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首页> 外文期刊>Biomaterials >Bioactive glass coatings with hydroxyapatite and Bioglass particles on Ti-based implants. 1. Processing.
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Bioactive glass coatings with hydroxyapatite and Bioglass particles on Ti-based implants. 1. Processing.

机译:钛基植入物上具有羟基磷灰石和生物玻璃颗粒的生物活性玻璃涂层。 1.加工。

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Silicate-based glasses with thermal expansion coefficients that match those of Ti6A14V were prepared and used to coat Ti6A14V by a simple enameling technique. Bioglass (BG) or hydroxyapatite (HA) particles were embedded on the coatings in order to enhance their bioactivity. HA particles were immersed partially during heating and remained firmly embedded on the coating after cooling. There was no apparent reaction at the glass/HA interface at the temperatures used in this work (800-840 degrees C). In contrast, BG particles softened and some infiltration into the glass coating took place during heat treatment. In this case, particles with sizes over 45 microm were required, otherwise the particles became hollow due to the infiltration and crystallization of the glass surface. The concentration of the particles on the coating was limited to 20% of surface coverage. Concentrations above this value resulted in cracked coatings due to excessive induced stress. Cracks did not propagate along the interfaces when coatings were subjected to Vickers indentation tests, indicating that the particle/glass and glass/metal interfaces exhibited strong bonds. Enameling, producing excellent glass/metal adhesion with well-attached bioactive particles on the surface, is a promising method of forming reliable and lasting implants which can endure substantial chemical and mechanical stresses.
机译:制备了具有与Ti6A14V匹配的热膨胀系数的硅酸盐玻璃,并通过简单的搪瓷技术将其用于涂覆Ti6A14V。将生物玻璃(BG)或羟基磷灰石(HA)颗粒嵌入涂层中,以增强其生物活性。 HA颗粒在加热过程中部分浸没,冷却后仍牢固地嵌入涂层中。在这项工作中使用的温度(800-840摄氏度)下,玻璃/ HA界面没有明显的反应。相反,在热处理过程中,BG颗粒变软,并且一些渗入玻璃涂层。在这种情况下,需要尺寸大于45微米的颗粒,否则颗粒会由于玻璃表面的渗透和结晶而变成中空的。涂层上颗粒的浓度限制为表面覆盖率的20%。高于该值的浓度会由于过度的诱导应力而导致涂层破裂。当对涂层进行维氏压痕测试时,裂纹没有沿着界面传播,表明颗粒/玻璃和玻璃/金属界面显示出牢固的结合。搪瓷可以在表面上附着良好的生物活性颗粒,从而产生出色的玻璃/金属粘合性,是形成可靠且持久的植入物的一种有前途的方法,该植入物可以承受较大的化学和机械应力。

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