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Preparation and Characterisation of Cattle Bone Based Hydroxyapatite Implant Coatings Using Electrostatic Spray Deposition

机译:静电喷射沉积的牛骨羟基磷灰石植入物涂层的制备与表征

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The biocompatibility of orthopaedic or dental metallic implants can be significantly enhanced by the coatings of bioceramic materials. Currently, various deposition techniques such as plasma spraying, magnetron sputtering and pulsed laser deposition can be used for the metallic implant coating. Nevertheless, these methods are addressed as a high temperature processing and manufacturing cost. Electrostatic spray deposition (ESD) has gained interest due to its simple and economical process involving a room temperature processing. Hence, the objectives of this study have focused on preparation and characterisation of cattle bone based hydroxyapatite (cHA) stainless steel implant coatings using ESD. Process parameters including electrode-substrate distance, applied electrical voltage, powder feed rate and current were optimised. The chemical composition of cattle bone powder was investigated both before and after coating by X-ray diffractometry (XRD). The XRD pattern of cattle bone powder demonstrated that all significant peaks matched with HA both before and after coatings. The morphological characteristic of the coatings was examined by scanning electron microscope (SEM). The surface morphology of the coatings showed a homogeneous and dense layer. The average thickness was about 40 μm. The in vitro bioactivity of cHA coatings was investigated by an acellular simulated body fluid soaking experiment. The accelerated apatite precipitation process occurred on the cHA-coated stainless steel surfaces compared to the uncoated stainless steel surfaces. Thus, the use of ESD is a promising technique in producing cHA coatings for biomedical applications.
机译:通过生物陶瓷材料的涂层可以显着提高整形外科或牙科金属植入物的生物相容性。目前,各种沉积技术,例如等离子喷涂,磁控溅射和脉冲激光沉积可用于金属植入物涂层。然而,这些方法被解决为高温处理和制造成本。由于其涉及室温处理的简单和经济的过程,静电喷雾沉积(ESD)已经获得了兴趣。因此,本研究的目的侧重于使用ESD的牛骨基羟基磷灰石(CHA)不锈钢注入涂层的制备和表征。优化包括电极基板距离,施加电压,粉末进料速率和电流的工艺参数。通过X射线衍射法(XRD)在涂覆之前和之后研究牛骨粉的化学成分。牛骨粉的XRD图案表明,所有显着的峰与涂层之前和后均匀。通过扫描电子显微镜(SEM)检查涂层的形态学特征。涂层的表面形态显示均匀和致密层。平均厚度为约40μm。通过细胞模拟体液浸泡实验研究了CHA涂层的体外生物活性。与未涂覆的不锈钢表面相比,加速磷灰石沉淀过程发生在CHA涂覆的不锈钢表面上。因此,ESD的使用是生产生物医学应用的CHA涂层的有希望的技术。

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