2022
DOI: 10.1016/j.ceramint.2021.12.258
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Deposition temperature effect on sputtered hydroxyapatite coatings prepared on AZ31B alloy substrate

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Cited by 15 publications
(5 citation statements)
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“…The systems sputtering temperature also has an impact on the film thickness and improve the film quality . Adatom diffusion rate and mobility rise with substrate temperature, causing the production of larger grains, a smoother surface, a decrease in surface roughness, an increase in the film's resistance to corrosion, and also controlling the adherence of the film (Dai et al, 2020;Parau et al, 2022;Vladescu et al, 2015). Therefore, to achieve a higher temperature, the substrate material is often positioned on a heating stage.…”
Section: Temperaturementioning
confidence: 99%
“…The systems sputtering temperature also has an impact on the film thickness and improve the film quality . Adatom diffusion rate and mobility rise with substrate temperature, causing the production of larger grains, a smoother surface, a decrease in surface roughness, an increase in the film's resistance to corrosion, and also controlling the adherence of the film (Dai et al, 2020;Parau et al, 2022;Vladescu et al, 2015). Therefore, to achieve a higher temperature, the substrate material is often positioned on a heating stage.…”
Section: Temperaturementioning
confidence: 99%
“…The use of HAp plasma spray coating on metallic biomedical implants has been the subject of extensive research. Coatings of HAp and tetra calcium phosphate (TCP) were sprayed onto a titanium substrate using a plasma spraying technique for biomedical applications, and it was found that plasma-sprayed composite coatings with tunable solubility can be obtained for the orthopaedic and dental applications by selecting a specific powder composition and then undergoing a subsequent thermal treatment [86,87]. This was discovered through the application of the method for biomedical use.…”
Section: Hydroxyapatite Plasma Spray Coatingmentioning
confidence: 99%
“…The corrosion current density of the untreated Mg-Zn alloy was found to be 1050 A/cm 2 , whereas the Mg-Zn alloy coated with the TiO 2 coating exhibited a significantly reduced corrosion current density of 49 A/cm 2 . Parau et al [148] conducted a study to investigate the impact of deposition temperature on hydroxyapatite coating on the surface of AZ31B magnesium alloy prepared via magnetron sputtering. The results indicated that as the deposition temperature increased, the grain size of the magnesium alloy grew by more than 100% while the hardness decreased.…”
Section: Magnetron Sputteringmentioning
confidence: 99%