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Synthesis and properties of hydroxyapatite-containing porous titania coating on titanium by ultrasonic shot peening and micro-arc oxidation

机译:超声波射击喷丸和微弧氧化钛含羟基磷灰石多孔钛涂层的合成与性能

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Titanium with surface nanostructure has superior mechanical and biological properties, which benefits titanium implants. To further improve the bioactivity of Ti surfaces, Ca/P-containing porous titania coatings were prepared on Ti with surface nanostructure by ultrasonic shot peening (USP) and micro-arc oxidation (MAO). The phase identification, composition, morphology and microstructure of the coatings of Ti with surface nanostructure during MAO were investigated subsequently. The amounts of Ca, P and the Ca/P ratio of the coatings formed on Ti with surface nanostructure were greater than those on coarse-grained Ti. Incubated in a simulated body fluid, bone-like apatite was completely formed on the surface of Ti, thus evidencing preferable bioactivity.
机译:具有表面纳米结构的钛具有优异的机械和生物特性,这有利于钛植入物。为了进一步改善Ti表面的生物活性,通过超声波喷丸(USP)和微弧氧化(MAO),用表面纳米结构在Ti上制备含Ca / p的多孔二氧化钛涂层。随后研究了MAO中与表面纳米结构的Ti涂层的相位鉴定,组合物,形态和微观结构。用表面纳米结构形成的涂层的Ca,P和Ca / P比的量大于粗粒颗粒Ti的涂层的量。在模拟体液中孵育,在Ti的表面上完全形成骨状磷灰石,从而证明了优选的生物活性。

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