×
验证码:
换一张
Forgotten Password?
Stay signed in
×
Log In
Chinese
|
English
中国科学院金属研究所机构知识库
Log In
Register
ALL
ORCID
Title
Creator
Subject Area
Keyword
Funding Project
Document Type
Source Publication
Indexed By
Publisher
Date Issued
Date Accessioned
MOST Discipline Catalogue
Study Hall
Image search
Paste the image URL
Home
Collections
Authors
DocType
Subjects
K-Map
News
Search in the results
Collection
Authors
Document Type
Journal ar... [5]
Thesis [1]
Date Issued
2020 [3]
2011 [3]
Language
英语 [2]
Source Publication
MATERIALS ... [3]
Acta Mater... [2]
Funding Project
Australian... [2]
Humboldt F... [2]
Pico Cente... [2]
Presidenti... [2]
Science Fo... [2]
Science, T... [2]
More...
Indexed By
SCI [2]
Funding Organization
Australian... [2]
Humboldt F... [2]
Pico Cente... [2]
Presidenti... [2]
Science Fo... [2]
Science, T... [2]
More...
×
Knowledge Map
IMR OpenIR
Start a Submission
Submissions
Unclaimed
Claimed
Attach Fulltext
Bookmarks
QQ
Weibo
Feedback
Browse/Search Results:
1-6 of 6
Help
Selected(
0
)
Clear
Items/Page:
5
10
15
20
25
30
35
40
45
50
55
60
65
70
75
80
85
90
95
100
Sort:
Select
Title Ascending
Title Descending
Journal Impact Factor Ascending
Journal Impact Factor Descending
Author Ascending
Author Descending
WOS Cited Times Ascending
WOS Cited Times Descending
Issue Date Ascending
Issue Date Descending
Submit date Ascending
Submit date Descending
Additively manufactured biomedical Ti-Nb-Ta-Zr lattices with tunable Young's modulus: Mechanical property, biocompatibility, and proteomics analysis
期刊论文
MATERIALS SCIENCE & ENGINEERING C-MATERIALS FOR BIOLOGICAL APPLICATIONS, 2020, 卷号: 114
Authors:
Luo, J. P.
;
Huang, Y. J.
;
Xu, J. Y.
;
Sun, J. F.
;
Dargusch, M. S.
;
Hou, C. H.
;
Ren, L.
;
Wang, R. Z.
;
Ebel, T.
;
Yan, M.
Favorite
  |  
View/Download:69/0
  |  
Submit date:2021/02/03
Additively manufactured biomedical Ti-Nb-Ta-Zr lattices with tunable Young's modulus: Mechanical property, biocompatibility, and proteomics analysis
期刊论文
MATERIALS SCIENCE & ENGINEERING C-MATERIALS FOR BIOLOGICAL APPLICATIONS, 2020, 卷号: 114, 页码: 16
Authors:
Luo, J. P.
;
Huang, Y. J.
;
Xu, J. Y.
;
Sun, J. F.
;
Dargusch, M. S.
;
Hou, C. H.
;
Ren, L.
;
Wang, R. Z.
;
Ebel, T.
;
Yan, M.
Favorite
  |  
View/Download:83/0
  |  
Submit date:2021/02/02
Selective laser melting
Ti-Nb-Ta-Zr (TNTZ)
Mechanical properties
Biocompatibility
Proteomics
Additively manufactured biomedical Ti-Nb-Ta-Zr lattices with tunable Young's modulus: Mechanical property, biocompatibility, and proteomics analysis
期刊论文
MATERIALS SCIENCE & ENGINEERING C-MATERIALS FOR BIOLOGICAL APPLICATIONS, 2020, 卷号: 114, 页码: 16
Authors:
Luo, J. P.
;
Huang, Y. J.
;
Xu, J. Y.
;
Sun, J. F.
;
Dargusch, M. S.
;
Hou, C. H.
;
Ren, L.
;
Wang, R. Z.
;
Ebel, T.
;
Yan, M.
Favorite
  |  
View/Download:83/0
  |  
Submit date:2021/02/02
Selective laser melting
Ti-Nb-Ta-Zr (TNTZ)
Mechanical properties
Biocompatibility
Proteomics
β相生物钛合金超弹性研究
学位论文
, 北京: 中国科学院金属研究所, 2011
Authors:
Edward O
Favorite
  |  
View/Download:55/0
  |  
Submit date:2013/04/12
Β生物钛合金
马氏体相变
X射线衍射
Low-cycle fatigue properties of a titanium alloy exhibiting nonlinear elastic deformation behavior
期刊论文
Acta Materialia, 2011, 卷号: 59, 期号: 11, 页码: 4690-4699
Authors:
S. Q. Zhang
;
S. J. Li
;
M. T. Jia
;
F. Prima
;
L. J. Chen
;
Y. L. Hao
;
R. Yang
Adobe PDF(1929Kb)
  |  
Favorite
  |  
View/Download:71/0
  |  
Submit date:2012/04/13
Elastic Deformation
Low-cycle Fatigue
Elastic Asymmetry
Stress-induced Phase Transformation
Ti-nb Alloys
Biomedical Applications
Plastic-deformation
Alpha''
Martensite
Youngs Modulus
Superelasticity
Zr
Competition
Mechanism
Omega
Elastic properties of Ti-24Nb-4Zr-8Sn single crystals with bcc crystal structure
期刊论文
Acta Materialia, 2011, 卷号: 59, 期号: 8, 页码: 3081-3090
Authors:
Y. W. Zhang
;
S. J. Li
;
E. G. Obbard
;
H. Wang
;
S. C. Wang
;
Y. L. Hao
;
R. Yang
Adobe PDF(1328Kb)
  |  
Favorite
  |  
View/Download:52/0
  |  
Submit date:2012/04/13
Titanium Alloy
Body-centered Cubic Crystal
Elastic Moduli
Elastic
Constants
Elastic Deformation
Plastic-deformation
Youngs Modulus
Gum Metal
Behavior
Superelasticity
Alloys
Mechanism
Symmetry
Strength
Silicon