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首页> 外文期刊>Journal of Materials Research and Technology >Surface treatment functionalization of sodium hydroxide onto 3D printed porous Ti6Al4V for improved biological activities and osteogenic potencies
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Surface treatment functionalization of sodium hydroxide onto 3D printed porous Ti6Al4V for improved biological activities and osteogenic potencies

机译:氢氧化钠对3D印刷多孔Ti6Al4V的表面处理官能化,改善生物活性和骨质骨质疗效

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In the design of multifunctional orthopedic biomaterials, enhanced biological activities, reinforced mechanical property, improved hydrophilicity and osteo-compatibility are the essential criteria. For achieving these goals, here a bioactive multifunctional Ti6Al4V implant with nanowire structured surface topography is designed and fabricated using 3D printing technique. Selective laser melting (SLM) is applied to fabricate scaffold materials with diamond cellular structures to meet the requirements of load-bearing function of bone tissue. With the alkali treatment of sodium hydroxide, osteogenic layer of Na2Ti6O13is generated on the porous Ti6Al4V, on which apatite is easily deposited and immobilized. Clusters of Na2Ti6O13exhibits excellent hydrophilicity and surface roughness with precise control of alkali treatment time. Additionally, the compressive strength of the modified porous Ti6Al4V (121.2 MPa-84.5?MPa) decreases due to the corrosion of sodium hydroxide, while it can satisfy the basic mechanical requirement of cortical bone. The results prove that the surface-modified 3D printed porous Ti6Al4V possesses balanced mechanical strength and osteogenic function, promising for potential application in complex multifunctional bone defects.
机译:在多功能骨科生物材料的设计中,增强的生物活性,增强的机械性能,改善亲水性和骨质疏松症状是必不可少的标准。为了实现这些目标,这里使用3D打印技术设计和制造具有纳米线结构表面形貌的生物活性多功能Ti6Al4V植入物。选择性激光熔化(SLM)用于制造具有金刚石蜂窝结构的支架材料,以满足骨组织承载功能的要求。随着氢氧化钠的碱处理,在多孔Ti6Al4V上产生的Na2Ti6O13的骨质发生层,磷灰石容易沉积并固定。 Na2Ti6O13簇的簇具有优异的亲水性和表面粗糙度,精确控制碱处理时间。另外,由于氢氧化钠的腐蚀,改性多孔Ti6Al4V(121.2MPa-84.5≤MPa)的压缩强度降低,而它可以满足皮质骨的基本机械要求。结果证明,表面改性的3D印刷多孔Ti6Al4V具有平衡的机械强度和成骨功能,有希望在复杂的多功能骨缺陷中潜在应用。

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