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首页> 外文期刊>Bulletin of Materials Science >Coating of titanium implants with boron nitride by RF-magnetron sputtering
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Coating of titanium implants with boron nitride by RF-magnetron sputtering

机译:射频磁控溅射法用氮化硼涂覆钛植入物

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摘要

Surface modification is necessary for titanium implants since it is unable to induce bone apposition. The beneficial effects of boron on bone formation, composition and physical properties make it suitable as a coating material. In the present study, surface properties of boron nitride (BN) coating on titanium implants were evaluated. Twenty-four implants and 12 abutments were coated with BN by RF-magnetron sputtering system. ATR-FTIR measurements were conducted to assess surface chemistry and morphology of BN-coated implants. Adhesion tests were performed by CSM nanoscratch test device to determine adhesion of BN to titanium surface. Surface profilometry and atomic force microscopy (AFM) was used to evaluate surface roughness. Mean roughness values were calculated. Contact angle measurements were done for evaluation of wettability. Surface characterization of coated implants was repeated after RF power of the system was increased and voltage values were changed to evaluate if these settings have an impact on coating quality. Three different voltage values were used for this purpose. Hexagonal-BN was determined in FTIR spectra. RF-coating technique provided adequate adherence of BN coatings to the titanium surface. A uniform BN coating layer was formed on the titanium implants with no deformation on the titanium surface. Similar roughness values were maintained after BN coating procedure. Before coating, the contact angles of the implants were in between 63(ay) and 79(ay), whereas BN coated implants' contact angles ranged between 46(ay) and 67(ay). BN-coated implant surfaces still have hydrophilic characteristics. The change in voltage values seemed to affect the surface coating characteristics. Especially, the phase of the BN coating was different when different voltages were used. According to our results, BN coating can be sufficiently performed on pretreated implant surfaces and the characteristics of BN coated surfaces can be changed with the change in parameters of RF-magnetron sputtering system.
机译:表面改性对于钛植入物是必需的,因为它不能诱导骨骼并置。硼对骨骼形成,组成和物理性质的有益作用使其适合用作涂层材料。在本研究中,评估了钛植入物上氮化硼(BN)涂层的表面性能。通过射频磁控溅射系统在BN上涂覆了24个植入物和12个基台。进行ATR-FTIR测量以评估BN涂层植入物的表面化学和形态。通过CSM纳米划痕测试设备进行粘合力测试,以确定BN对钛表面的粘合力。使用表面轮廓仪和原子力显微镜(AFM)评估表面粗糙度。计算平均粗糙度值。进行接触角测量以评估润湿性。增加系统的射频功率并更改电压值以评估这些设置是否对涂层质量有影响后,将对涂层植入物的表面特性进行重复。为此使用了三个不同的电压值。六角-BN在FTIR光谱中测定。射频涂层技术使BN涂层与钛表面具有足够的附着力。在钛植入物上形成均匀的BN涂层,钛表面上没有变形。 BN涂覆程序后,保持相似的粗糙度值。涂覆之前,植入物的接触角在63(ay)和79(ay)之间,而BN涂覆的植入物的接触角在46(ay)和67(ay)之间。 BN涂层的植入物表面仍然具有亲水特性。电压值的变化似乎会影响表面涂层的特性。特别地,当使用不同的电压时,BN涂层的相不同。根据我们的结果,可以在预处理的植入物表面上充分进行BN涂层,并且可以随RF-磁控溅射系统参数的变化而改变BN涂层表面的特性。

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