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典型文献
Laser-induced topology optimized amorphous nanostructure and corrosion electrochemistry of supersonically deposited Ni30Cr25Al15Co15Mo5Ti5Y5 HEA coating based on AIMD
文献摘要:
A novel Ni30Cr25Al15Co15Mo5Ti5Y5 high-entropy alloy(HEA)coating was irradiated to optimize its inter-nal structure via laser after supersonic particle deposition(SPD).Owing to the high energy density of the laser and large temperature gradient,the crystallization process of the molecules and atoms in the coat-ing was restrained and supercooling occurred.Experimental results showed that a considerable number of nano-crystal grains precipitated and amorphous structures were formed because of the random ori-entation of the crystals.The baseline of differential scanning calorimetry scans obtained for the coating started to shift at the Tg of 939.37℃and a step was observed.Multiple dispersion peaks and lattice fringes indicated that the nucleation of the irradiated laser-induced topology optimized(LTO)coating was incomplete.The laser-induced topology optimizing treatment led to quasi-isotropy in the SPD coat-ing.Furthermore,the LTO coating exhibited a residual stress of 18.4 MPa,stress-strain response,and fatigue limit of 265 MPa.Hence,the LTO coating exhibited higher performance than the unirradiated SPD coating.The Nyquist and Bode electrochemical impedance spectra of the LTO coating,including two re-laxation processes,indicated that the corrosion process steadily recovered to the equilibrium state.This implies that the uniform oxidation passivation layer on the surface of the LTO coating insulated the ma-terial from the corrosive medium,protecting the substrate from further corrosion,thus enhancing the structural security of the material for use in super-intense laser facility applications.
文献关键词:
作者姓名:
Xue Yan;Cheng Zhang;Yangshuai Li;Youjian Yi;Ziruo Cui;Bingyuan Han
作者机构:
State Key Laboratory of High Field Laser Physics,Shanghai Institute of Optics and Fine Mechanics,Chinese Academy of Sciences,Shanghai 201800,China;Hangzhou Institute for Advanced Study,University of Chinese Academy of Sciences(UCAS),Hangzhou 310024,China;National Laboratory on High Power Laser and Physics,Shanghai Institute of Optics and Fine Mechanics,Chinese Academy of Sciences,Shanghai 201800,China;Key Laboratory for Laser Plasmas(MOE),Collaborative Innovation Center of IFSA(C1C1FSA),School of Physics and Astronomy,Shanghai Jiao Tong University,Shanghai 200240,China;School of Automotive and Traffic Engineering,Jiangsu University of Technology,Changzhou 213001,China
引用格式:
[1]Xue Yan;Cheng Zhang;Yangshuai Li;Youjian Yi;Ziruo Cui;Bingyuan Han-.Laser-induced topology optimized amorphous nanostructure and corrosion electrochemistry of supersonically deposited Ni30Cr25Al15Co15Mo5Ti5Y5 HEA coating based on AIMD)[J].材料科学技术(英文版),2022(11):257-269
A类:
supersonically,Ni30Cr25Al15Co15Mo5Ti5Y5,unirradiated,laxation
B类:
Laser,induced,topology,optimized,amorphous,nanostructure,corrosion,electrochemistry,deposited,HEA,coating,AIMD,novel,entropy,alloy,was,its,inter,nal,via,laser,after,particle,deposition,SPD,Owing,energy,density,large,temperature,gradient,crystallization,molecules,atoms,restrained,supercooling,occurred,Experimental,results,showed,that,considerable,number,grains,precipitated,structures,were,formed,because,random,entation,crystals,baseline,differential,scanning,calorimetry,scans,obtained,started,shift,Tg,step,observed,Multiple,dispersion,peaks,lattice,fringes,indicated,nucleation,LTO,incomplete,optimizing,treatment,led,quasi,isotropy,Furthermore,exhibited,residual,stress,response,fatigue,limit,Hence,higher,performance,than,Nyquist,Bode,electrochemical,impedance,spectra,including,two,processes,steadily,recovered,equilibrium,state,This,implies,uniform,oxidation,passivation,layer,surface,insulated,from,corrosive,medium,protecting,substrate,further,thus,enhancing,structural,security,material,intense,facility,applications
AB值:
0.555417
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