首站-论文投稿智能助手
典型文献
Tin-induced microstructural changes and associated corrosion resistance of biodegradable Mg-Zn alloy
文献摘要:
As a new degradable medical metal material,Mg-Zn alloy has been widely used in clinical application.However,its popularization and application are seriously restricted by poor corrosion performance in the biological liquid envi-ronment.For this reason,we added a relatively non-toxic element to the human body(Sn)to Mg-Zn alloy,and we prepared Mg-2Zn-3Sn ternary system alloy,which improved the corrosion resistance and mechanical proper-ties of magnesium alloys.The microstructure and corrosion behavior of as-cast Mg-2Zn and Mg-2Zn-3Sn alloys were investigated systematically for future application as biodegradable implants.The microstructures of the as-cast Mg-2Zn and Mg-2Zn-3Sn alloys were analyzed by light microscopy(LM),scanning electron microscopy(SEM),X-ray diffraction analysis(XRD),and energy-dispersive spectrum(EDS).
文献关键词:
作者姓名:
Yun Gao;Ping Zhao;Xiang-Qian Cao;R.Devesh K.Misra;Wei Wang;Ke-Zheng Chen
作者机构:
Laboratory of Functional and Biomedical Nanomaterials,College of Materials Science and Engineering,Qingdao University of Science and Technology,Qingdao 266042,China;Shandong Provincial University Laboratory for Protected Horticulture&Architecture and Art College,Weifang University of Science and Technology,Weifang 262700,China;Department of Metallurgical,Materials and Biomedical Engineering,University of Texas,El Paso,TX 79968,USA
引用格式:
[1]Yun Gao;Ping Zhao;Xiang-Qian Cao;R.Devesh K.Misra;Wei Wang;Ke-Zheng Chen-.Tin-induced microstructural changes and associated corrosion resistance of biodegradable Mg-Zn alloy)[J].稀有金属(英文版),2022(03):883-888
A类:
B类:
Tin,induced,microstructural,changes,associated,corrosion,resistance,biodegradable,Mg,new,medical,metal,material,has,been,widely,used,clinical,application,However,its,popularization,seriously,restricted,by,poor,performance,biological,liquid,envi,ronment,For,this,reason,added,relatively,toxic,element,human,body,prepared,2Zn,3Sn,ternary,which,improved,mechanical,proper,ties,magnesium,alloys,behavior,cast,were,investigated,systematically,future,implants,microstructures,analyzed,light,microscopy,LM,scanning,electron,ray,diffraction,analysis,energy,dispersive,spectrum,EDS
AB值:
0.561483
相似文献
Influence of Zr and Mn additions on microstructure and properties of Mg–2.5wt%Cu–Xwt%Zn (X = 2.5, 5 and 6.5) alloys
A.V.Koltygin;V.E.Bazhenov;I.V.Plisetskaya;V.A.Bautin;A.I.Bazlov;N.Y.Tabachkova;O.O.Voropaeva;A.A.Komissarov;V.D.Belov-Foundry Department,National University of Science and Technology(MISiS),Moscow 119049,Russia;Department of Metallurgy Steel,New Production Technologies and Protection of Metals,National University of Science and Technology(MISiS),Moscow119049,Russia;Laboratory of Advanced Green Materials,National University of Science and Technology(MISiS),Moscow 119049,Russia;Department of Materials Science of Semiconductors and Dielectrics,National University of Science and Technology(MISiS),Moscow 119049,Russia;Fianit Laboratory(Laser Materials and Technology Research Center at GPI),Prokhorov General Physics Institute RAS,Moscow 119991,Russia;Laboratory of Hybrid Nanostructured Materials,National University of Science and Technology(MISiS),Moscow 119049,Russia;Laboratory of Medical Bioresorption and Bioresistance,Moscow State University of Medicine and Dentistry,Moscow 127473,Russia
机标中图分类号,由域田数据科技根据网络公开资料自动分析生成,仅供学习研究参考。