nr |
titel |
auteur |
tijdschrift |
jaar |
jaarg. |
afl. |
pagina('s) |
type |
1 |
A novel combinatorial approach to the development of beta titanium alloys for orthopaedic implants
|
Banerjee, R. |
|
2005 |
25 |
3 |
p. 282-289 8 p. |
artikel |
2 |
Bimodal structured Ti-base alloy with large elasticity and low Young's modulus
|
He, G. |
|
2005 |
25 |
3 |
p. 290-295 6 p. |
artikel |
3 |
Corrosion evaluation of wear tested nitinol wire
|
Denton, M. |
|
2005 |
25 |
3 |
p. 276-281 6 p. |
artikel |
4 |
Corrosion of dental metallic materials by dental treatment agents
|
Oshida, Yoshiki |
|
2005 |
25 |
3 |
p. 343-348 6 p. |
artikel |
5 |
Cyclic deformation behaviour and fatigue induced surface damage of titanium alloys in simulated physiological media
|
Leinenbach, Christian |
|
2005 |
25 |
3 |
p. 321-329 9 p. |
artikel |
6 |
Editorial Board
|
|
|
2005 |
25 |
3 |
p. CO2- 1 p. |
artikel |
7 |
Effect of Ta content on mechanical properties of Ti–30Nb–XTa–5Zr
|
Sakaguchi, Nobuhito |
|
2005 |
25 |
3 |
p. 370-376 7 p. |
artikel |
8 |
Evaluation of cast Ti–Fe–O–N alloys for dental applications
|
Koike, Marie |
|
2005 |
25 |
3 |
p. 349-356 8 p. |
artikel |
9 |
Hydroxyapatite–diamondlike carbon nanocomposite films
|
Narayan, Roger J. |
|
2005 |
25 |
3 |
p. 398-404 7 p. |
artikel |
10 |
Improvement in fatigue characteristics of newly developed beta type titanium alloy for biomedical applications by thermo-mechanical treatments
|
Akahori, Toshikazu |
|
2005 |
25 |
3 |
p. 248-254 7 p. |
artikel |
11 |
Introduction
|
Boehlert, Carl |
|
2005 |
25 |
3 |
p. 247- 1 p. |
artikel |
12 |
Mechanical properties and cyto-toxicity of new beta type titanium alloy with low melting points for dental applications
|
Niinomi, Mitsuo |
|
2005 |
25 |
3 |
p. 417-425 9 p. |
artikel |
13 |
Mechanical properties and microstructures of low cost β titanium alloys for healthcare applications
|
Gunawarman, B. |
|
2005 |
25 |
3 |
p. 304-311 8 p. |
artikel |
14 |
Mechanical properties and microstructures of new Ti–Fe–Ta and Ti–Fe–Ta–Zr system alloys
|
Kuroda, Daisuke |
|
2005 |
25 |
3 |
p. 312-320 9 p. |
artikel |
15 |
Mechanical properties of porous Ti–15Mo–5Zr–3Al compacts prepared by powder sintering
|
Nomura, N. |
|
2005 |
25 |
3 |
p. 330-335 6 p. |
artikel |
16 |
Mechanical properties of Ti–4.5Al–3V–2Mo–2Fe and possibility for healthcare applications
|
Gunawarman, B. |
|
2005 |
25 |
3 |
p. 296-303 8 p. |
artikel |
17 |
Mechanical properties of Ti–Nb biomedical shape memory alloys containing Ge or Ga
|
Inamura, Tomonari |
|
2005 |
25 |
3 |
p. 426-432 7 p. |
artikel |
18 |
Microstructural evolution and strengthening mechanisms in Ti–Nb–Zr–Ta, Ti–Mo–Zr–Fe and Ti–15Mo biocompatible alloys
|
Nag, S. |
|
2005 |
25 |
3 |
p. 357-362 6 p. |
artikel |
19 |
Microstructure and mechanical properties of titanium components fabricated by a new powder injection molding technique
|
Nyberg, Eric |
|
2005 |
25 |
3 |
p. 336-342 7 p. |
artikel |
20 |
Multiscale modeling of titanium investment cast dental prostheses
|
Atwood, R.C. |
|
2005 |
25 |
3 |
p. 255-262 8 p. |
artikel |
21 |
Nanostructured diamondlike carbon thin films for medical applications
|
Narayan, Roger J. |
|
2005 |
25 |
3 |
p. 405-416 12 p. |
artikel |
22 |
Phase transformations in Ti–35Nb–7Zr–5Ta–(0.06–0.68)O alloys
|
Qazi, J.I. |
|
2005 |
25 |
3 |
p. 389-397 9 p. |
artikel |
23 |
Relationships between tensile deformation behavior and microstructure in Ti–Nb–Ta–Zr system alloys
|
Sakaguchi, Nobuhito |
|
2005 |
25 |
3 |
p. 363-369 7 p. |
artikel |
24 |
Subsurface deformation and microcrack formation in Ti–35Nb–8Zr–5Ta–O(x) during reciprocating sliding wear
|
Long, Marc |
|
2005 |
25 |
3 |
p. 382-388 7 p. |
artikel |
25 |
Tensile and fatigue evaluation of Ti–15Al–33Nb (at.%) and Ti–21Al–29Nb (at.%) alloys for biomedical applications
|
Boehlert, C.J. |
|
2005 |
25 |
3 |
p. 263-275 13 p. |
artikel |
26 |
The effect of aluminum content on phase constitution and heat treatment behavior of Ti–Cr–Al alloys for healthcare application
|
Sugano, Daisuke |
|
2005 |
25 |
3 |
p. 377-381 5 p. |
artikel |