材料科学
磷灰石
热喷涂
涂层
骨整合
陶瓷
气动冷喷涂
结晶度
生物陶瓷
冶金
钛合金
化学工程
钛
纳米晶材料
合金
复合材料
纳米技术
植入
外科
工程类
医学
作者
A. Paterlini,Joël Alexis,Yannick Balcaen,G. Bertrand
出处
期刊:Coatings
[Multidisciplinary Digital Publishing Institute]
日期:2022-05-24
卷期号:12 (6): 722-722
被引量:5
标识
DOI:10.3390/coatings12060722
摘要
Ceramic coatings have a long history in the orthopaedic field, with plasma sprayed coatings of hydroxyapatite as leading standard in the manufacturing process; however, these coatings can contain secondary phases resulting from the decomposition of hydroxyapatite at high temperatures, which limit the lifetime of implants and their osseointegration. This work aims to produce coatings that can maximize bone osseointegration of metallic implants. In order to preserve the raw characteristics of hydroxyapatite powders that are thermally unstable, coatings were deposited by cold spray onto Ti6Al4V alloy substrates. In contrast with other thermal spray technologies, this process presents the advantage of spraying particles through a supersonic gas jet at a low temperature. On top of hydroxyapatite, carbonated nanocrystalline apatite was synthesized and sprayed. This biomimetic apatite is similar to bone minerals due to the presence of carbonates and its poor crystallinity. FTIR and XRD analyses proved that the biomimetic characteristics and the non-stoichiometric of the apatite were preserved in the cold spray coatings. The cold spray process did not affect the chemistry of the raw material. The adhesion of the coatings as well as their thicknesses were evaluated, showing values comparable to conventional process. Cold spraying appears as a promising method to preserve the characteristics of calcium phosphate ceramics and to produce coatings that offer potentially improved osseointegration.
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