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Electrophoretic Deposition Performance of Hydroxyapatite Coating on Titanium Alloys for Orthopedic Implant Application

机译:羟基磷灰石涂层对矫形植入物应用的电泳沉积性能

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摘要

Hydroxyapatite (HA) is potentially used as a coating material for titanium alloys to improve their bioactivity and then enhancing the osseointegration characteristic of metal implants for orthopedic application. Electrophoretic Deposition (EPD), one of the coating methods that is widely applied for coating metal because of its simplicity and relatively low cost, is chosen for coating metal implants. HA coating layer quality can be controlled by adjusting applied voltages and coating time of the EPD process. However, the optimum voltage and exposing time has not yet been known for new type titanium implant such as Ti-12Cr and TNTZ. This work is, therefore, focusing on the effect of applied voltage and coating time on the mass growth, HA coating thickness, and surface coverage that can be produced on the surfaces of both alloys, and also on the conventional titanium alloy, Ti6Al4V, for comparison. The result of this work showed that there is a significant influence of the titanium alloy type on the HA layer performances. However, it is necessary to choose a suitable voltage and to expose time for producing a sufficient coating layer that meets the standard of orthopedic implants.
机译:羟基磷灰石(HA)可能用作钛合金的涂料,以改善其生物活性,然后增强用于整形外科应用的金属植入物的骨整合特性。电泳沉积(EPD),选择由于其简单性和相对低成本而广泛应用于涂覆金属的涂布方法之一,用于涂覆金属植入物。可以通过调节EPD工艺的施加电压和涂布时间来控制HA涂层质量。然而,新型钛植入物(如TI-12CR和TNTZ)尚不为最佳电压和暴露时间尚不清楚。因此,该工作是专注于施加的电压和涂布时间对质量生长,HA涂层厚度和表面覆盖物的影响,所述表面覆盖物可以在两种合金的表面上产生,以及在常规钛合金,Ti6Al4V上比较。该作品的结果表明,钛合金类型对HA层性能存在显着影响。然而,有必要选择合适的电压并暴露产生足够的涂层,其符合骨科植入物的标准。

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