等离子体电解氧化在钛支架上形成磷酸钙涂层

IF 0.4 Q4 PHYSICS, MULTIDISCIPLINARY
A. Sagidugumar, D. Dogadkin, B. Azamatov, S. O. Rudenko, A. Turlybekuly
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引用次数: 0

摘要

本文介绍了等离子体电解氧化法制备磷酸钙涂层的结果。磷酸钙涂层是在具有多孔结构的钛支架上形成的。钛支架是通过选择性激光熔化的增材制造设备的产品。介绍了涂层的形貌、相组成和元素组成,并测定了涂层的钙磷比。由于生产过程中粉末颗粒的烘焙,支架的表面是多孔的。XRD分析显示存在磷酸钙和氧化物化合物。所得的氧化物涂层均匀地分布在支架的多孔表面上。钛、铝和钒位于不含磷酸钙颗粒的涂层区域。所得涂层的平均Ca/P比为2.48。该值接近于人体骨骼中的钙磷比。结论是,PEO方法的使用有望用于制造创伤科和骨科中使用的具有磷酸钙涂层的多孔结构的支架。使用带有磷酸钙涂层的多孔结构钛支架将改善植入物的骨整合,并排除植入物失败的可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Calcium phosphate coating formed on titanium scaffold by plasma electrolytic oxidation
The article provides the results of the preparation of calcium phosphate coatings by plasma electrolytic oxidation. Calcium phosphate coatings are formed on titanium scaffolds with a porous structure. Titanium scaffolds are products of additive manufacturing equipment by selective laser melting. The morphology of the obtained coating, phase and elemental composition are described, the Ca/P ratio of the coating is dete rmined. The surface of the scaffold is porous due to the baking of powder particles during production. XRD analysis shows the presence of calcium phosphate and oxide compounds. The resulting oxide coating is evenly distributed over the porous surface of the scaffold. Titanium, aluminum and vanadium are located in the areas of the coating free of calcium phosphate particles. The average Ca/P ratio for the resulting coating was 2.48. This value is close to the Ca/P ratio in human bone. It is concluded that the use of the PEO method is promising for the manufacture of scaffolds with a porous structure with calcium phosphate coatings for use in traumatology and orthopedics. The use of titanium scaffolds with a porous structure with calcium phosphate coatings will improve the osseointegration of implants and exclude the possibility of implant failure.
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