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Flame Spray Projection of a Bioactive Hidroxyapatite Coating on Ti6Al4V for Biomedical Applications

机译:生物医学应用中生物活性HIDROxyapatite涂层的火焰喷涂投影

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This work consisted in the development and characterization of a bioactive coating on Ti6Al4V samples by flame spray projection. A synthetichidroxyapatite powder was used to form the coatings. Oxygen and acetylene gas were used as combustible, and the metallic substrate was Ti6Al4V with a roughness of 0.4 and 2.3 μm. The time process varied from 5 to 60 seconds. The projection distance was of 22 cm. The spray coatings were mechanical tested; in all cases, the results indicated that the coatings were well adhered to the metallic surfaces and the metallic subtracts did not present any degradation of the mechanical properties. In addition, the coatings were immersed in simulated body fluids for 21 days in physiological conditions to evaluate the bioactivity. The results demonstrated that the coatings are potentially bioactive through the formation of a dense and homogeneous apatite layer similar to the bone. Results of X-ray diffraction exhibited evidence of a hidroxyapatite layer and by energy dispersive spectroscopy, a Ca/P ratio of 1.57 was obtained. This is an indication of that the use of flame spray projection to coat Ti6Al4V substrates do not decompose the original hidroxyapatite powder. Compositional analysis of the remnant fluids, made by inductively coupled plasma spectrometry, showed that nonmetallic ions were present in the coatings.
机译:该工作包括通过火焰喷射投影在Ti6Al4V样品上的生物活性涂层的开发和表征中。使用合成硅烷磷灰石粉末形成涂层。使用氧气和乙炔气体作为可燃物,金属基材为Ti6Al4V,粗糙度为0.4和2.3μm。时间过程从5到60秒变化。投影距离为22厘米。喷涂涂层是机械测试的;在所有情况下,结果表明涂层粘附到金属表面上,金属减法没有呈现机械性能的任何降解。此外,涂层浸入模拟体液中,在生理条件下21天,以评估生物活性。结果表明,通过形成与骨骼相似的致密和均相磷灰石层,涂层潜在的生物活性。 X射线衍射的结果表明了HIDROxyapatite层的证据和通过能量分散光谱,获得了1.57的Ca / P比。这表明使用火焰喷射投影涂层Ti6Al4V基材的使用不会分解原始的Hidroxyapatite粉末。通过电感耦合等离子体光谱法制造的残余流体的组成分析表明涂层中存在非金属离子。

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