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Recent Advances in Manufacturing and Surface Modification of Titanium Orthopaedic Applications

机译:钛骨科应用的制造和表面改性的最新进展

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Implant failure is a common problem in orthopedic applications, which causes pain and stress for patients, prolonged antibiotic therapy, increased time and cost of hospitalization, and revision surgery. Selecting the optimum porous structure, manufacturing process and surface modification approach is crucial to reduce the rate of implant failure. The design of porous structures in orthopedic implants plays an important role in vascularization, diffusion of nutrients, and in the relationship between implants and osteoblasts. Common techniques for porous design are computer aided design (CAD), image based design, implicit surface design, and topology optimization. Metal-based additive manufacturing methods such as electron beam melting (EBM), selective laser melting (SLM) and selective laser sintering (SLS) have been extensively developed for fabrication of porous structures on Titanium. Several chemical surface modification methods are used, such as acid etching, anodization, and coatings, to improve mechanical properties, biocompatibility, increase surface roughness, and to promote osseointegration and bone regrowth. This paper reviews the design and manufacturing of porous implant material via additive manufacturing techniques, as well as recent advances in surface modification, to achieve biocompatible surfaces. The outcome of this research will provide an effective strategy for manufacturing, and surface modification of titanium orthopedic implants.
机译:植入物失败是整形外科应用中的常见问题,导致患者的疼痛和压力,延长抗生素治疗,增加的住院时间和成本,以及修正手术。选择最佳多孔结构,制造工艺和表面改性方法至关重要,以降低植入物失效率。骨科植入物中的多孔结构设计在血管化,营养扩散和植入物和成骨细胞之间的关系中起重要作用。多孔设计的常见技术是计算机辅助设计(CAD),基于图像的设计,隐式表面设计和拓扑优化。已经广泛地开发了金属基添加剂制造方法,例如电子束熔化(EBM),选择性激光熔化(SLM)和选择性激光烧结(SLS),用于制造钛上的多孔结构。使用几种化学表面改性方法,例如酸蚀刻,阳极氧化和涂层,以改善机械性能,生物相容性,增加表面粗糙度,并促进骨整合和骨再生。本文通过添加剂制造技术介绍了多孔植入物材料的设计和制造,以及最近表面改性的进展,实现生物相容性表面。该研究的结果将提供有效的制造策略,以及钛矫形植入物的表面改性。

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