首页> 外文会议>International Conference on Design and Application of Engineering Materials >Effect of Applied Voltage and Coating Time on Nano Hydroxy apatite Coating on Titanium Alloy T16A14V Using Electrophoretic Deposition for Orthopaedic Implant Application
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Effect of Applied Voltage and Coating Time on Nano Hydroxy apatite Coating on Titanium Alloy T16A14V Using Electrophoretic Deposition for Orthopaedic Implant Application

机译:用电泳沉积对矫形植入物应用的施加电压和涂布时间对纳米羟基磷灰石涂层的影响

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Nanoparticles of Hydroxyapatite (HA) were coated onto biocompatible titanium alloy, Ti6A14V ELI using Electrophoretic Deposition (EPD) in order to improve its bioactivity. Electrophoretic Deposition (EPD) has been selected as the coating method because of the simplicity of the instrument, inexpensive cost, and ability to coat complicated products. This study, therefore, aims to investigate the effect of voltage and coating time of EPD process on increasing of implant mass as a parameter of deposition rate, coating thickness, and surface coverage of the HA on implant screw prototype products. Voltages were controlled in the range of 3, 5, and 7 volt and coating times were in the range of 3, 5, and 7 minutes. Surface morphology was examined using scanning electron microscopy (SEM). Coating thickness was measured by coating thickness gauges. While surface coverage was determined using ImageJ software. Based on the result, applied voltage and coating time affects the mass growth of samples and HA coating thickness in positive correlation. However, on the surface coverage, applied voltage and coating time reach the optimum value at 5 volt and 5 minutes. The best HA coating in which fulfilling the standard for orthopaedic implants was obtained at 5 volts for 5 minutes with mass growth is 0.00107 g, coating thickness are 79.13 um, and surface coverage is 97.89%. HA coating thickness that produced in this research has fulfilled the desired coating thickness for orthopaedic implant application (50-100um). SEM micrographs show that nano-HA is coated the alloy surface uniformly at these parameters. It can be concluded that these parameters can be applied to coat titanium Ti6A14V ELI with HA for improving bioactivity in the orthopaedic application.
机译:使用电泳沉积(EPD)涂覆纳米磷灰石(HA)的纳米胺钛合金,Ti6a14V Eli,以改善其生物活性。由于仪器的简单性,廉价的成本和复杂产品的能力,已经选择了电泳沉积(EPD)作为涂层方法。因此,本研究旨在研究EPD过程电压和涂布时间对植入速率,涂层厚度和HA的沉积速率,涂层厚度和表面覆盖范围的增加的影响。在3,5和7伏的范围内控制电压,涂层时间为3,5和7分钟。使用扫描电子显微镜(SEM)检查表面形态。通过涂覆厚度计测量涂层厚度。使用imagej软件确定表面覆盖范围。基于结果,施加的电压和涂布时间影响样品的质量生长和正相关的HA涂层厚度。但是,在表面覆盖范围内,施加的电压和涂布时间在5伏和5分钟内达到最佳值。最佳的HA涂层在5伏特的5伏特获得5伏特的最佳HA涂层,质量生长为0.00107g,涂层厚度为79.13μm,表面覆盖率为97.89%。本研究生产的HA涂层厚度满足了整形外科植入物(50-100UM)的所需涂层厚度。 SEM显微照片显示纳米HA在这些参数上均匀地均匀地涂覆合金表面。可以得出结论,这些参数可以用HA涂覆钛Ti6a14V Eli以改善整形外科应用中的生物活性。

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