Zn- or Cu-Containing CaP-Based Coatings Formed by Micro-arc Oxidation on Titanium and Ti-40Nb Alloy: Part I—Microstructure, Composition and Properties
Zn- and Cu-containing CaP-based coatings, obtained by micro-arc oxidation process, were deposited on substrates made of pure titanium (Ti) and novel Ti-40Nb alloy. The microstructure, phase, and elemental composition, as well as physicochemical and mechanical properties, were examined for unmodified CaP and Zn- or Cu-containing CaP coatings, in relation to the applied voltage that was varied in the range from 200 to 350 V. The unmodified CaP coatings on both types of substrates had mainly an amorphous microstructure with a minimal content of the CaHPO4 phase for all applied voltages. The CaP coatings modified with Zn or Cu had a range from amorphous to nano- and microcrystalline structure that contained micro-sized CaHPO4 and Ca(H2PO4)2·H2O phases, as well as nano-sized β-Ca2P2O7, CaHPO4, TiO2, and Nb2O5 phases. The crystallinity of the formed coatings increased in the following order: CaP/TiNb < Zn-CaP/TiNb < Cu-CaP/TiNb < CaP/Ti < Zn-CaP/Ti < Cu-CaP/Ti. The increase in the applied voltage led to a linear increase in thickness, roughness, and porosity of all types of coatings, unlike adhesive strength that was inversely proportional to an increase in the applied voltage. The increase in the applied voltage did not affect the Zn or Cu concentration (~0.4 at%), but led to an increase in the Ca/P atomic ratio from 0.3 to 0.7.
Топ-30
Журналы
|
1
2
3
4
5
6
7
|
|
|
Materials
7 публикаций, 17.95%
|
|
|
Coatings
4 публикации, 10.26%
|
|
|
AIP Conference Proceedings
3 публикации, 7.69%
|
|
|
Frontiers in Bioengineering and Biotechnology
2 публикации, 5.13%
|
|
|
Ceramics International
2 публикации, 5.13%
|
|
|
Surfaces and Interfaces
2 публикации, 5.13%
|
|
|
Journal of Functional Biomaterials
1 публикация, 2.56%
|
|
|
Journal of Magnesium and Alloys
1 публикация, 2.56%
|
|
|
Applied Surface Science
1 публикация, 2.56%
|
|
|
ACS applied materials & interfaces
1 публикация, 2.56%
|
|
|
ACS Materials Au
1 публикация, 2.56%
|
|
|
Biomaterials Science
1 публикация, 2.56%
|
|
|
Transactions of the Institute of Metal Finishing
1 публикация, 2.56%
|
|
|
Biomimetics
1 публикация, 2.56%
|
|
|
Journal of Materials Chemistry B
1 публикация, 2.56%
|
|
|
Frontiers in Chemistry
1 публикация, 2.56%
|
|
|
Polymers
1 публикация, 2.56%
|
|
|
Russian Physics Journal
1 публикация, 2.56%
|
|
|
Materials Today Communications
1 публикация, 2.56%
|
|
|
International Journal of Biological Macromolecules
1 публикация, 2.56%
|
|
|
Genij Ortopedii
1 публикация, 2.56%
|
|
|
Materials Chemistry and Physics
1 публикация, 2.56%
|
|
|
Journal of Alloys and Compounds
1 публикация, 2.56%
|
|
|
Materials Today Nano
1 публикация, 2.56%
|
|
|
Colloids and Surfaces B: Biointerfaces
1 публикация, 2.56%
|
|
|
1
2
3
4
5
6
7
|
Издатели
|
2
4
6
8
10
12
14
|
|
|
MDPI
14 публикаций, 35.9%
|
|
|
Elsevier
12 публикаций, 30.77%
|
|
|
Frontiers Media S.A.
3 публикации, 7.69%
|
|
|
AIP Publishing
3 публикации, 7.69%
|
|
|
American Chemical Society (ACS)
2 публикации, 5.13%
|
|
|
Royal Society of Chemistry (RSC)
2 публикации, 5.13%
|
|
|
Taylor & Francis
1 публикация, 2.56%
|
|
|
Springer Nature
1 публикация, 2.56%
|
|
|
Russian Ilizarov Scientific Centre Restorative Traumatology and Orthopaedics
1 публикация, 2.56%
|
|
|
2
4
6
8
10
12
14
|
- Мы не учитываем публикации, у которых нет DOI.
- Статистика публикаций обновляется еженедельно.