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A comprehensive review of hydroxyapatite-based coatings adhesion on metallic biomaterials

机译:基于羟基磷灰石的涂料综合综述金属生物材料上的粘附性

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摘要

Metallic biomaterials have been employed in replacing and reconstructing the structural parts of the human physical structure due to their high mechanical properties, superior biocompatibility, and high corrosion resistance. The most common metallic biomaterials that have been used in implants include magnesium, stainless steel, cobalt-based alloy, titanium, and titanium-based alloy. Hydroxyapatite (Ca-10(PO4)(6)(OH)(2)) is one of the ceramic biomaterials considered as ideal materials for coating on metallic biomaterials as it possesses almost the closest similarity in chemical composition and excellent biocompatibility with natural bone tissue. Recently, the HAp-based coating has increasingly drawn attention to improve the adhesion quality in metallic biomaterials. This study comprehensively reviews the current progress in the adhesion qualities of HAp-based coatings on metallic biomaterials specifically for the biomedical application. It has been observed that a surface that meets the minimum unique characteristics will enhance the bonding force between the coating and metallic biomaterial as the substrate. Critical factors of coating/substrate materials, coating techniques, and coating thickness that determine the adhesion quality are thoroughly identified and discussed. The surface structure and microstructure of HAp-based coating are also reviewed to confirm the findings.
机译:由于其高机械性能,优异的生物相容性和高耐腐蚀性,已经使用金属生物材料代替和重建人体物理结构的结构部位。用于植入物中使用的最常见的金属生物材料包括镁,不锈钢,钴基合金,钛和钛基合金。羟基磷灰石(CA-10(PO4)(6)(OH)(2))是被认为是作为金属生物材料涂覆的理想材料的陶瓷生物材料之一,因为它具有与天然骨组织具有优异的生物相容性的几乎最接近的相似性和具有天然骨组织的优异生物相容性。最近,基于HAP的涂层越来越引起了提高金属生物材料中的粘附质量。本研究全面评论了专门用于生物医学应用的金属生物材料对基于HAP基涂层的粘附性质的目的进展。已经观察到满足最小独特特性的表面将增强涂层和金属生物材料之间的粘合力作为基材。涂层/衬底材料,涂布技术和确定粘合质量的涂层厚度的关键因素彻底识别和讨论。还综述了基于HAP涂层的表面结构和微观结构以确认发现。

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