维普中文期刊产品整合服务
33篇 您的检索式:作者名="Song Yingwei"
    题名 作者 年代 出处 被引量
1Investigation of a novel self-sealing pore micro-arc oxidation film on AM60 magnesium alloy显示文摘Micro-arc oxidation(MAO)is one of the promising methods to improve the corrosion resistance of magnesium alloys.However,there are plenty of micro-pores in the traditional MAO films,deteriorating their protection property.A novel self-sealing pore MAO film was developed in this paper.The morphologies and chemical composition of the film were detected by scanning electron microscopy(SEM)and energy dispersive X-ray spectroscopy(EDX).The corrosion behavior was investigated by electrochemical and salt spray tests.The possible film formation and corrosion mechanisms were proposed.The self-sealing pore film presents a blue appearance.Most of the micro-pores in the surface of the film are sealed during the film formation process.The chemical composition of the film mainly contains Mg,O,Ti,F and P.The self-sealing pore film exhibits better corrosion resistance compared with the traditional silicate film.Especially,the self-sealing pore film keeps intact after salt spray test for 2000 h,which can be attributed to its high compactness.Yingwei Song Kaihui Dong Dayong Shan En-Hou Han 2013Journal of Magnesium and Alloys2013,1,1:23
2COVID-19 Outbreak Caused by Contaminated Packaging of Imported Cold-Chain Products—Liaoning Province,China,July 2020显示文摘Summary What is known about this topic?Few major outbreaks of coronavirus disease 2019(COVID-19)have occurred in China after major nonpharmaceutical interventions and vaccines have been deployed and implemented.However,sporadic outbreaks that had high possibility to be linked to cold chain products were reported in several cities of China..What is added by this report?In July 2020,a COVID-19 outbreak occurred in Dalian,China.The investigations of this outbreak strongly suggested that the infection source was from COVID-19 virus-contaminated packaging of frozen seafood during inbound unloading personnel contact.What are the implications for public health practice?Virus contaminated paper surfaces could maintain infectivity for at least 17–24 days at-25℃.Exposure to COVID-19 virus-contaminated surfaces is a potential route for introducing the virus to a susceptible population.Countries with no domestic transmission of COVID-19 should consider introducing prevention strategies for both inbound travellers and imported goods.Several measures to prevent the introduction of the virus via cold-chain goods can be implemented.Huilai Ma1 Jianqun Zhang Ji Wang Ying Qin Cao Chen Yang Song Liang Wang Jun Meng Lingling Mao Fengqin Li Ning Li Jian Cai Yong Zhang Dayan Wang Yunting Xia Hong Wang Shaofeng Jiang Xiang Zhao Peihua Niu Wenjie Tan Tao Ma Yecheng Yao Naiying Mao Zhen Zhu Tianjiao Ji Qian Yang Baoying Huang Li Zhao Jianxing Yu Li Bai Shuangli Zhu Dongyan Wang Yan Zhang Yingwei Sun Mingchun Luan Yanhai Wang Haibo Sun Shihong Yang Zhijian Bo Xiang Ren Zhongjie Li George Fu Gao Wei Yao Wenqing Yao Zijian Feng Wenbo Xu 2021China CDC weekly2021,3,21:16
3BMP2 and VEGF promote angiogenesis but retard terminal differentiation of osteoblasts in bone regeneration by up-regulating Idl显示文摘不适当的 vascularization 限制骨头缺点的修理。以便改进 angiogenesis 并且加速成骨,有在骨头新生的基因修正的 co 有教养的房间的协同在这研究被调查。Endothelial 祖先房间(EPC ) 和骨头髓干细胞(BMSC ) 是有脉管的 endothelial 生长因素(VEGF ) 和骨头的基因的 transfected 形态基因的蛋白质 2 (BMP2 ) 由侵入人体气管粘膜的病菌分别地。co 有教养的房间,包括 BMSC + EPC, Ad-BMP2BMSC + EPC, BMSC + Ad-VEGFEPC,和 Ad-BMP2BMSC + 指定 Ad-VEGFEPC 组织为四个组,在 alginate 胶化上被播种然后肌内地植入进老鼠在 angiogenesis 和成骨上评估效果。VEGF 和 BMP2 能导致禁止者的 overexpression DNA 有约束力 1 (Id1 ) 显著地在 vitro 和增加支持了试管形成的基因在在培植以后的 Ad-BMP2BMSC + Ad-VEGFEPC 组的血容器的数量。不过, Id1 的 overexpression 延迟了造骨细胞和骨头形成的终端区别。后来,在 transcriptional 水平,钙小瘤,和碱的磷酸酶(高山) 活动的 osteogenic 基因表示证明渐渐的减少和最新形成的成骨区域的数量在 Ad-BMP2BMSC + Ad-VEGFEPC 组展出了小增加。这发现建议在 VEGFEPC 和 BMP2BMSCs 的 Id1 表示的一条平衡规定可能对为骨头新生的基于房间、基于基因的途径批评。Xiaobin Song Shaohua Liu Xun Qu Yingwei Hu Xiaoying Zhang Tao Wang Fengcai Wei 2011Acta Biochimica et Biophysica Sinica2011,43,10:13
4In Situ Growth Process of Mg-Al Hydrotalcite Conversion Film on AZ31 Mg Alloy显示文摘In this study,an environment-friendly hydrotalcite film has been deposited on AZ31 Mg alloy by a twostep technique.To improve conversion film technique and control film properties,batch studies have been carried out to address various process parameters such as immersion time,pH value,and temperature of the treatment solution.The morphologies and chemical composition were characterized by scanning electron microscopy(SEM) and energy dispersive X-ray spectroscopy(EDS).The corrosion resistance of the samples with the various final films was then further compared by polarization curves.It can be concluded from the results that,at low value of pH,temperature,or long deposition time,the precursor film is mainly composed of a cracked layer.The transformation of hydrotalcite film is largely influenced by the pH value.There are optimum values of pH,temperature of the coating bath and immersion time for the film formation process to achieve the best quality and corrosion resistance of the hydrotalcite film.The optimum process is as follows:the sample is first immersed in the pretreatment solution with a pH value of about 8 at a temperature of 60 ℃ for 30 min to form a precursor film and then this precursor film is immersed into the post treatment solution with a pH of 10.5 at 80 ℃ for 1.5 h to obtain the Mg—Al hydrotalcite conversion film.Jun Chen Yingwei Song Dayong Shan En-Hou Han 2015Journal of Materials Science & Technology2015,31,4:10
5Effect of corrosive media on galvanic corrosion of complicated tri-metallic couples of 2024 Al alloy/Q235 mild steel/304 stainless steel显示文摘Galvanic corrosion of tri-metallic couples is more complicated than that of bi-metallic couples. In this study, the effect of the pH of corrosive media on the galvanic corrosion of 2024 A1 alloy/Q235 mild steel/304 stainless steel tri-metallic couples was investigated using potentiodynamic polarization, scanning electron microscopy, scanning vibrating electrode technique and a multi-channel galvanic corrosion meter. The results show that 2024 always acts as the only anode in 3.5 wt% NaCl at pH 5.56,9.72 and 12.0, while both Q235 and 2024 act as anodes at pH 2.39 in the initial stage and then the role of Q235 changes at longer coupling time, which can be attributed to the effect of pH on the surface film of 2024. It is also found that the galvanic current density of a tri-metallic couple is the superposition of two bi-metallic couples when cathodic reactions are controlled by the diffusion of oxygen, otherwise it is smaller than that of the sum of two bi-metallic couples. The localized corrosion instead of uniform corrosion of anodic metal is accelerated by galvanic corrosion.Linjun Shi Xiuying Yang Yingwei Song Dan Liua Kaihui Dong Dayong Shan En-Hou Han 2019Journal of Materials Science & Technology2019,35,9:8
6Pitting corrosion of a Rare Earth Mg alloy GW93显示文摘Pitting corrosion of magnesium(Mg) alloys is greatly associated with their microstructure, especially second phases. The second phases in traditional Mg alloys such as AZ91 are electrochemically nobler than Mg matrix, while the second phases in Rare earth(RE) Mg alloy GW93 are more active than Mg matrix. As a result, the pitting corrosion mechanism of Mg alloy GW93 is different from the traditional ones. This paper aims to clarify the pitting corrosion mechanism of Mg alloy GW93 through the studies of Volta potential by Scanning Kelvin Probe Force Microscopy(SKPFM), corrosion morphology by Scanning Electron Microscope(SEM), and corrosion resistance by electrochemical tests. Results reveal that the pitting corrosion of GW93 includes three stages, first, dissolution of the second phases, followed by corrosion of Mg matrix adjacent to the dissolved second phases, and finally, propagation of corrosion pits along the depth direction of the dissolved second phases. Anodic second phases and enrichment of Clin the thick corrosion product films dominate the propagation of pitting corrosion.Yingwei Song Dayong Shan En-Hou Han 2017Journal of Materials Science & Technology2017,33,9:8
7Influence of yttrium element on the corrosion behaviors of Mg-Y binary magnesium alloy显示文摘The influence of yttrium on the corrosion behavior of Mg–Y alloys has been investigated by electrochemical measurements,scanning electron microscope(SEM)observation,X-ray diffraction(XRD),and X-ray photoelectron spectroscopy(XPS)analysis in NaCl solution.The corrosion resistance decreased with increasing Y content due to increasing Y-rich zone.The solid-dissolved Y improved the chemical activity of the substrate which promoted the corrosion reaction by forming Y2O3.The corrosion resistance was improved by increasing the Y concentration of matrix and proper net Y-rich structure.The sample has the best corrosion resistance when all the Y element was dissolved into the matrix of Mg–5Y in 0.1 M NaCl.Xianbin Liu Dayong Shan Yingwei Song En-hou Han 2017Journal of Magnesium and Alloys2017,5,1:7
8Product/metal ratio (PMR):A novel criterion for the evaluation of electrolytes on micro-arc oxidation (MAO) of Mg and its alloys显示文摘Product/metal ratio (PMR) was introduced as a novel criterion for the evaluation of electrolytes on micro-arc oxidation (MAO) of Mg and its alloys. The criterion initially sprang from Pilling-Bedworth ratio (PBR), focused on the roles of electrolytes for the compactness of the fabricated coatings, and took attention on properties of reactants/products during MAO. Meanwhile, based on our experiments as well as the results from literatures, the effects of electrolyte additives on morphologies and com-positions of the fabricated MAO coatings of Mg alloys were exploited for verification and supplement of the initial criterion. In combination of the initial PMR criterion and experimental verification, PMR could be represented by special mode (PMRs=Voxide products/Valloy substrates) and general mode (PMRg= PMRs+ PMRd). The ideal PMRs should be between 1 and 2, while PMRd is related to the coating deposition during MAO. PMRd is a supplement to PMRs when the effect of the overlaying prop-erty (O) of the coatings and the effective deposition (D) of electrolyte composites are considered (PMRd=f(O, D). O is related to the melting point (MP) and boiling point (BP) of the MAO products. D is related to the effective reactions between alloy substrates and electrolytes during MAO.SONG LaiWen SONG YingWei SHAN DaYong ZHU GuoYi HAN EnHou 2011Science China(Technological Sciences)2011,54,10:6
9Preparation and Characterization of Waterborne Polyurethane/Cellulose Nanocrystal Composite Membrane from Recycling Waste Paper显示文摘Cellulose plays a key role in abundant organic natural materials meeting the increasing demand for green and biocompatible products.The highly crystalline nanoscale component of cellulose nanocrystals has recently attracted great attention due to the versatile performance as filler or matrix in producing functional materials.In this work,we prepared the waterborne polyurethane via a prepolymer process,and obtained cellulose and cellulose nanocrystals from waste paper via a facile acid hydrolysis process.After that,the cellulose nanocrystals were assembled into film and mixed with polyurethane to prepare flexible polyurethane/cellulose nanocrystals composite membrane with different soaking time.The correlation between the bulk structure and applied properties including thermal resistance and mechanical property was investigated by using Fourier transform infrared spectroscopy(FTIR),X-ray diffraction(XRD),X-ray photoelectron spectroscopy(XPS),scanning electron microscopy(SEM),thermogravimetric analysis(TGA),differential scanning calorimetry(DSC)and folding test.The structure analysis indicates that cellulose nanocrystals prepared from used paper have a quality similar to that of commercial cellulose.Meanwhile,the cellulose nanocrystals have been mixed with polyurethane uniformly.Polyurethane can significantly benefit to the thermal resistance and mechanical property of the cellulose nanocrystals film.The polyurethane/cellulose nanocrystals composite membrane present good flexibility and may hold a significantly potential application as visual and flexible material.Xing Zhou Xin Zhang Dong Wang Changqing Fang Wanqing Lei Zhigang Huang Yonghua Song Xinyu He Yingwei Huang 2020Journal of Renewable Materials2020,8,6:5
10Comparison of the corrosion behavior of AM60 Mg alloy with and without self-healing coating in atmospheric environment显示文摘Coatings on the surface of Mg alloys are inevitably damaged during their practical applications,and corrosion can easily initiate from the damaged areas to accelerate the failure of Mg parts.A dual self-healing coating has already been developed to solve this problem in our previous work.Considering the practical application of this coating,it is necessary to investigate its service behavior in atmospheric environment.Thus,the corrosion behavior of AM60 Mg substrate with and without the self-healing coating was compared in Shenyang industrial atmospheric environment.The results show that the enrichment of sediments and rainwater on the scratch areas can accelerate the corrosion of the exposed Mg substrate.The inhibitors can be released from the damaged coating to inhibit corrosion.The dual self-healing coating shows better inhibition ability to narrow scratches due to the higher inhibitor concentration and less resumption.Also,the coating with wide scratches displays enough inhibition ability as well.The dual self-healing coating is a good alternative for Mg alloy parts in the practical applications.Yingwei Song Dan Liu Weineng Tang Kaihui Dong Dayong Shan En-Hou Han 2021Journal of Magnesium and Alloys2021,9,4:4
11Effect of hydrogen on the corrosion behavior of the Mg-xZn alloys显示文摘Hydrogen evolution reaction is inevitable during the corrosion of Mg alloys.The effect of hydrogen on the corrosion behavior of the Mg-2Zn and Mg-5Zn alloys is investigated by charging hydrogen treatment.The surface morphologies of the samples after charging hydrogen were observed using a scanning electron microscopy(SEM)and the corrosion resistance was evaluated by polarization curves.It is found that there are oxide films formed on the surface of the charged hydrogen samples.The low hydrogen evolution rate is helpful to improve the corrosion resistance of Mg alloys,while the high hydrogen evolution rate can increases the defects in the films and further deteriorates their protection ability.Also,the charging hydrogen effect is greatly associated with the microstructure of Mg substrate.Yingwei Song En-Hou Han Kaihui Dong Dayong Shan Chang Dong Yim Bong Sun You 2014Journal of Magnesium and Alloys2014,2,3:3
12Biodegradable behaviors of AZ31 magnesium alloy in simulated body fluid显示文摘Yingwei Song Dayong Shan Rongshi Chen Fan Zhang En-Hou Han 2008Materials Science & Engineering C2008,,3:2
13The effect of Zn concentration on the corrosion behavior of Mg– x Zn alloys显示文摘Yingwei Song En-Hou Han Dayong Shan Chang Dong Yim Bong Sun You 2012Corrosion Science2012,,:2
14Biodegradable behaviors of AZ31 magnesium alloy in simulated body fluid显示文摘Yingwei Song Dayong Shan Rongshi Chen Fan Zhang En-Hou Han 2008Materials Science & Engineering C2008,,3:2
15Effect of strawberry vein banding virus and strawberry mottle virus co-infection on the growth and development of strawberry显示文摘Strawberry mottle virus(SMoV)and strawberry vein banding virus(SVBV)cause diseases on strawberry plants,but the effect of coinfection of SMoV and SVBV on the growth,development,and defense system of strawberry(Fragaria×ananassa Duchesne)remains unknown.We investigated the effect of SMoV and SVBV coinfection on strawberry cultivar‘Benihope’.The results showed that stem diameter,leaf size,leaf number,relative chlorophyll content,total chlorophyll content,photosynthetic parameters,and stomatal aperture of SMoV and SVBV co-infected strawberry(VIS)plants were in a weaker level than uninfected control plants,indicating that viruses inhibited the growth and photosynthesis of strawberry plants.Furthermore,the initiation of flowering and fruiting stages of VIS plants were delayed by about three weeks compared with the controls,and the fruiting period was shortened,demonstrating that the reproduction of VIS plants was inhibited.Fruit quality was damaged in VIS plants due to a significant increase in fruit firmness and titratable acidity and decrease in total soluble solid content than control fruits.More dead cells and H_(2)O_(2) accumulated along the veins of VIS leaves,and the content of abscisic acid and catalase activity significantly increased,whereas anthocyanin content was lower than that of control plants.The results demonstrate that SVBV and SMoV coinfection inhibits the growth and development of‘Benihope’strawberry plants,and the plants respond to viruses by regulating stomatal aperture,the accumulation of ABA and antioxidants.To our knowledge,this study contributes information to understand how both viruses impair the strawberry growth and development for the first time.LINGJIAO FAN DAN SONG YINGWEI KHOO MENGMENG WU TENGFEI XU XIAOLI ZHAO HONGQING WANG 2022BIOCELL2022,46,1:1
16Corro-sion characterization of Mg-8Li alloy in NaCl solution显示文摘Song Yingwei Shan Dayong Chen Rongshi 2009Corrosion Science2009,51,5:1
17Effect of additives on the properties of plasma electrolytic oxidation coatings formed on AM50 magnesium alloy in electrolytes containing K 2 ZrF 6显示文摘Feng Liu Dayong Shan Yingwei Song En-Hou Han 2011Surface & Coatings Technology2011,,2:1
18Influ-ences of the quantity of Mg2 Sn phase on the corrosionbehavior of Mg-7Sn magnesium alloy显示文摘Liu Xianbin Shan Da yong Song Yingwei 2011ElectrochimicaActa2011,56,:1
19An environmentally friendly molybdate/phosphate black film on Mg–Zn–Y–Zr alloy显示文摘Yingwei Song Dayong Shan Rongshi Chen En-Hou Han 2010Surface & Coatings Technology2010,,20:1
20Studyon novelpolyurethanedamping materials withhungGchainstructure 显示文摘Song Yingwei Jiang Zhiguo Wang Haiqiao etal 2009New Chemical Materials2009,36,12:1
返回顶部 每页显示:
共2页 首页 上一页 第1页 下一页 末页 /2 跳转

网站首页 | 关于我们 | 联系我们 | 产品服务 | 客服中心 | 广告服务 | 版权声明 | 网站联盟 | 友情链接 | 售卡网点

版权所有© 渝B2-20050021-1 渝公网安备 50019002500403号 违法和不良信息举报中心

互联网出版许可证 新出网证(渝)字10号 全国400电话 - 免长途话费