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Development of a β-type Ti-12Mo-5Ta alloy for biomedical applications: cytocompatibility and metallurgical aspects

机译:用于生物医学的β型Ti-12Mo-5Ta合金的开发:细胞相容性和冶金学方面

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Ti-based biocompatible alloys are especially used for replacing failed hard tissue. Some of the most actively investigated materials for medical implants are the β-Ti alloys, as they have a low elastic modulus (to inhibit bone resorption). They are alloyed with elements such as Nb, Ta, Zr, Mo, and Fe. We have prepared a new β-Ti alloy that combines Ti with the non-toxic elements Ta and Mo using a vacuum arc-melting furnace and then annealed at 950℃ for one hour. The alloy was finally quenched in water at room temperature. The Ti-12Mo-5Ta alloy was characterised by X-ray diffraction, optical microscopy, SEM and EDS and found to have a body-centred-cubic structure (β-type). It had a lower Young's modulus (about 74 GPa) than the classical α/β Ti-6Al-4V alloy (120 GPa), while its Vickers hardness remained very high (about 303 HV). This makes it a good compromise for a use as a bone substitute. The cytocompatibility of samples of Ti-12Mo-5Ta and Ti-6Al-4V titanium alloys with various surface roughnesses was assessed in vitro using organotypic cultures of bone tissue and quantitative analyses of cell migration, proliferation and adhesion. Mechanically polished surfaces were prepared to produce unorientated residual polished grooves and cells grew to a particularly high density on the smoother Ti-12Mo-5Ta surface tested.
机译:钛基生物相容性合金特别用于替代失效的硬组织。 β-Ti合金是一些研究最积极的医用植入材料,因为它们的弹性模量低(可抑制骨吸收)。它们与Nb,Ta,Zr,Mo和Fe等元素形成合金。我们准备了一种新型的β-Ti合金,它使用真空电弧熔炉将Ti与无毒元素Ta和Mo结合在一起,然后在950℃退火一小时。最后将该合金在室温下在水中淬火。 Ti-12Mo-5Ta合金通过X射线衍射,光学显微镜,SEM和EDS进行了表征,发现具有体心立方结构(β型)。它的杨氏模量(约74 GPa)比经典的α/βTi-6Al-4V合金(120 GPa)低,而维氏硬度却很高(约303 HV)。这对于用作骨替代物是一个很好的折衷。使用骨骼组织的器官型培养物并对细胞迁移,增殖和粘附进行定量分析,在体外评估了具有不同表面粗糙度的Ti-12Mo-5Ta和Ti-6Al-4V钛合金样品的细胞相容性。准备机械抛光的表面以产生未取向的残留抛光槽,并且在测试的更光滑的Ti-12Mo-5Ta表面上,晶胞生长到特别高的密度。

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