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典型文献
Inhibition effect on microbiologically influenced corrosion of Ti-6Al-4V-5Cu alloy against marine bacterium Pseudomonas aeruginosa
文献摘要:
With rapid development of marine infrastructures,materials with better biocorrosion resistance and an-tibiofouling performance will be highly demanded.Ti6Al4V alloy is susceptible to the above.The inhi-bition to the microbiologically influenced corrosion of Ti6Al4V-5Cu alloy against Pseudomonas aeruginosa was investigated using antibacterial test,electrochemical techniques,surface analysis,and weight loss test conducted for 2.5 months.At a sputtering depth of 0 nm,the passive film of Ti6Al4V-5Cu alloy was mainly composed of ideal oxide TiO2.With increasing sputtering thickness to 6 nm,Ti2O3 and TiO were detected with a relative fraction of 14.6%and 14.8%,respectively,in the oxide layer of Ti6Al4V-5Cu alloy.In contrast,the outermost layer of Ti6Al4V alloy was predominantly composed of TiO2 but Ti2O3(22.8%),Al2O3 and V2O5 were also detected.With increasing sputtering depth to 6 nm,fitting revealed the pres-ence of Ti2O3 and TiO with relative fractions of 25.3%and 35.8%,respectively.Yet,a spot of TiO(8%)was also observed at 12 nm in the oxide layer of Ti6Al4V alloy.Although the addition of Cu into Ti6Al4V alloy generated the self-healing property of passive film in the presence of P.aeruginosa,it also reduced resistance to corrosion in general condition.
文献关键词:
作者姓名:
Mohammed Arroussi;Qing Jia;Chunguang Bai;Shuyuan Zhang;Jinlong Zhao;Zhizhou Xia;Zhiqiang Zhang;Ke Yang;Rui Yang
作者机构:
Institute of Metal Research,Chinese Academy of Sciences,Shenyang 110016,China;School of Materials Science and Engineering,University of Science and Technology of China,Hefei 230022,China
引用格式:
[1]Mohammed Arroussi;Qing Jia;Chunguang Bai;Shuyuan Zhang;Jinlong Zhao;Zhizhou Xia;Zhiqiang Zhang;Ke Yang;Rui Yang-.Inhibition effect on microbiologically influenced corrosion of Ti-6Al-4V-5Cu alloy against marine bacterium Pseudomonas aeruginosa)[J].材料科学技术(英文版),2022(14):282-296
A类:
biocorrosion,tibiofouling
B类:
Inhibition,effect,microbiologically,influenced,5Cu,alloy,against,marine,bacterium,Pseudomonas,aeruginosa,With,rapid,development,infrastructures,materials,better,resistance,performance,will,highly,demanded,Ti6Al4V,susceptible,above,inhi,was,investigated,using,antibacterial,test,electrochemical,techniques,surface,analysis,weight,loss,conducted,months,At,sputtering,depth,passive,film,mainly,composed,ideal,oxide,TiO2,increasing,thickness,Ti2O3,were,detected,relative,respectively,layer,contrast,outermost,predominantly,but,Al2O3,V2O5,also,fitting,revealed,fractions,Yet,spot,observed,Although,addition,into,generated,self,healing,property,presence,reduced,general,condition
AB值:
0.442254
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