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| 1 | Investigating the dynamic mechanical behaviors of polyurea through experimentation and modeling显示文摘Polyurea is widely employed as a protective coating in many fields because of its superior ability to improve the anti-blast and anti-impact capability of structures.In this study,the mechanical properties of polyurea XS-350 were investigated via systematic experimentation over a wide range of strain rates(0.001-7000 s^-1)by using an MTS,Instron VHS,and split-Hopkinson bars.The stress-strain behavior of polyurea was obtained for various strain rates,and the effects of strain rate on the primary mechanical properties were analyzed.Additionally,a modified rate-dependent constitutive model is proposed based on the nine-parameter Mooney-Rivlin model.The results show that the stress-strain curves can be divided into three distinct regions:the linear-elastic stage,the highly elastic stage,and an approximate linear region terminating in fracture.The mechanical properties of the polyurea material were found to be highly dependent on the strain rate.Furthermore,a comparison between model predictions and the experimental stress-strain curves demonstrated that the proposed model can characterize the mechanical properties of polyurea over a wide range of strain rates. | Hao Wang Ximin Deng Haijun Wu Aiguo Pi Jinzhu Li Fenglei Huang | 2019 | Defence Technology(防务技术)2019,15,6: | 13 |
| 2 | Methods of rapid orbit forecasting after maneuvers for geostationary satellites显示文摘A geostationary(GEO) satellite may serve as a navigation satellite,but there is a problem that maneuvers frequently occur and the forces are difficult to model.Based on the technique of determining satellite orbits by transfer,a predicted orbit with high accuracy may be achieved by the method of statis-tical orbit determination in case of no maneuver force.The predicted orbit will soon be invalid after the maneuver starts,and it takes a long time to get a valid orbit after the maneuver ends.In order to improve ephemeris usability,the method of rapid orbit forecasting after maneuvers is studied.First,GEO satellite movement is analyzed in case of maneuvers based on the observation from the orbit meas-urement system by transfer.Then when a GEO satellite is in the free status just after maneuvers,the short arc observation is used to forecast the orbit.It is assumed that the common system bias and biases of each station are constant,which can be obtained from orbit determination with long arc observations.In this way,only 6 orbit elements would be solved by the method of statistical orbit determination,and the ephemeris with high accuracy may be soon obtained.Actual orbit forecasting with short arc observation for SINOSAT-1 satellite shows that,with the tracking network available,the precision of the predicted orbit(RMS of O-C) can reach about 5 m with 15 min arc observation,and about 3 m with 30 min arc observation. | YANG XuHai LI ZhiGang FENG ChuGang GUO Ji SHI HuLi AI GuoXiang WU FengLei QIAO RongChuan | 2009 | Science China(Physics,Mechanics & Astronomy)2009,52,3: | 10 |
| 3 | A thermal-mechanical constitutive model for b-HMX single crystal and cohesive interface under dynamic high pressure loading显示文摘Due to the significant thermal-mechanical effects during hot spot formation in PBX explosives,a thermodynamic constitutive model has been constructed for HMX anisotropic single crystal subjected to dynamic impact loading. The crystal plasticity model based on dislocation dynamics theory was employed to describe the anisotropic plastic behavior along the preferential slip systems. A modified equation of state (EOS) was introduced into the constitutive equations through the decomposing stress tensor and the nonlinear elasticity for materials was taken into account. The one-dimensional strain impact simulations for HMX single crystal and quasi-bicrystal were performed respectively,in which the cohesive elements were inserted over the interface areas for the latter. The predicted particle velocities for the single crystal sample agreed well with the experimental results in the literature. Furthermore,the effects of crystal orientations,interface,misorientations on localized strain,stress and temperature distributions were predicted and discussed. | WU YanQing & HUANG FengLei State Key Laboratory of Explosion Science and Technology,Beijing Institute of Technology,Beijing 100081,China | 2010 | Science China(Physics,Mechanics & Astronomy)2010,53,2: | 4 |
| 4 | Interaction of Caffeine with Bovine Serum Albumin: Determination of Binding Constants and the Binding Site by Spectroscopic Methods显示文摘 | Wu, Qiong Jiang, Fenglei Li, Chaohong Hu, Yanjun Liu, Yi | 2011 | Chinese Journal of Chemistry2011,29,3: | 3 |
| 5 | Multi-level modulation scheme based on PAK algorithm for optical camera communications显示文摘In an optical camera communication(OCC) system, multi-level modulation is essential for data rate enhancement with the finite frame rate of the receiving camera constraint, where the K-means algorithm is widely used as a thresholding scheme. The result of K-means clustering is sensitive to initial cluster centers. In this paper, we propose a multi-level modulation scheme utilizing the pilot-aided K-means(PAK) algorithm. PAK algorithm innovates in both obtaining the state of the stripes propagated through the optical channel under different environments and overcoming the susceptibility of K-means. Our scheme could prompt data rate and improve the performance of OCC. Finally, non-orthogonal multiple access(NOMA) pattern is designed based on the proposed scheme to achieve multiplex communications. | WU Jing CHI Xuefen JI Fenglei JIANG Keyu CHEN Shaoqi LI Shuai | 2022 | Optoelectronics Letters2022,18,3: | 2 |
| 6 | Penetration concrete targets experiments with non-ideal & high velocity between 800 and 1 100 m/s显示文摘 | Wu Haijun Wang Yinan Huang Fenglei | 2008 | International Journal of Modern Physics B2008,22,9: | 1 |
| 7 | A numerical simulation on the perforation of reinforced concrete targets显示文摘 | Fenglei Huang Haijun Wu Qiankun Jin | 2005 | International Journal of Impact Engineering2005,32,14: | 1 |
| 8 | A numerical simulation on the perforation of reinforced concrete targets显示文摘 | Huang Fenglei Wu Haijun Jin Qiankun | 2005 | International Journal of Impact Engineering(In press)2005,,: | 1 |
| 9 | Galangin mitigates glucocorticoid-induced osteoporosis by activating autophagy of BMSCs via triggering the PKA/CREB signaling pathway显示文摘Glucocorticoid-induced osteoporosis(GIOP),one of the most common and serious adverse effects associated with glucocorticoid administration,manifests as decreased bone formation and increased bone resorption,eventually culminating in bone loss.Galangin(GAL)is a flavonoid extracted from the medicinal herbal galangal that possesses a variety of pharmacological activities and can inhibit osteoclastogenesis.However,the effects of GAL on GIOP remain unclear.Our study aims to explore the effects of GAL on GIOP in mice and the underlying mechanism.Our results show that GAL markedly mitigates the severity of dexamethasone(Dex)-induced osteoporosis in mice and potentiates osteogenic differentiation in mouse bone marrow-derived mesenchymal stem cells(BMSCs).Furthermore,GAL also significantly counteracts Dex-mediated suppression of osteogenic differentiation and autophagy in human BMSCs.GAL augments PKA/CREB-mediated autophagic flux in BMSCs and the bones of osteoporotic mice.GAL-mediated osteogenic differentiation in Dex-treated BMSCs is significantly decreased by the PKA inhibitor H89 and autophagy inhibitor 3-methyladenine.Collectively,our data indicate that GAL can ameliorate GIOP,partly by augmenting the mineralization of BMSCs by potentiating PKA/CREB-mediated autophagic flux,highlighting its potential therapeutic use in treating glucocorticoid-related osteoporosis. | Chenying Zeng Shan Wang Huimin Gu Fenglei Chen Ziming Wang Jinteng Li Zhongyu Xie Pei Feng Huiyong Shen Yanfeng Wu | 2023 | Acta Biochimica et Biophysica Sinica2023,55,8: | 0 |
| 10 | Ferroptosis-induced anticancer effect of resveratrol with a biomimetic nano-delivery system in colorectal cancer treatment显示文摘Ferroptosis is a novel form of programmed cell death impelled by iron-dependent lipid peroxidation,which may be a potential strategy for cancer therapy.Here we demonstrated for the first time that Resveratrol(RSV),a traditional Chinese medicine(TCM)chemical monomer,could effectually inhibit the growth of colon cancer cells through the ROS-dependent ferroptosis pathway.Mechanistically,RSV evoked the increase of reactive oxygen species and lipid peroxidation in colorectal cancer cells,and eventually lead to ferroptosis.Furthermore,RSV could promote ferroptosis by downregulating the expression of the channel protein solute carrier family 7 member 11(SLC7A11)and glutathione peroxidase 4(GPX4).To improve the delivery efficiency of RSV,a biomimetic nanocarrier was developed by coating RSV-loaded poly(ε-caprolactone)-poly(ethylene glycol)(PCL-PEG)nanoparticles with erythrocyte membrane(RSV-NPs@RBCm).The RSV-NPs@RBCm provide the possibility to escape macrophage phagocytosis and have a long circulation effect.In addition,when coupled with a tumor-penetrating peptide iRGD,which could trigger enhanced tissue penetration tumor-specifically,the delivery of RSV-NPs@RBCm into tumors would be significantly improved results from the in vivo study demonstrated an excellent treatment efficacy for CRC.Altogether,our study highlighted the therapeutic potential of RSV as a ferroptosis-inducing anticancer agent and when loaded into a biomimetic nanoplatform,it might pave the way for the application of RSV loaded nanosystems for colorectal cancer treatment. | Ziting Zhang You Ji Nan Hu Qinqi Yu Xinrui Zhang Jie Li Fenglei Wu Huae Xu Qiyun Tang Xiaolin Li | 2022 | Asian Journal of Pharmaceutical Sciences2022,17,5: | 0 |
| 11 | Electronic and Nano-structural Modulation of Co(OH)_(2) Nanosheets by Fe-Benzenedicarboxylate for Efficient Oxygen Evolution显示文摘Oxygen evolution reaction(OER)plays a key role in the electrochemical conversion and storage processes,but the sluggish kinetics of OER strongly impedes its large-scale applications.We herein reported the in situ growth of Fe-benzenedicarboxylate(Fe-BDC)on Co(OH)_(2) nanoplates[Fe-BDC/Co(OH)_(2)]that showed remarkably enhanced OER activity than the pristine Co(OH)_(2).The incorporation of Fe species could enhance the intrinsic OER activity of Co and BDC could increase the electrochemically active surface area(ECSA),thus resulting in dramatically enhanced OER activity.In situ Raman spectroscopy characterization disclosed that Fe-CoOOH reconstructed from Fe-BDC/Co(OH)_(2) was the real active site for OER.This work highlights the significance of rational tailoring of the nanostructure and electronic structure of Co(OH)_(2) and provides more opportunities for its widespread applications. | XIAO Long WU Huirong ZHANG Yong SUN Hao ZHANG Wenchao LYU Fenglei DENG Zhao PENG Yang | 2023 | Chemical Research in Chinese Universities2023,39,2: | 0 |
| 12 | Improved Stereoselective Syntheses of (-t-)-Valiolamine and (-I-)-Valienamine Starting from (-)-Shikimic Acid显示文摘 | Fenglei Li Wei Ding Na Quan Jiajia Wu Yungang He Xingliang Zhu Xiaoxin Shi Jianhong Zhao | 2017 | Chinese Journal of Chemistry2017,35,4: | 0 |
| 13 | Shock-induced energy localization and reaction growth considering chemical-inclusions effects for crystalline explosives显示文摘Chemical inclusions significantly alter shock responses of crystalline explosives in macroscale gap experiments but their microscale dynamics origin remains unclear.Herein shock-induced energy localization,overall physical responses,and reactions in a-1,3,5-trinitro-1,3,5-triazinane(a-RDX)crystal entrained various chemical inclusions were investigated by the multi-scale shock technique implemented in the reactive molecular dynamics method.Results indicated that energy localization and shock reaction were affected by the intrinsic factors within chemical inclusions,i.e.,phase states,chemical compositions,and concentrations.The atomic origin of chemical-inclusions effects on energy localization is dependent on the dynamics mechanism of interfacial molecules with free space volume,which includes homogeneous intermolecular compression,interfacial impact and shear,and void collapse and jet.As introducing various chemical inclusions,the initiation of those dynamics mechanisms triggers diverse decay rates of bulk RDX molecules and hereby impacts on growth speeds of final reactions.Adding chemical inclusions can reduce the effectiveness of the void during the shock impacting.Under the shockwave velocity of 9 km/s,the parent RDX decay rate in RDX entrained amorphous carbon decreases the most and is about one fourth of that in RDX with a vacuum void,and solid HMX and TATB inclusions are more reactive than amorphous carbon but less reactive than dry air or acetone inclusions.The lessdense shocking system denotes the greater increases in local temperature and stress,the faster energy liberation,and the earlier final reaction into equilibrium,revealing more pronounced responses to the present intense shockwave.The quantitative models associated with the relative system density(RD_(sys))were proposed for indicating energy-localization mechanisms and evaluating initiation safety in the shocked crystalline explosive.RD_(sys)is defined by the density ratio of defective RDX to perfect crystal after dynamics relaxation and reveals the global density characteristic in shocked systems filled with chemical inclusions.When RD_(sys)is below 0.9,local hydrodynamic jet initiated by void collapse dominates upon energy localization instead of interfacial impact.This study sheds light on novel insights for understanding the shock chemistry and physical-based atomic origin in crystalline explosives considering chemical-inclusions effects. | Ruqin Liu Yanqing Wu Xinjie Wang Fenglei Huang Xiaona Huang Yushi Wen | 2024 | Defence Technology(防务技术)2024,33,3: | 0 |
| 14 | ARoad Segmentation Model Based on Mixture of the Convolutional Neural Network and the Transformer Network显示文摘Convolutional neural networks(CNN)based on U-shaped structures and skip connections play a pivotal role in various image segmentation tasks.Recently,Transformer starts to lead new trends in the image segmentation task.Transformer layer can construct the relationship between all pixels,and the two parties can complement each other well.On the basis of these characteristics,we try to combine Transformer pipeline and convolutional neural network pipeline to gain the advantages of both.The image is put into the U-shaped encoder-decoder architecture based on empirical combination of self-attention and convolution,in which skip connections are utilized for localglobal semantic feature learning.At the same time,the image is also put into the convolutional neural network architecture.The final segmentation result will be formed by Mix block which combines both.The mixture model of the convolutional neural network and the Transformer network for road segmentation(MCTNet)can achieve effective segmentation results on KITTI dataset and Unstructured Road Scene(URS)dataset built by ourselves.Codes,self-built datasets and trainable models will be available on https://github.com/xflxfl1992/MCTNet. | Fenglei Xu Haokai Zhao Fuyuan Hu Mingfei Shen Yifei Wu | 2023 | Computer Modeling in Engineering & Sciences2023,,5: | 0 |