典型文献
Controlling the mechanical properties and corrosion behavior of biomedical TiZrNb alloys by combining recrystallization and spinodal decomposition
文献摘要:
Excellent comprehensive mechanical properties and corrosion resistance of TiZrNb equiatomic ratio medium-entropy alloy were obtained through recrystallization and spinodal decomposition.In addition to solid solution strengthening and recrystallization,the excellent mechanical properties can also be at-tributed to the hindering effect of nanoprecipitation formed via spinodal decomposition on the move-ment of dislocations.The high atomic arrangement density due to spinodal decomposition reduces the surface energy of the alloy passivation film,thereby increasing the activation energy of dissolution and the bonding energy between atoms,which improve the corrosion resistance and stability of the alloy passivation film.This work provides a new strategy to control the mechanical properties and corrosion resistance by combining recrystallization and spinodal decomposition.
文献关键词:
中图分类号:
作者姓名:
Pengfei Ji;Bohan Chen;Shuguang Liu;Bo Li;Chaoqun Xia;Xinyu Zhang;Mingzhen Ma;Riping Liu
作者机构:
State Key Laboratory of Metastable Materials Science and Technology,Yanshan University,Qinhuangdao 066004,China;Beijing Chunlizhengda Medical Instruments Co.,Ltd.,Beijing 101112,China;School of Materials Science and Engineering,Research Institute for Energy Equipment Materials,Hebei University of Technology,Tianjin 300130,China
文献出处:
引用格式:
[1]Pengfei Ji;Bohan Chen;Shuguang Liu;Bo Li;Chaoqun Xia;Xinyu Zhang;Mingzhen Ma;Riping Liu-.Controlling the mechanical properties and corrosion behavior of biomedical TiZrNb alloys by combining recrystallization and spinodal decomposition)[J].材料科学技术(英文版),2022(15):227-238
A类:
TiZrNb,spinodal
B类:
Controlling,mechanical,properties,corrosion,behavior,biomedical,alloys,combining,recrystallization,decomposition,Excellent,comprehensive,resistance,equiatomic,ratio,medium,entropy,were,obtained,through,In,addition,solid,strengthening,excellent,can,also,tributed,hindering,effect,nanoprecipitation,formed,via,move,dislocations,high,arrangement,density,due,reduces,surface,energy,passivation,film,thereby,increasing,activation,dissolution,bonding,between,atoms,which,improve,stability,This,work,provides,new,strategy,control
AB值:
0.492945
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