首页> 外文会议>International Conference on Design and Application of Engineering Materials >The Effect of Sintering Temperature on Bilayers Hydroxy apatite Coating of Titanium (Ti-6Al-4V) ELI by Electrophoretic Deposition for Improving Osseointegration
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The Effect of Sintering Temperature on Bilayers Hydroxy apatite Coating of Titanium (Ti-6Al-4V) ELI by Electrophoretic Deposition for Improving Osseointegration

机译:电泳沉积改善骨整合烧结温度对钛(Ti-6Al-4V)ELI双层羟基磷灰石涂层的影响

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Bilayers hydroxyapatite (HA) coating using electrophoretic deposition (EPD) method has been applied into a biocompatible metal, Ti-6A1-4V ELI, in order to improve bioactivity of the alloy and then to accelerate bone remodeling and osseointegration during implantation. Two steps EPD process wasconducted for obtaining based layer consist of HA nanoparticles using voltage 3 volt for 3 minutes. It was then followed by second layer formation consist of HA micro particles using voltage 5 volt for 5 minutes. The coated alloy was then sintered at temperatures of 700°C, 800°C and 900°C for each 10 minutes within vacuum tube furnace at the sintering rate 20°C/s. Surface morphologies were examined using optical microscope and scanning electron microscope (SEM). The result of this study showed that bilayers hydroxyapatite coating onto Ti-6A1-4V surface was produced through EPD with those parameters. Sintering treatment at temperature 800°C gives thin, dense, even and crack-free coatings. The Ti-6A1-4V ELI surface is almost fully covered by bilayers hydroxyapatite (with surface coverage 98.6%) with adequate bonding (without lost weight of coating layers). An improper coating layer is obtained for lower (700°C) and higher (900°C) temperature. The sintered samples at temperature 900°C have micro cracks, void and debonding layers. It is expected such bilayers hydroxyapatite with sintering at 800°C can initiate mineralization and then make a quick osseointegration.
机译:双层羟基磷灰石(HA)涂层使用电泳沉积(EPD)方法已被应用于生物相容性金属Ti-6a1-4V Eli,以改善合金的生物活性,然后在植入过程中加速骨重塑和骨整合。对于获得基于HA纳米颗粒的两个步骤进行了两步,用于获得3分钟的HA纳米粒子组成。然后是第二层形成,使用电压5伏5分钟由HA微粒组成。然后将涂覆的合金在700℃,800℃至900℃的温度下烧结,每10分钟在烧结速率20°C / s的真空管炉内。使用光学显微镜和扫描电子显微镜(SEM)检查表面形态。该研究的结果表明,通过EPD与这些参数通过EPD制备双层羟基磷灰石涂层涂覆在Ti-6A1-4V表面上。温度800°C的烧结处理给予薄,密集,均匀,无裂缝的涂料。在Ti-6Al-4V ELI表面由双层羟基磷灰石(与表面覆盖率98.6%)与足够的粘结几乎完全覆盖(不丢失重量涂层)。获得不适当的涂层,用于低(700℃)和更高(900℃)温度。温度900℃的烧结样品具有微裂缝,空隙和脱粘层。预计在800℃下烧结烧结的双层羟基磷灰石可引发矿化,然后进行快速骨整合。

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