Recent Developments in Suspension Plasma Sprayed Titanium Oxide and Hydroxyapatite Coatings

被引:0
作者
R. Jaworski
L. Pawlowski
C. Pierlot
F. Roudet
S. Kozerski
F. Petit
机构
[1] Ecole Nationale Supérieure de Chimie de Lille,
[2] University of Lille 1,undefined
[3] Wroclaw University of Technology,undefined
[4] Belgian Ceramic Research Centre,undefined
来源
Journal of Thermal Spray Technology | 2010年 / 19卷
关键词
hydroxyapatite; suspension plasma spraying; titanium oxide;
D O I
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中图分类号
学科分类号
摘要
The paper aims at reviewing of the recent studies related to the development of suspension plasma sprayed TiO2 and Ca5(PO4)3OH (hydroxyapatite, HA) coatings as well as their multilayer composites obtained onto stainless steel, titanium and aluminum substrates. The total thickness of the coatings was in the range 10 to 150 μm. The suspensions on the base of distilled water, ethanol and their mixtures were formulated with the use of fine commercial TiO2 pigment crystallized as rutile and HA milled from commercial spray-dried powder or synthesized from calcium nitrate and ammonium phosphate in an optimized reaction. The powder was crystallized as hydroxyapatite. Pneumatic and peristaltic pump liquid feeders were applied. The injection of suspension to the plasma jet was studied carefully with the use of an atomizer injector or a continuous stream one. The injectors were placed outside or inside of the anode-nozzle of the SG-100 plasma torch. The stream of liquid was tested under angle right or slightly backwards with regard to the torch axis. The sprayed deposits were submitted to the phase analysis by the use of x-ray diffraction. The content of anatase and rutile was calculated in the titanium oxide deposits as well as the content of the decomposition phases in the hydroxyapatite ones. The micro-Raman spectroscopy was used to visualize the area of appearance of some phases. Scratch test enabled to characterize the adhesion of the deposits, their microhardness and friction coefficient. The electric properties including electron emission, impedance spectroscopy, and dielectric properties of some coatings were equally tested.
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页码:240 / 247
页数:7
相关论文
共 122 条
  • [1] Pawlowski L(2009)Suspension and Solution Thermal Spray Coatings Surf. Coat. Technol. 203 2807-2829
  • [2] Mor GK(2006)Fabrication of Hydrogen Sensors with Transparent Titanium Oxide Nanotube-Array Thin Films as Sensing Elements Thin Solid Films 496 42-48
  • [3] Varghese OK(2007)Effects of Palladium Coatings on Oxygen Sensors of Titanium Dioxide Thin Films Mater. Sci. Eng. B 139 149-154
  • [4] Paulose M(2002)The Photocatalytic Activity and Photo-Absorption of Plasma Sprayed TiO Surf. Coat. Technol. 160 62-67
  • [5] Ong KG(2006)–Fe Surf. Coat. Technol. 201 2099-2102
  • [6] Grimes CA(2007)O Vacuum 81 1278-1282
  • [7] Castaneda L(2007) Binary Oxide Coatings Surf. Coat. Technol. 201 7467-7471
  • [8] Ye F(2006)Temperature Behaviour of Titania Emitters Realized by Suspension Plasma Spraying Surf. Coat. Technol. 201 1922-1930
  • [9] Ohmori A(2006)Effect of Conditioning on Field Electron Emission of Suspension Plasma Sprayed TiO Surf. Coat. Technol. 201 45-56
  • [10] Tomaszek R(2007) Coatings Surf. Coat. Technol. 201 7432-7440