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| 1 | Static Pull and Push Bending Properties of RTM-made TWF Composite Tee-joints显示文摘This paper deals with static pull and push bending tests on two-dimensional (2D) orthogonal EW220/5284 twill weave fabric (TWF) composite tee-joints processed with the resin transfer moulding (RTM) technique. Static pull and push bending properties are determined and failure initiation mechanism is deduced from experimental observations. The experiments show that the failure initiation load, on average, is greater for push bending than for pull bending, whereas the scatter is smaller for push bending than for pull bending. The failure mode of RTM-made tee-joints in pull bending tests can be reckoned to be characteristic of debonding of resin matrix at the interface between the triangular resin-rich zone and the curved web of tee-joint until complete separation of the curved web from the bottom plate. In contrast, as distinct from the products subject to pull bending loading, the RTM tee-joints in push bending tests experience matrix cracking and fibre fracture from outer layers to inner layers of the bottom plate until catastrophic collapse resulting from the bending. Three-dimensional finite element (FE) models are presented to simulate the load transfer path and failure initiation mechanism of RTM-made TWF composite tee-joint based on the maximum stress criterion. Good correlation between experimental and numerical results is achieved. | LUO Chuyang XIONG Junjiang | 2012 | Chinese Journal of Aeronautics2012,25,2: | 6 |
| 2 | Static mechanical properties of hybrid RTM-made composite Ⅰ-and Ⅱ-beams under three-point flexure显示文摘This paper deals with three-point flexure tests on hybrid I-and P-beams,made out of multi-layer carbon fiber/epoxy resin(including twill woven fabric CF3031/5284 and unidirectional cord fabric U3160/5284)reinforced composites,processed using the RTM(resin transfer molding)technique.Static bending properties were determined and failure initiation mechanism was deduced from experimental observations.Failure mode of the tested hybrid RTM-made I-beams can be reckoned to be characteristic of the delamination from the cutout edge within the web and the debonding propagation along the interface between the inverted triangular resin-rich zone and the adjacent curved web until local buckling within the curved webs around the conjunction fillet region.In contrast,as distinct from hybrid RTM I-beams subjected to three-point bending loading,hybrid RTM-made P-beams in three-point flexure tests experienced the resin debonding in the inverted triangular resin-rich zones and the debonding propagation along the interface between the inverted triangular resin-rich zone and the adjacent curved web until complete separation of the curved web from the flange.Progressive damage models(PDMs)were presented to predict failure loads and process of hybrid RTM-made I-and P-beams under three-point flexure.Good correlation was achieved between experimental and numerical results. | Fu Yu Xiong Junjiang Luo Chuyang Yun Xinyao | 2015 | Chinese Journal of Aeronautics2015,28,3: | 5 |
| 3 | Novel polyethyleneimine/TMC-based nanofiltration membrane prepared on a polydopamine coated substrate显示文摘最商业的 NF 膜否定地在 pH 范围被控告一典型喂答案。以便提高阳离子的移动(例如 Mg 2+ 或 Ca 2+), ,我们利用了 polyethyleneimine (PEI ) 和 trimesoyl 氯化物(TMC ) 在 polydopamine 上执行界面的聚合反应获得断然控告的 nanofiltration 膜的涂的 hydrolyzed polyacrylonitrile 底层。膜上的 polydopamine 涂层时间, PEI 集中, TMC 反应时间和集中的效果物理化学的性质和分离性能系统地用扫描电子显微镜学,流的潜力和水接触被调查角度大小。最佳的 NF 膜为二价的离子显示出高拒绝(93.6ce 缺陷, th 猨?猨 吗?? | Zhe Yang Xiaoyu Huang Jianqiang Wang Chuyang Y. Tang | 2018 | Frontiers of Chemical Science and Engineering2018,12,2: | 5 |
| 4 | A 15-year analysis of molecular epidemiology of avian infectious bronchitis coronavirus in China显示文摘 | Zongxi Han Chuyang Sun Baolong Yan Xiaonan Zhang Yu Wang Chengren Li Qingxia Zhang Yazhen Ma Yuhao Shao Qiaoran Liu Xiangang Kong Shengwang Liu | 2010 | Infection Genetics and Evolution2010,,1: | 2 |
| 5 | Recent developments in forward osmosis: Opportunities and challenges显示文摘 | Shuaifei Zhao Linda Zou Chuyang Y. Tang Dennis Mulcahy | 2012 | Journal of Membrane Science2012,,: | 2 |
| 6 | A 15-year analysis of molecular epidemiology of avian infectious bronchitis coronavirus in China显示文摘 | Zongxi Han Chuyang Sun Baolong Yan Xiaonan Zhang Yu Wang Chengren Li Qingxia Zhang Yazhen Ma Yuhao Shao Qiaoran Liu Xiangang Kong Shengwang Liu | 2010 | Infection Genetics and Evolution2010,,1: | 2 |
| 7 | Understanding the efficient microwave absorption for Fe Co@ZnO flakes at elevated temperatures a combined experimental and theoretical approach显示文摘Considerable microwave absorption performance at elevated temperatures is highly demanded in both civil and military fields.Single dielectric or magnetic absorbers are difficult to attain efficient and broadband microwave absorption at the high temperature range of 373 K-573 K,and the evolution mechanism of the microwave absorption is still unclear especially for the magnetic absorbers.Herein,ZnO coated flaky-FeCo composite is proposed to break through the bottleneck,which possesses microwave absorption(RL<-10 dB)that covering the whole X band(8.2 GHz-12.4 GHz)at the temperature range of 298 K-573 K with a thickness of only~2 mm.Moreover,attenuation mechanism and evolution of the microwave absorption properties for the FeCo@ZnO flaky material at elevated temperature has been clearly disclosed by the composition and microstructure characterizations,electromagnetic performance measurements and first principles calculations for the first time.Moreover,the Poynting vector,volume loss density,magnetic field(H)and electric field(E)are simulated by HFSS to understand the interaction between EM waves and the samples at different temperatures,further elaborating the attenuation mechanism in high-temperature environment.This study provides guidance in designing and developing high-temperature microwave absorbers for the next generation. | Kangsen Peng Chuyang Liu Yuhan Wu Gang Fang Guoyue Xu Yujing Zhang Chen Wu Mi Yan | 2022 | Journal of Materials Science & Technology2022,,30: | 2 |
| 8 | Forward osmosis with a novel thin-film inorganic membrane 显示文摘 | YOU Shijie TANG Chuyang YU Chen | 2013 | Environmental Science & Technology2013,47,15: | 1 |
| 9 | Preparation of electrically enhanced forward osmosis(FO)membrane by two-dimensional MXenes for organic fouling mitigation显示文摘In this work,a conductive thin film composite forward osmosis(TFC-FO)membrane was firstly prepared via vacuum filtering MXenes nanolayer on the outer surface of polyethersulfone membrane followed by interfacial polymerization in the other side.Moreover,its feasibility of mitigating organic fouling under electric field was evaluated.Results indicated that the addition of MXenes greatly reduced the electric resistance of membrane from 2.1×10^(12)Ωto 46.8Ω,enhanced the membrane porosity and promoted the membrane performance in terms of the ratio of water flux to reverse salt flux.The modified TFC-FO membrane presented the optimal performance with 0.47 g/m^(2)loading amount of MXenes.Organic fouling experiments using sodium alginate(SA)and bovine serum albumin(BSA)as representative demonstrated that the introduction of MXenes could effectively enhance the anti-fouling ability of TFC-FO membrane under the electric field of 2 V.The interelectron repulsion hindered organic foulants attaching into membrane surface and thus effectively alleviated the membrane fouling.More importantly,the modified TFC-FO membrane showed good stability during the fouling experiment of 10 h.In all,our work proved that introducing MXenes into the porous layer of support is feasible to alleviate organic fouling of FO membrane. | Mengsi Xu Pin Zhao Chuyang Y.Tang Xiawen Yi Xinhua Wang | 2022 | Chinese Chemical Letters2022,33,8: | 1 |
| 10 | Tracing the impact of stack configuration on interface resistances in reverse electrodialysis by in situ electrochemical impedance spectroscopy显示文摘Reverse electrodialysis(RED)is an emerging membrane-based technology for the production of renewable energy from mixing waters with different salinities.Herein,the impact of the stack configuration on the Ohmic and non-Ohmic resistances as well as the performance of RED were systematically studied by using in situ electrochemical impedance spectroscopy(EIS).Three different parameters(membrane type,number of cell pairs and spacer design)were controlled.The Ohmic and non-Ohmic resistances were evaluated for RED stacks equipped with two types of commercial membranes(Type I and Type II)supplied by Fujifilm Manufacturing Europe B.V:Type I Fuji membranes displayed higher Ohmic and non-Ohmic resistances than Type II membranes,which was mainly attributed to the difference in fixed charge density.The output power of the stack was observed to decrease with the increasing number of cell pairs mainly due to the increase in ionic shortcut currents.With the reduction in spacer thickness from 750 to 200μm,the permselectivity of membranes in the stack decreased from 0.86 to 0.79 whereas the energy efificiency losses increased from 31%to 49%.Overall,the output of the present study provides a basis for understanding the impact of stack design on internal losses during the scaling-up of RED. | Wenjuan Zhang Bo Han Ramato Ashu Tufa Chuyang Tang Xunuo Liu Ge Zhang Jing Chang Rui Zhang Rong Mu Caihong Liu Dan Song Junjing Li Jun Ma Yufeng Zhang | 2022 | Frontiers of Environmental Science & Engineering2022,16,4: | 1 |
| 11 | Fouling of reverse osmosis and nanofihration membranes by humic acid-Effects of solution composition and hydrodynamic conditions显示文摘 | Chuyang Y Tang Young-Nam Kwon James O Leckie | 2007 | J Membr Sci2007,290,12: | 1 |
| 12 | Nanofiltration for drinking water treatment: a review显示文摘In recent decades,nanofiltration(NF)is considered as a promising separation technique to produce drinking water from different types of water source.In this paper,we comprehensively reviewed the progress of NFbased drinking water treatment,through summarizing the development of materials/fabrication and applications of NF membranes in various scenarios including surface water treatment,groundwater treatment,water reuse,brackish water treatment,and point of use applications.We not only summarized the removal of target major pollutants(e.g.,hardness,pathogen,and natural organic matter),but also paid attention to the removal of micropollutants of major concern(e.g.,disinfection byproducts,per-and polyfluoroalkyl substances,and arsenic).We highlighted that,for different applications,fit-for-purpose design is needed to improve the separation capability for target compounds of NF membranes in addition to their removal of salts.Outlook and perspectives on membrane fouling control,chlorine resistance,integrity,and selectivity are also discussed to provide potential insights for future development of high-efficiency NF membranes for stable and reliable drinking water treatment. | Hao Guo Xianhui Li Wulin Yang Zhikan Yao Ying Mei Lu Elfa Peng Zhe Yang Senlin Shao Chuyang Y.Tang | 2022 | Frontiers of Chemical Science and Engineering2022,16,5: | 1 |
| 13 | Modified shear lag model for fibers and fillers with ilTegular cross-sectional shapes 显示文摘 | ZHANG Chuyang QIU Yiping | 2003 | Jour- nal of Adhesion Science and Technology2003,17,3: | 1 |
| 14 | Protein fouling of nanofiltration, reverse osmosis, and uhrafiltration membranes-The role of hydrodynamic conditions, solution chemistry, and membrane properties显示文摘 | Yining Wang Chuyang Tang | 2011 | Journal of Membrane Science2011,36,7: | 1 |
| 15 | Rejection of pharmaceuticals by forward osmosis membranes显示文摘 | Xue Jin Junhong Shan Can Wang Jing Wei Chuyang Y. Tang | 2012 | Journal of Hazardous Materials2012,,: | 1 |
| 16 | Colloidal interactions and fouling of NF and RO membranes: A review显示文摘 | Chuyang Y. Tang T.H. Chong Anthony G. Fane | 2010 | Advances in Colloid and Interface Science2010,,1: | 1 |
| 17 | The role of hydrodynamic conditions and solution chemistry on protein fouling during ultrafiltration显示文摘 | Qianhong She Chuyang Y. Tang Yi-Ning Wang Zhenjia Zhang | 2009 | Desalination2009,,3: | 1 |
| 18 | Pomelo Peel-Inspired 3D-Printed Porous Structure for Efficient Absorption of Compressive Strain Energy显示文摘The porous structure in pomelo peel is believed to be responsible for the protection of its fruit from damage during the free falling from a tree.The quantitative understanding of the relationship between the deformation behavior and the porous structure could pave the way for the design of porous structures for efficient energy absorption.Here,a universal feature of pore distribution in pomelo peels along the radial direction is extracted from three varieties of pomelos,which shows strong correlation to the deformation behavior of the peels under compression.Guided by the porous design found in pomelo peels,porous polyether-ether-ketone(PEEK)cube is additively manufactured and possesses the highest ability to absorb energy during compression as compared to the non-pomelo-inspired geometries,which is further confirmed by the finite element simulation.The nature-optimized porous structure revealed here could guide the design of lightweight and high-energy-dissipating materials/devices. | Baisong Yang Wenhui Chen Renlong Xin Xiaohong Zhou Di Tan Chuan Ding You Wu Liang Yin Chuyang Chen Shan Wang Zhenglei Yu Jonathan TPham Sheng Liu Yifeng Lei Longjian Xue | 2022 | Journal of Bionic Engineering2022,19,2: | 1 |
| 19 | Recent developments in forward osmosis: Opportunities and challenges显示文摘 | Shuaifei Zhao Linda Zou Chuyang Y Tang | | Joumal of Membrane Scienec0,396,: | 1 |
| 20 | Effect of membrane chemistry and coating layer on physiochemical properties of thin film composite polyamide RO and NF membranes显示文摘 | Chuyang Y. Tang Young-Nam Kwon James O. Leckie | 2008 | Desalination2008,,1: | 1 |