hydrophobic centers because of the consumption of hydrophilic poles(—SO_3^-).The surfactant-directed self-assembly can be applied to the synthesis of other carbonate or metallic oxide self-assemblies,indicating that it is a universal self-assembly method for amphiphilic molecules. | Xinlong Ma Guoqing Ning Bing Chen Chuanlei Qi Xingying Lan Jinsen Gao | 2015 | Particuology2015,13,5: | 2 |
| 17 | CFD simulation on the gasification of asphalt water slurry in an entrained flow gasifier显示文摘Gasification technology is suggested to utilize asphalt particles, which are produced in the heavy oil deep separation process of using coupled low temperature separation of solvent and post extraction residue. In this work, the asphalt particles were first slurried with water and then gasified to produce synthesis gas. The gasification process of asphalt water slurry in an entrained flow gasifier was simulated using a three-dimensional computational fluid dynamics(CFD) model based on an EulerianLagrangian method. The trajectories and residence time of asphalt particles, and the reaction rates, gas species distribution, temperature field and carbon conversion in the entrained flow gasifier were obtained. The predicted results indicated that the asphalt water slurry was a good feedstock for gasification. Moreover, the effects of particle size, oxygen equivalence ratio, and mass content of asphalt particles on the gasification performance of asphalt water slurry were investigated. These results are helpful for industrial application of asphalt water slurry gasification technology. | Lan Xingying Zhong Hanbin Gao Jinsen | 2014 | Petroleum Science2014,11,2: | 2 |
| 18 | Boosting of reversible capacity delivered at a low voltage below 0.5 V in mildly expanded graphitized needle coke anode for a high-energy lithium ion battery显示文摘The rate performance and cycle stability of graphitized needle coke(GNC)as anode are still limited by the sluggish kinetics and volume expansion during the Li ions intercalation and de-intercalation process.Especially,the output of energy density for lithium ion batteries(LIBs)is directly affected by the delithiation capacity below 0.5 V.Here,the mildly expanded graphitized needle coke(MEGNC)with the enlarged interlayer spacing from 0.346 to 0.352 nm is obtained by the two-step mild oxidation intercalation modification.The voltage plateau of MEGNC anode below 0.5 V is obviously broadened as compared to the initial GNC anode,contributing to the enhancement of Li storage below the low voltage plateau.Moreover,the coin full cell and pouch full cell configured with MEGNC anode exhibit much enhanced Li storage ability,energy density and better cycling stability than those full cells configured with GNC and commercial graphite anodes,demonstrating the practical application value of MEGNC.The superior anode behaviors of MEGNC including the increased effective capacity at low voltage and superior cyclic stability are mainly benefited from the enlarged interlayer spacing,which not only accelerates the Li ions diffusion rate,but also effectively alleviates the volume expansion and fragmentation during the Li ions intercalation process.In addition,the above result is further confirmed by the density functional theory simulation.This work provides an effective modification strategy for the NC-based graphite to enhance the delithiation capacity at a low voltage plateau,dedicated to improving the energy density and durability of LIBs. | Dong Sun Lu Zhao Zhihua Xiao Kai Zhao Rundan Lin Hongmei Song Xilu Zhang Xinlong Ma Chong Peng Xiaoqiao Huang Xingxun Li Jinsen Gao Chunming Xu | 2022 | Journal of Energy Chemistry2022,31,11: | 2 |
| 19 | Light-induced irreversible structural phase transition in trilayer graphene显示文摘A crystal structure has a profound influence on the physical properties of the corresponding material.By synthesizing crystals with particular symmetries,one can strongly tune their properties,even for the same chemical configuration(compare graphite and diamond,for instance).Even more interesting opportunities arise when the structural phases of crystals can be changed dynamically through external stimulations.Such abilities,though rare,lead to a number of exciting phenomena,such as phase-change memory effects.In the case of trilayer graphene,there are two common stacking configurations(ABA and ABC)that have distinct electronic band structures and exhibit very different behaviors.Domain walls exist in the trilayer graphene with both stacking orders,showing fascinating new physics such as the quantum valley Hall effect.Extensive efforts have been dedicated to the phase engineering of trilayer graphene.However,the manipulation of domain walls to achieve precise control of local structures and properties remains a considerable challenge.Here,we experimentally demonstrate that we can switch from one structural phase to another by laser irradiation,creating domains of different shapes in trilayer graphene.The ability to control the position and orientation of the domain walls leads to fine control of the local structural phases and properties of graphene,offering a simple but effective approach to create artificial two-dimensional materials with designed atomic structures and electronic and optical properties. | Jianyu Zhang Jinsen Han Gang Peng Xi Yang Xiaoming Yuan Yongjun Li Jianing Chen Wei Xu Ken Liu Zhihong Zhu Weiqi Cao Zheng Han Jiayu Dai Mengjian Zhu Shiqiao Qin Kostya S.Novoselov | 2020 | Light(Science & Applications)2020,9,1: | 2 |
| 20 | MEASUREMENT AND INFLUENCE FACTOR'S ANALYSING OF INTERFACIAL STRENGTH OF COMPOSITES显示文摘MEASUREMENTANDINFLUENCEFACTOR'SANALYSINGOFINTERFACIALSTRENGTHOFCOMPOSITES¥WangLingsen;LiuRuoyu;ZangJinsen;FanYi(ResearchInsti... | Wang Lingsen Liu Ruoyu Zang Jinsen Fan Yi (Research Institute of Powder Metallurgy, Central South University of Technology, Changsha 410083) | 1996 | 中国有色金属学会会刊:英文版1996,6,3: | 1 |