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Biological properties of a novel |3-Ti alloy with a low young's modulus subjected to cold rolling

机译:低杨氏模量的新型| 3-Ti合金的冷轧性能

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摘要

The main aim of this study was to investigate the effect of plastic deformation on the biological behaviour of novel Ti-29Nb-13Ta-4.6Zr alloy and to compare it with microcrystalline a titanium, commonly used in medicine. A multiple-stage cold rolling process was applied to improve both the mechanical and functional properties in a TNTZ alloy. A systematic characterization of the microstructure of all tested materials was performed, followed by a correlation with the mechanical properties and phase composition. A cellular response test based on osteosarcoma MG63 osteoblast like cells was carried out in order to analyse the influence of plastic deformation on the biocompatibility of the TNTZ alloy subjected to cold rolling. A detailed surface characterization including inter alia: contact angle and surface free energy, XPS, AES and AFM, was made to define the key factors affecting cellular adhesion to the surface of the deformed samples. The adhered cells were analyzed using confocal and atom force microscopies after 4 days of incubation. Our initial tests indicated that the novel beta-Ti alloy subjected to the cold rolling process could be a promising new candidate in the fields of orthopaedics and dentistry implantations.
机译:这项研究的主要目的是研究塑性变形对新型Ti-29Nb-13Ta-4.6Zr合金的生物学行为的影响,并将其与医学上常用的微晶钛进行比较。应用了多阶段冷轧工艺来改善TNTZ合金的机械性能和功能性能。对所有测试材料的微观结构进行了系统表征,然后与机械性能和相组成相关。为了分析塑性变形对冷轧TNTZ合金的生物相容性的影响,进行了基于骨肉瘤MG63成骨细胞样细胞的细胞反应测试。进行了详细的表面表征,包括:接触角和表面自由能,XPS,AES和AFM,以定义影响细胞粘附到变形样品表面的关键因素。孵育4天后,使用共聚焦和原子力显微镜检查粘附细胞。我们的初步测试表明,经过冷轧处理的新型β-Ti合金可能是骨科和牙科植入领域的有希望的新候选者。

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