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Synthesis and characterization of ultrafine hydroxyapatite (HAp) powder coating on stainless steel substrate by electrophoretic deposition.

机译:电泳沉积法在不锈钢基体上合成超细羟基磷灰石(HAp)粉末涂料并表征。

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摘要

In recent years, synthesis and characterization of ultrafine hydroxyapatite (HAp) powder coating on stainless steel substrate by electrophoretic deposition gives an active area of research due to their enhanced applicability in the medical field. This makes them very attractive as prosthetic replacements.udUltrafine HAp powder was obtained by milling elemental calcium phosphate mineral. The HAp powder was dispersed into isopropyl alcohol by ultrasonication and magnetic stirring. The HAp powder was deposited by electrophoretic deposition (EPD) using lead as anode and stainless steel substrate as cathode. Powder was coated on stainless steel substrate at a voltage of 60 volt and time was varying from 15 minutes to 1.5 hours. It was observed that HAp powder deposited at 60 volt for 45 minute gives the best coating. In another set of experiment, coating time was 45 minutes having periodic time of 10 minutes with gap of 2 minutes. It was also observed that there is lack of adherence of powder particles with the substrate. To improve adherence of particles with substrate a surfactant sodium dodecyl sulfate (SDS or NaDS) (C12H25SO4Na) was added during EPD process and subsequently sintering was performed at 8000C for 2 hours in open atmosphere. X-ray diffraction (XRD) shows the peaks of HAp after deposition.ud It was observed from XRD spectra that XRD patterns of HAp powder that was prepared by planetary milling and HAp powder was deposited on stainless steel substrate by EPD at 60 volts for 15 minutes. Here the some peaks of HAp are visible in the coated substrate along with peaks of stainless steel. The intensity of HAp peaks in the coated substrate is lesser than pure HAp powder. This is due to the presence of large peak of stainless steel along with HAp.udIt was observed from SEM analysis that HAp deposited on stainless steel substrate at 1 hour shows smooth and good adherence where as for deposition of 1.5 hours shows discontinuous and non-adherence deposition. As the time of deposition is increased there may be formation of thick layer which may generate cracks.ud
机译:近年来,通过电泳沉积法在不锈钢基材上合成和表征超细羟基磷灰石(HAp)粉末涂料,由于其在医学领域的适用性增强,因而成为了一个活跃的研究领域。这使它们作为假体替代品非常有吸引力。 udUltrafine HAp粉末是通过研磨元素磷酸钙矿物获得的。通过超声和​​磁力搅拌将HAp粉末分散在异丙醇中。 HAp粉末是通过电泳沉积(EPD)沉积的,其中铅为阳极,不锈钢基板为阴极。将粉末以60伏的电压涂覆在不锈钢基板上,时间从15分钟到1.5小时不等。观察到在60伏特下沉积45分钟的HAp粉末可获得最佳涂层。在另一组实验中,涂覆时间为45分钟,周期时间为10分钟,间隔为2分钟。还观察到粉末颗粒与基底之间缺乏粘附。为了改善颗粒与基材的粘附性,在EPD过程中添加了表面活性剂十二烷基硫酸钠(SDS或NaDS)(C12H25SO4Na),随后在露天气氛中于8000°C烧结2小时。 X射线衍射(XRD)显示了沉积后HAp的峰。 ud从XRD光谱中观察到,通过行星式铣削制备的HAp粉末和HAp粉末通过EPD在60伏下沉积在不锈钢基板上的XRD图谱。 15分钟。在这里,HAp的一些峰与不锈钢的峰一起在涂层基材中可见。涂覆的基材中HAp峰的强度小于纯HAp粉末。这是由于存在大量的不锈钢峰以及HAp。 ud从SEM分析中观察到,在1小时时沉积在不锈钢基材上的HAp显示出光滑而良好的附着力,而1.5小时时则显示出不连续且非粘附沉积。随着沉积时间的增加,可能会形成可能会产生裂纹的厚层。

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